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碳化矽(silicon carbide)優異物理化學特性與應用範圍

在耐熱、耐高溫結構材料中,一般氧化物陶瓷(ex. 氧化鋁 Alumina oxide) 及金屬材料沒辦法處於此種條件使用,但在非氧化物陶瓷中確可以辦得到,像是Si3N4氮化矽(silicon nitride)和SiC碳化矽(silicon carbide)在於汽化管道、熱電藕套管、燃燒器零件、高效能發動機、坩堝、耐火材料及熱交換器等都受到廣泛的應用。

接下來介紹碳化矽(silicon carbide)

碳 化矽(silicon carbide)的硬度僅次於金剛石,這麼高性能材料製造方法有三種:1.反應燒結(reaction) 2.熱壓燒結(heat pressing) 3.常壓燒結(sintered),如果以100%碳化矽粉(silicon carbide powder)燒杰接近理論密度(3.21g/cm3),必須在2000°C以上高溫及350MPa以上高壓才可能達成,現今只需添加一些非氧化物助燒劑 可使碳化矽(silicon carbide)燒成溫度降到2000°C左右及常壓附近,敝公司以此方法製造碳化矽(sintered silicon carbide) 已可達到理論密度98%,因為這樣碳化矽(silicon carbide)擁有極強的共價鍵,在1650°C高溫下,還能保持期優異性能,因為極緻密結構密度與超高硬度,造就了碳化矽(silicon carbide)的高耐磨耗性,因為極緻密結構(低孔隙率)和極強共價鍵(化學惰性)造就了碳化矽(silicon carbide)高耐腐蝕性和高耐氧化性,即使在強酸強鹼中也能夠正常運作。

碳化矽簡介

現今碳化矽是常被人們使用的非氧化物陶瓷材料,因為碳化矽具有比一般陶瓷還要良好的硬度、耐熱性、耐氧化性、耐腐蝕性及高導熱性,所以近年碳化矽被廣泛應用在機械工程中的結構件和化學工程中的密封件等,甚至運用在強酸、強鹼、高磨耗、高溫、航太等極端條件的環境。

常壓燒結碳化矽(S-SiC):
常壓燒結碳化矽(S-SiC) 是敝公司主力生產的產品之一
常 壓燒結碳化矽是個僅次於熱壓燒結碳化矽(HP-SiC)的一種碳化矽產品,其機械性能也接近熱壓燒結碳化矽,由於他的工藝性優於熱壓燒結碳化矽 ,製造成本也比熱壓燒結碳化矽低,適合大量生產及製造複雜形狀的製品,完全符合機械密封、無軸封泵(屏蔽泵)、磁力泵等泵類的零部件的要求,因此,這是目 前國外普遍採用的碳化矽材料。

常壓燒結碳化矽是以α-SiC晶體組成,體機密度能達到理論密度的98%以上(3.1g/cm3),密度 是碳化鎢硬質合金的1/5,硬度僅次於金剛鑽,抗顆粒磨損的性能十分優異,S-SiC與石墨配對是目前使用PV值最高的一對密封件,高純度的常壓燒結碳化 矽(>98% SiC)能在高溫下抗各類酸鹼等化工介質的腐蝕,S-SiC的比強度極高,抗高溫氧化性能和高溫力學性能也十分優良。

 

現今碳化矽是常被人們使用的非氧化物陶瓷材料,因為碳化矽具有比一般陶瓷還要良好的硬度、耐熱性、耐氧化性、耐腐蝕性及高導熱性,所以近年碳化矽被廣泛應用在機械工程中的結構件和化學工程中的密封件等,甚至運用在強酸、強鹼、高磨耗、高溫、航太等極端條件的環境。

常壓燒結碳化矽(S-SiC):
常壓燒結碳化矽(S-SiC) 是敝公司主力生產的產品之一
常 壓燒結碳化矽是個僅次於熱壓燒結碳化矽(HP-SiC)的一種碳化矽產品,其機械性能也接近熱壓燒結碳化矽,由於他的工藝性優於熱壓燒結碳化矽 ,製造成本也比熱壓燒結碳化矽低,適合大量生產及製造複雜形狀的製品,完全符合機械密封、無軸封泵(屏蔽泵)、磁力泵等泵類的零部件的要求,因此,這是目 前國外普遍採用的碳化矽材料。

常壓燒結碳化矽是以α-SiC晶體組成,體機密度能達到理論密度的98%以上(3.1g/cm3),密度 是碳化鎢硬質合金的1/5,硬度僅次於金剛鑽,抗顆粒磨損的性能十分優異,S-SiC與石墨配對是目前使用PV值最高的一對密封件,高純度的常壓燒結碳化 矽(>98% SiC)能在高溫下抗各類酸鹼等化工介質的腐蝕,S-SiC的比強度極高,抗高溫氧化性能和高溫力學性能也十分優良。

碳化矽熱交換器( sintered silicon carbide heat exchanger)

碳化矽( sintered silicon carbide )熱交換器與傳統金屬熱交換器有極大性質上差異,一般傳統金屬熱交換器使用溫度在1100℃左右,壽命只有一年,而碳化矽( silicon carbide )熱交換器大部分使用溫度在1300~1400℃,有些甚至可以達到使用溫度在於1800℃,使用壽命更長達十年,而且碳化矽熱交換器比傳統金屬熱交換器擁有更高的效能,所以碳化矽熱交換器擁有更高的使用溫度、能夠承受更嚴苛的環境、耐久性與使用壽命更長、擁有更高的效率使得可以更節能與生產力提升、並對於我們的環境改善有很大的幫助性。

 

精密陶瓷(fine ceramics)物理化學特性比較:

進行比較陶瓷包含氧化鋁(alumina oxide)、碳化矽(sintered silicon carbide)、氧化鋯(zirconia)和氮化矽(silicon nitride)

Main component
99%Al2O3
S-SiC
ZrO2
Si3N4

Physical Property
Density
g/cm3
3.90
3.1
6
3.2

Water Absorption
%
0
0.1
0
0.1

Sinter Temperature
°C
1700
2200
1500
1800

Mechanical Property
Rockwell Hardness
HV
1700
2200
1300
1400

Bend Strength
kgf/mm2
3500
4000
9000
7000

Compression Intensity
Kgf/mm2
30000
20000
20000
23000

Thermal Property
Maximum working temperature
°C
1500
1600
1300
1400

thermal expansion coefficient 0-1000°C
/°C
8.0*10-6
4.1*10-6(0-500°C)
9.5*10-6
2.0*10-6(0-500°C)

5.2*10-6(500-1000°C)
4.0*10-6(500-1000°C)

Thermal Shock resistance
T(°C)
200
250
300
400-500

Thermal Conductivity
W/m.k(25°C
31
100
3
25

          300°C)
16
100
3
25

Electrical Property
Resisting rate of Volume
◎.cm

20°C
>1012
106-108
>1010
>1011

100°C
1012-1013
-
-
>1011

300°C
>1012
-
-
>1011

Insulation Breakdown Intensity
KV/mm
18
semiconductor
9
17.7

Dielectric Constant (1 MHz)
(E)
10
-
29
7

Dielectric Dissipation
(tg o)
0.4*10-3
-
-
-

 

 

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34wM

Bewise Inc. www.tool-tool.com Reference source from the internet.

   碳化矽(SiC)為由相鍵結而成的陶瓷化合物,碳化矽在大自然也存在罕見的礦物莫桑石

由於天然含量甚少,碳化矽主要多為人造。最簡單的方法是將氧化矽砂與置入艾其遜電弧爐中,以1600至2500 °C高溫加熱。

愛德華·古德里希·艾其遜1893年製造出此化合物,並發展了生產碳化矽用之艾其遜電弧爐,至今此技術仍為眾人使用中。

碳化矽至少有70種結晶型態。α-碳化矽為最常見的一種同質異晶物,在高於2000 °C高溫下形成,具有六角晶系結晶構造(似纖維鋅礦)。 β-碳化矽,立方晶系結構,與鑽石相似,則在低於2000 °C生成,結構如頁面附圖所示。雖然在異相觸媒擔體的應用上,因其具有比α型態更高之單位表面積而引人注目,但直至今日,此型態尚未有商業上之應用。

因其3.2的比重及高的昇華溫度(約2700 °C),碳化矽很適合做為軸承高溫爐之原料物件。在任何已能達到的壓力下,它都不會熔化,且具有相當低的化學活性。由於其高熱導性、高崩潰電場強度及高最大電流密度,近來在半導體高功率元件的應用上,不少人試著用它來取代[1]。此外,它與微波輻射有很強的偶合作用,並其所有之高昇華點,使其可實際應用於加熱金屬

純碳化矽為無色,而工業生產之黑色係由於含之不純物。晶體上彩虹般的光澤則是因為其表面產生之二氧化矽保護層所致。

 

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Welcome to BW tool world! We are an experienced tool maker specialized in cutting tools. We focus on what you need and endeavor to research the best cutter to satisfy users demand. Our customers involve wide range of industries, like mold & die, aerospace, electronic, machinery, etc. We are professional expert in cutting field. We would like to solve every problem from you. Please feel free to contact us, its our pleasure to serve for you. BW product including: cutting toolaerospace tool .HSS  DIN Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolNAS986 NAS965 NAS897 NAS937orNAS907 Cutting Tools,Carbide end milldisc milling cutter,Aerospace cutting toolhss drillФрезерыCarbide drillHigh speed steelCompound SharpenerMilling cutterINDUCTORS FOR PCDCVDD(Chemical Vapor Deposition Diamond )’PCBN (Polycrystalline Cubic Boron Nitride) Core drillTapered end millsCVD Diamond Tools Inserts’PCD Edge-Beveling Cutter(Golden FingerPCD V-CutterPCD Wood toolsPCD Cutting toolsPCD Circular Saw BladePVDD End Millsdiamond tool. INDUCTORS FOR PCD . POWDER FORMING MACHINE Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструменты Пустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FresePOWDER FORMING MACHINEElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterStaple CutterPCD diamond cutter specialized in grooving floorsV-Cut PCD Circular Diamond Tipped Saw Blade with Indexable Insert PCD Diamond Tool Saw Blade with Indexable InsertNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsend mill grinderdrill grindersharpenerStub roughing end millsDovetail milling cuttersCarbide slot drillsCarbide torus cuttersAngel carbide end millsCarbide torus cuttersCarbide ball-nosed slot drillsMould cutterTool manufacturer.

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BW is specialized in R&D and sourcing the most advanced carbide material with high-tech coating to supply cutting / milling tool for mould & die, aero space and electronic industry. Our main products include solid carbide / HSS end mills, micro electronic drill, IC card cutter, engraving cutter, shell end mills, cutting saw, reamer, thread reamer, leading drill, involute gear cutter for spur wheel, rack and worm milling cutter, thread milling cutter, form cutters for spline shaft/roller chain sprocket, and special tool, with nano grade. Please visit our web  www.tool-tool.com  for more info.

 

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   Silicon carbide (SiC), also known as carborundum, is a compound of silicon and carbon with chemical formula SiC. It occurs in nature as the extremely rare mineral moissanite. Silicon carbide powder has been mass-produced since 1893 for use as an abrasive. Grains of silicon carbide can be bonded together by sintering to form very hard ceramics which are widely used in applications requiring high endurance, such as car brakes and ceramic plates in bulletproof vests. Electronic applications of silicon carbide as light emitting diodes and detectors in early radios were first demonstrated around 1907, and nowadays SiC is widely used in high-temperature/high-voltage semiconductor electronics. Large single crystals of silicon carbide can be grown by the Lely method; they can be cut into gems known as "synthetic moissanite". Silicon carbide with high surface area can be produced from SiO2 contained in plant material.

Early, non-systematic and often non-recognized syntheses of silicon carbide had been reported by Despretz (1849), Marsden (1880) and Colson (1882).Wide-scale production is credited to Edward Goodrich Acheson around 1893. He patented the method for making silicon carbide powder on February 28, 1893.Acheson also developed the electric batch furnace by which SiC is still made today and formed The Carborundum Company to manufacture bulk SiC, initially for use as an abrasive.In 1900 the company settled with the Electric Smelting and Aluminum Company when a judge's decision gave "priority broadly" to its founders "for reducing ores and other substances by the incandescent method"It is said that Acheson was trying to dissolve carbon in molten corundum (alumina) and discovered the presence of hard, blue-black crystals which he believed to be a compound of carbon and corundum: hence carborundum. Or, he named the material "carborundum" by analogy to corundum, which is another very hard substance (9 on the Mohs scale).

Historically, the first use of SiC was as an abrasive. This was followed by electronic applications. In the beginning of the 20th century, silicon carbide was used as a detector in the first radios,and in 1907 Henry Joseph Round produced the first LED by applying a voltage to a SiC crystal and observing yellow, green and orange emission at the cathode. Those experiments were later repeated by O. V. Losev in the Soviet Union in 1923.

Naturally occurring moissanite is found only in minute quantities in certain types of meteorite and in corundum deposits and kimberlite. Virtually all the silicon carbide sold in the world, including moissanite jewels, is synthetic. Natural moissanite was first found in 1893 as a small component of the Canyon Diablo meteorite in Arizona by Dr. Ferdinand Henri Moissan, after whom the material was named in 1905. Moissan's discovery of naturally occurring SiC was initially disputed because his sample may have been contaminated by silicon carbide saw blades that were already on the market at that time.

While rare on Earth, silicon carbide is remarkably common in space. It is a common form of stardust found around carbon-rich stars, and examples of this stardust have been found in pristine condition in primitive (unaltered) meteorites. The silicon carbide found in space and in meteorites is almost exclusively the beta-polymorph. Analysis of SiC grains found in the Murchison carbonaceous chondrite meteorite has revealed anomalous isotopic ratios of carbon and silicon, indicating an origin from outside the solar system; 99% of these SiC grains originate around carbon-rich asymptotic giant branch stars.SiC is commonly found around these stars as deduced from their infrared spectra.

Due to the rarity of natural moissanite, silicon carbide is typically man-made. Most often it is used as an abrasive, and more recently as a semiconductor and diamond simulant of gem quality. The simplest manufacturing process is to combine silica sand and carbon in an Acheson graphite electric resistance furnace at a high temperature, between 1600 and 2500 °C. Fine SiO2 particles in plant material (e.g. rice husks) can be converted to SiC by heating in the excess carbon from the organic material[13].

Synthetic SiC crystals ~3 mm in diameter

The material formed in the Acheson furnace varies in purity, according to its distance from the graphite resistor heat source. Colorless, pale yellow and green crystals have the highest purity and are found closest to the resistor. The color changes to blue and black at greater distance from the resistor, and these darker crystals are less pure. Nitrogen and aluminium are common impurities, and they affect the electrical conductivity of SiC.

Pure silicon carbide can be made by the so-called Lely process, in which SiC powder is sublimated in argon atmosphere at 2500 °C and redeposited into flake-like single crystals, sized up to 2x2 cm2, at a slightly colder substrate. This process yields high-quality single crystals, mostly of 6H-SiC phase (because of high growth temperature). Cubic SiC is usually grown by the more expensive process of chemical vapor deposition (CVD).Pure silicon carbide can also be prepared by the thermal decomposition of a polymer, poly(methylsilyne), under an inert atmosphere at low temperatures. Relative to the CVD process, the pyrolysis method is advantageous because the polymer can be formed into various shapes prior to thermalization into the ceramic

(β)3C-SiC

4H-SiC

(α)6H-SiC

Silicon carbide exists in about 250 crystalline forms. The polymorphism of SiC is characterized by a large family of similar crystalline structures called polytypes. They are variations of the same chemical compound that are identical in two dimensions and differ in the third. Thus, they can be viewed as layers stacked in a certain sequence.

Alpha silicon carbide (α-SiC) is the most commonly encountered polymorph; it is formed at temperatures greater than 1700 °C and has a hexagonal crystal structure (similar to Wurtzite). The beta modification (β-SiC), with a zinc blende crystal structure (similar to diamond), is formed at temperatures below 1700 °C. Until recently, the beta form has had relatively few commercial uses, although there is now increasing interest in its use as a support for heterogeneous catalysts, owing to its higher surface area compared to the alpha form.

Properties of major SiC polytypes

Polytype
3C (β)
4H
6H (α)

Crystal structure
Zinc blende (cubic)
Hexagonal
Hexagonal

Space group
T2d-F43m
C46v-P63mc
C46v-P63mc

Pearson symbol
cF8
hP8
hP12

Lattice constants (Å)
4.3596
3.0730; 10.053
3.0730; 15.11

Density (g/cm3)
3.21
3.21
3.21

Bandgap (eV)
2.36
3.23
3.05

Bulk modulus (GPa)
250
220
220

Thermal conductivity (W/(cm·K))
3.6
3.7
4.9

Pure SiC is colorless. The brown to black color of industrial product results from iron impurities. The rainbow-like luster of the crystals is caused by a passivation layer of silicon dioxide that forms on the surface.

The high sublimation temperature of SiC (approximately 2700 °C) makes it useful for bearings and furnace parts. Silicon carbide does not melt at any known pressure. It is also highly inert chemically. There is currently much interest in its use as a semiconductor material in electronics, where its high thermal conductivity, high electric field breakdown strength and high maximum current density make it more promising than silicon for high-powered devices.[23] SiC also has a very low coefficient of thermal expansion (4.0 × 10−6/K) and experiences no phase transitions that would cause discontinuities in thermal expansion.

Silicon carbide is a semiconductor, which can be doped n-type by nitrogen or phosphorus and p-type by aluminium, boron, gallium or beryllium. Metallic conductivity has been achieved by heavy doping with boron, aluminium or nitrogen. Superconductivity has been detected in 3C-SiC:Al, 3C-SiC:B and 6H-SiC:B at the same temperature of 1.5 K. or aluminum.A crucial difference is however observed for the magnetic field behavior between aluminum and boron doping: SiC:Al is type-II, same as Si:B. On the contrary, SiC:B is type-I. In attempt to explain this difference, it was noted that Si sites are more important than carbon sites for superconductivity in SiC. Whereas boron substitutes carbon in SiC, Al substitutes Si sites. Therefore, Al and B "see" different environment that might explain different properties of SiC:Al and SiC:B.

In the arts, silicon carbide is a popular abrasive in modern lapidary due to the durability and low cost of the material. In manufacturing, it is used for its hardness in abrasive machining processes such as grinding, honing, water-jet cutting and sandblasting. Particles of silicon carbide are laminated to paper to create sandpapers and the grip tape on skateboards.

In 1982 an exceptionally strong composite of aluminium oxide and silicon carbide whiskers was discovered. Development of this laboratory-produced composite to a commercial product took only three years. In 1985, the first commercial cutting tools made from this alumina and silicon carbide whisker-reinforced composite were introduced by the Advanced Composite Materials Corporation (ACMC) and Greenleaf Corporation.

Silicon carbide is used for inner plates of ballistic vests

In the 1980s and 1990s, silicon carbide was studied in several research programs for high-temperature gas turbines in Europe, Japan and the United States. The components were intended to replace nickel superalloy turbine blades or nozzle vanes. However, none of these projects resulted in a production quantity, mainly because of its low impact resistance and its low fracture toughness.

Like other hard ceramics (namely alumina and boron carbide), silicon carbide is used in composite armor (e.g., Chobham armor), and in ceramic plates in bulletproof vests. Dragon Skin, which is produced by Pinnacle Armor, uses disks of silicon carbide.

The Porsche Carrera GT's carbon-ceramic (silicon carbide) disc brake

Silicon-infiltrated carbon-carbon composite is used for high performance "ceramic" brake discs as it is able to withstand extreme temperatures. The silicon reacts with the graphite in the carbon-carbon composite to become carbon fiber reinforced silicon carbide (C/SiC). These discs are used on some road going sports cars, including the Porsche Carrera GT, the Bugatti Veyron, the Chevrolet Corvette ZR1, Bentleys, Ferraris, Lamborghinis, and some specific high performance Audis.Silicon carbide is also used in a sintered form for diesel particulate filters.

The earliest electrical application of SiC was in lightning arresters in electric power systems. These devices must exhibit high resistance until the voltage across them reaches a certain threshold VT, at which point their resistance must drop to a lower level and maintain this level until the applied voltage drops below VT.

It was recognized early on that SiC had such a voltage-dependent resistance, and so columns of SiC pellets were connected between high-voltage power lines and the earth. When a lightning strike to the line raises the line voltage sufficiently, the SiC column will conduct, allowing strike current to pass harmlessly to the earth instead of along the power line. Such SiC columns proved to conduct significantly at normal power-line operating voltages and thus had to be placed in series with a spark gap. This spark gap is ionized and rendered conductive when lightning raises the voltage of the power line conductor, thus effectively connecting the SiC column between the power conductor and the earth. Spark gaps used in lightning arresters are unreliable, either failing to strike an arc when needed or failing to turn off afterwards, in the latter case due to material failure or contamination by dust or salt. Usage of SiC columns was originally intended to eliminate the need for the spark gap in a lightning arrester. Gapped SiC lightning arresters were used as lightning-protection tool and sold under GE and Westinghouse brand names, among others. The gapped SiC arrester has been largely displaced by no-gap varistors that use columns of zinc oxide pellets.

Ultraviolet LED

Silicon carbide is used for ultrafast, high-voltage Schottky diodes, MOSFETs and high temperature thyristors for high-power switching.A major problem with SiC crystals is the formation of different types of defect like edge dislocation, screw dislocation (both hollow and closed core), triagular defect and basal plane dislocation.As a result, devices made of SiC crystals show poor breakdown performance though researchers have been tentatively finding solutions to improving the breakdown performance.Apart from crystal quality, problems with the interface of SiC with silicon dioxide have hampered the development of SiC-based power MOSFETs and insulated-gate bipolar transistors.

The history of SiC LEDs is quite remarkable: the first LED action was demonstrated in 1907 using SiC and the first commercial LEDs were again based on SiC. Yellow LEDs made from 3C-SiC were manufactured in the Soviet Union in the 1970s,and blue ones (6H-SiC) worldwide in the 1980s.The production was soon stopped because gallium nitride showed 10-100 times brighter emission. This difference in efficiency is due to the unfavorable indirect bandgap of SiC whereas GaN has a direct bandgap which favors light emission. However, SiC is still one of the important LED components – it is a popular substrate for growing GaN devices, and it also serves as a heat spreader in high-power LEDs.

 

The low thermal expansion coefficient, high hardness, rigidity and thermal conductivity make silicon carbide a desirable mirror material for astronomical telescopes. The growth technology (chemical vapor deposition) has been scaled up to produce disks of polycrystalline silicon carbide up to 3.5 meters in diameter, and several telescopes (like the Herschel Space Telescope) are already equipped with SiC optics.

Main article: Thin filament pyrometry

Image of the test flame and glowing SiC fibers. The flame is about 7 cm tall.

Silicon carbide fibers are used to measure gas temperatures in an optical technique called thin filament pyrometry. It involves the placement of a thin filament in a hot gas stream. Radiative emissions from the filament can be correlated with filament temperature. Filaments are SiC fibers with a diameter of 15 micrometers, that is about 5 times thinner than human hair. Because the fibers are so thin, they do little to disturb the flame and their temperature remains close to that of the local gas. Temperatures of about 800–2500 K can be measured.

References to silicon carbide heating elements exist from the early 20th century when they were produced by Acheson's Carborundum Co. in the U.S. and EKL in Berlin. Silicon carbide offered increased operating temperatures compared with metallic heaters. Silicon carbide elements are used today in the melting of non-ferrous metals and glasses, heat treatment of metals, float glass production, production of ceramics and electronics components, igniters in pilot lights for gas heaters, etc.

Silicon carbide is often used as a layer of the tristructural-isotropic coating for the nuclear fuel elements of high temperature gas cooled reactors or very high temperature reactors such as the Pebble Bed Reactor. Silicon carbide provides the mechanical stability to the fuel and is the main diffusion barrier to the release of fission products.

A moissanite ring

As a gemstone used in jewelry, silicon carbide is called "synthetic moissanite" or just "moissanite" after the mineral name. Moissanite is similar to diamond in several important respects: it is transparent and hard (9-9.5) on the Mohs scale (compared to 10 for diamond), with a refractive index between 2.65 and 2.69 (compared to 2.42 for diamond). Moissanite is somewhat harder than common cubic zirconia. Unlike diamond, moissanite can be strongly birefringent. This quality is desirable in some optical applications, but not in gemstones. For this reason, moissanite jewels are cut along the optic axis of the crystal to minimize birefringent effects. It is lighter (density 3.21 g/cm3 vs. 3.53 g/cm3), and much more resistant to heat than diamond. This results in a stone of higher luster, sharper facets and good resilience. Loose moissanite stones may be placed directly into wax ring moulds for lost-wax casting; unlike diamond, which burns at 800 °C, moissanite remains undamaged by temperatures up to 1800 °C (cf. the 1064 °C melting point of pure gold). Moissanite has become popular as a diamond substitute, and may be misidentified as diamond, since its thermal conductivity is much closer to that of diamond than any other diamond substitute. Many thermal diamond testing devices are fooled by moissanite, but the gem can be distinguished from diamond by its birefringence and a very slight green or yellow fluorescence under ultraviolet light. Some moissanite stones also have curved string-like inclusions, which diamonds never have.

Piece of silicon carbide used in steel making

Silicon carbide dissolved in a basic oxygen furnace used for making steel acts as a fuel. It is cleaner than coal, allowing a reduction in scrap output. It can also be used to raise tap temperatures and adjust the carbon content. Use of silicon carbide costs less than of ferrosilicon and carbon combination, produces cleaner steel due to low level of trace elements, it has a low gas content and it does not lower the temperature of steel.

The natural resistance to oxidation exhibited by silicon carbide, as well as the discovery of new ways to synthesize the cubic β-SiC form, with its larger surface area, has led to significant interest in its use as a heterogeneous catalyst support. This form has already been employed as a catalyst support for the oxidation of hydrocarbons, such as n-butane, to maleic anhydride.

Silicon carbide is used in carborundum printmaking – a collagraph printmaking technique. Carborundum grit is applied in a paste to the surface of an aluminium plate. When the paste is dry, ink is applied and trapped in its granular surface, then wiped from the bare areas of the plate. The ink plate is then printed onto paper in a rolling-bed press used for intaglio printmaking. The result is a print of painted marks embossed into the paper.

Silicon carbide is used to produce graphene by graphitization at high temperatures. This is considered as one of the promising methods to synthesize graphene at large scale for practical applications.

 

歡迎來到Bewise Inc.的世界,首先恭喜您來到這接受新的資訊讓產業更有競爭力,我們是提供專業刀具製造商,應對客戶高品質的刀具需求,我們可以協助客戶滿足您對產業的不同要求,我們有能力達到非常卓越的客戶需求品質,這是現有相關技術無法比擬的,我們成功的滿足了各行各業的要求,包括:精密HSS DIN切削刀具協助客戶設計刀具流程DIN or JIS 鎢鋼切削刀具設計NAS986 NAS965 NAS897 NAS937orNAS907 航太切削刀具,NAS航太刀具設計超高硬度的切削刀具醫療配件刀具設計複合式再研磨機PCD地板專用企口鑽石組合刀具粉末造粒成型機主機版專用頂級電桿PCD V-Cut捨棄式圓鋸片組粉末成型機航空機械鉸刀主機版專用頂級電汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具銑刀與切斷複合再研磨機銑刀與鑽頭複合再研磨機銑刀與螺絲攻複合再研磨機等等。我們的產品涵蓋了從民生刀具到工業級的刀具設計;從微細刀具到大型刀具;從小型生產到大型量產;全自動整合;我們的技術可提供您連續生產的效能,我們整體的服務及卓越的技術,恭迎您親自體驗!!

BW Bewise Inc. Willy Chen willy@tool-tool.com bw@tool-tool.com www.tool-tool.com skype:willy_chen_bw mobile:0937-618-190 Head &Administration Office No.13,Shiang Shang 2nd St., West Chiu Taichung,Taiwan 40356 http://www.tool-tool.com / FAX:+886 4 2471 4839 N.Branch 5F,No.460,Fu Shin North Rd.,Taipei,Taiwan S.Branch No.24,Sec.1,Chia Pu East Rd.,Taipao City,Chiayi Hsien,Taiwan

Welcome to BW tool world! We are an experienced tool maker specialized in cutting tools. We focus on what you need and endeavor to research the best cutter to satisfy users demand. Our customers involve wide range of industries, like mold & die, aerospace, electronic, machinery, etc. We are professional expert in cutting field. We would like to solve every problem from you. Please feel free to contact us, its our pleasure to serve for you. BW product including: cutting toolaerospace tool .HSS  DIN Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolNAS986 NAS965 NAS897 NAS937orNAS907 Cutting Tools,Carbide end milldisc milling cutter,Aerospace cutting toolhss drillФрезерыCarbide drillHigh speed steelCompound SharpenerMilling cutterINDUCTORS FOR PCDCVDD(Chemical Vapor Deposition Diamond )’PCBN (Polycrystalline Cubic Boron Nitride) Core drillTapered end millsCVD Diamond Tools Inserts’PCD Edge-Beveling Cutter(Golden FingerPCD V-CutterPCD Wood toolsPCD Cutting toolsPCD Circular Saw BladePVDD End Millsdiamond tool. INDUCTORS FOR PCD . POWDER FORMING MACHINE Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструменты Пустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FresePOWDER FORMING MACHINEElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterStaple CutterPCD diamond cutter specialized in grooving floorsV-Cut PCD Circular Diamond Tipped Saw Blade with Indexable Insert PCD Diamond Tool Saw Blade with Indexable InsertNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsend mill grinderdrill grindersharpenerStub roughing end millsDovetail milling cuttersCarbide slot drillsCarbide torus cuttersAngel carbide end millsCarbide torus cuttersCarbide ball-nosed slot drillsMould cutterTool manufacturer.

Bewise Inc. www.tool-tool.com

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豊富なパリエーションを満足させ、特にハイテク品質要求にサポート致します。

弊社は各領域に供給できる内容は:

(1)精密HSSエンドミルのR&D

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(3)鎢鋼エンドミル設計

(4)航空エンドミル設計

(5)超高硬度エンドミル

(6)ダイヤモンドエンドミル

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(2)ミクロエンドミル~大型エンドミル供給

(3)小Lot生産~大量発注対応供給

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Bewise Inc. talaşlı imalat sanayinde en fazla kullanılan ve üç eksende (x,y,z) talaş kaldırabilen freze takımlarından olan Parmak Freze imalatçısıdır. Çok geniş ürün yelpazesine sahip olan firmanın başlıca ürünlerini Karbür Parmak Frezeler, Kalıpçı Frezeleri, Kaba Talaş Frezeleri, Konik Alın Frezeler, Köşe Radyüs Frezeler, İki Ağızlı Kısa ve Uzun Küresel Frezeler, İç Bükey Frezeler vb. şeklinde sıralayabiliriz.

BW специализируется в научных исследованиях и разработках, и снабжаем самым высокотехнологичным карбидовым материалом для поставки режущих / фрезеровочных инструментов для почвы, воздушного пространства и электронной индустрии. В нашу основную продукцию входит твердый карбид / быстрорежущая сталь, а также двигатели, микроэлектрические дрели, IC картонорезальные машины, фрезы для гравирования, режущие пилы, фрезеры-расширители, фрезеры-расширители с резцом, дрели, резаки форм для шлицевого вала / звездочки роликовой цепи, и специальные нано инструменты. Пожалуйста, посетите сайт  www.tool-tool.com  для получения большей информации.

BW is specialized in R&D and sourcing the most advanced carbide material with high-tech coating to supply cutting / milling tool for mould & die, aero space and electronic industry. Our main products include solid carbide / HSS end mills, micro electronic drill, IC card cutter, engraving cutter, shell end mills, cutting saw, reamer, thread reamer, leading drill, involute gear cutter for spur wheel, rack and worm milling cutter, thread milling cutter, form cutters for spline shaft/roller chain sprocket, and special tool, with nano grade. Please visit our web  www.tool-tool.com  for more info.

 

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炭化ケイ素Silicon Carbide化学式SiC)は、炭素(C)とケイ素(Si)の1:1 の化合物で、天然では、隕石中にわずかに存在が確認される。鉱物学上「moissanite」(モアサナイト)と呼ばれ、また、19世紀末に工業化した会社の商品名から「カーボランダム」と呼ばれることもある。

ダイヤモンドの弟分、あるいはダイヤモンドシリコンの「あいのこ」的な性質を持ち、硬度、耐熱性、化学的安定性に優れることから、研磨材、耐火物、発熱体などに使われ、また半導体でもあることから、電子素子の素材にもなる。

結晶の光沢を持つ、黒色あるいは緑色の粉粒体として、市場に出る。

 

SiとCは、いずれも周期表上で同じIV族に属することから、基本的には共有結合性であるが、電気陰性度の違いによりイオン性を持つため、1対1の定比化合物として安定に存在する。

図1で結晶構造を説明する。

図1 SiCの結晶層

図の左半の正三角形に筋目をつけて折り上げ、接する稜線を貼りつければ、正三角形四枚を表面とする正四面体ができる。その四つの頂点にSi原子あるいはC原子、そして重心の位置にC原子あるいはSi原子を置いた正四面体から、炭化ケイ素の結晶を組みあげることができる。ちなみに、ダイヤモンドでは頂点と重心位置とがすべてC、シリコンではすべてSi、高圧相窒化硼素ではBとNとである。

ダイヤモンドの弟分、あるいはダイヤモンドシリコンの「あいのこ」的な性質はここからくる。

そ の正四面体を密に平面上に並べると、図の右半の網目模様となり、正三角形の中央で120°間隔の三本足をつけた黒丸が正四面体の頂点の原子たち、それ以外 の黒丸が正四面体の底面の原子たちである。正四面体の詰まった層が一つできた。その第1層の上に乗る第2層の正四面体は、第1層の頂点たち、すなわち三本 足つき黒丸を足場に並べることになる。その場合、図の右端に斜線をつけた(<)と(>)の二通りの並べかたがあり、この(<) か(>)かが炭化ケイ素に多くの結晶多形(ポリタイプ)を作ることになる。第1層は(<)の向きに描いてある。

斜線つき正三角形の(<)か(>)かのいずれかで第2層を並べてゆく。第2層の頂点は、斜線つき正三角形の中央、すなわち、図で"<"の記号、あるいは">"の記号を囲んだ白丸の所になり、そこが第3層を積む足場になる。以下同様……。

第 1層の底面 → 第1層の頂点(兼第2層の底面) → 第2層の頂点(兼第3層の底面)、と原子をたどると、(<)で積む場合は一様に右上がりに、(>)で積む場合は右上がりだったのが左上がりに 折れる。そして、図の">"の記号を囲んだ白丸の真下には第1層の底面の原子がある。すなわち、(<)の向きの第1層に(>)の向きの 第2層を重ね、その上にまた(<)の向きの第3層というふうに(<)(>)(<)(>)(<)(>)……と積 むと、原子はジグザグを描いて上がり、2層が一周期になる。この結晶は六方晶系の(hexagonal)対称性を持つから、2Hと記号し、また、(<)が1つ、(>)が1つだから、ジグザグを11と書く。つぎに、(<)(<)(<)(<)……と積むと3層が一周期になり、立方晶系の(cubic)対称性を持つから、3Cと記号する。

何十種類も知られている炭化ケイ素の多形の、繰り返し周期の小さい方の幾つかを表1に書く。

表 炭化ケイ素結晶の多形の例

記号
晶系
ジグザグ
同類

2H
六方晶
11
ウルツ鉱型窒化ホウ素

3C
立方晶
ダイアモンド、立方晶窒化ホウ素

4H
六方晶
22

6H
六方晶
33

8H
六方晶
44

10H
六方晶
55

15R
菱面体晶
(32)3

3Cが立方晶であることは、図1の網目模様を立方晶の(111)面として眺めれば理解できる。(0,0,0)と(1/4,1/4,1/4)とを原点として重なる二つの面心立方格子と考えてもいい。Siの面心立方とCの面心立方との組合わせである。15Rのジグザグの(32)3は、(<)(<)(<)(>)(>)を三回繰返して一周期と読む。Rは、6枚の菱形に囲まれた菱面体晶の(rhomboheral)対称性を持っているという意味である。同じく図1を(111)面として眺めればいい。立方体をつまんで引き伸ばせば菱面体になる。この対称性を持つのは、周期の数が15、21、27……など、奇の3の倍数の場合である。

以 上、多形の種類は多いが、同じ結晶層を重ねるときの(<)か(>)かの向きの違いだけにより、したがって隣り合うSi-Cの原子間距離は多形 によらず、密度もすべての多形で同じである。また、次項の工業的製造法で生産される炭化ケイ素中の多形は、4H、6H、15Rが圧倒的に多い。そして結晶 粒の強さの度合が、それら3種間で異なるという証拠はない。

 

ここでいう「工業的」とは、一度に10トンの単位で作られ、製品が最高純度ではないというような意味の、19世紀末以来の方法である。

図2 炭化ケイ素の製造炉 左:長さ方向の断面 右:横方向の断面

図2の左は、炉の長さ方向の断面で、10mよりは長い。左右端部の黒いのは黒鉛電極で、それらを結ぶ黒まだらは黒鉛の粉、その上下は、ケイ石、コークス他の原料である。

電極に電圧をかけると、黒鉛粉が発熱して周囲の原料を加熱する。1500℃を越えると微細な3Cが生成しはじめ、昇温とともに3Cは消え4H、6H、15Rなどが発達するが、この環境では、2200℃以上でそれらは分解して黒鉛の粉を残す。反応は SiO2+3C→SiC+2CO でまとめられる。

電 圧を切ったあとの横方向の断面が図2の右である。同心円の中心部の黒鉛粉はSiCが分解した分だけ太り、その外側に(斜線を付けた)SiCの塊がチクワ状 に生成する。その外側は温度が1500℃くらいにしか上がらなかった3Cの薄い層、その又外側は反応しなかった原料で、未反応物は次の操炉の原料に混ぜ る。 SiCの塊は、中心から外側へ放射状に発達した結晶粒の集まりで、通気性に富む。

炉に原料や黒鉛粉を積む → 通電する → 停めて冷す → SiC塊を取出すの各工程の長さは、数日ずつである。

この炭化ケイ素の製造には多量の電力が必要で、安価な電力が得られる立地で行われる。

製品の塊から不純物を除き、粉砕し、さらに不純物を除き、粒度ごとに篩い分け、製品にする。

 

表2に、周期表IV族の三兄弟、C、SiC、Siの性質を並べる。炭素原子よりシリコン原子の方が大きいから、C<SiC<Siと原子間距離は広がり、熱伝導率は小さくなり、硬さは下がる。表の熱伝導率に幅があるのは、純度による。ヌープ硬度は、結晶面によって違う。

表 C, SiC, Siの特性の比較

特性
単位
ダイヤモンド
炭化ケイ素
シリコン

原子間距離
nm
0.154
0.188
0.235

密度
g/cm3
3.513
3.217
2.330

熱伝導率
W/m/K
600~2000
100~350
168

ヌープ硬度
kgf/mm2
7000~8000
2500~3200

炭化ケイ素の特長はまずその硬さで、滑石を1、ダイヤモンドを15とする修正モース硬度の序列では、13である。

純粋な炭化ケイ素は無色透明と言われ、工業製品は緑色から黒色を呈するが、製造の環境を清浄にするほど色が薄くなる。緑ないし黒の着色は、窒素、アルミニウムなどIII族V族元素の原子が結晶格子に入り込んで作る不純物準位による。

したがって結晶の電気抵抗は色が薄いほど桁違いに高く、発熱体の原料に使用されるのは緑色品である。

炭化ケイ素は800℃以上の大気中で酸化するが、表面に生成するSiO2が酸化を遅める保護被膜になる。液体にはならない。3070℃で昇華するといわれる。

フッ化水素硫酸硝酸の混合液にはわずかに溶ける。ある種の溶融塩および融鉄には溶ける。

 

研磨材、耐火煉瓦の原料、鋳鉄への加炭加ケイ素剤、などに大量に使われる。鋳鉄用は低純度品である。

電気素子の素材としては、発熱体、アレスタ、バリスタなどに長く使われてきた。シリコンに比べてバンドギャップが大きい事から、高温、高線量下で利用できる半導体材料として注目され、1980年代以降の結晶成長技術の発展にともない、青色発光ダイオード、高速ショットキーバリアダイオードMOSFET電界効果トランジスタ)、などに使われるようになった。熱伝導率が高いので、他の半導体の基板としても重宝がられている。

ファインセラミックスエンジニアリングセラミックスとしての用途も、開けている。金型プレス成形、静水圧成形、射出成形、スリップキャスト成形、押出成形、などの成型法、反応焼結、常圧焼結、加圧焼結、再焼結などの焼結法が行われている。

近年、ディーゼル車の排出する煤塵の集塵用フィルター(DPF)材料としての用途が急拡大されている。

また、大粒のものを装飾用宝石として用いる、果ては「モアッサナイトダイヤモンド」と称してダイヤの一種であるかのように扱い、高額で売却する悪質な例もある。

歡迎來到Bewise Inc.的世界,首先恭喜您來到這接受新的資訊讓產業更有競爭力,我們是提供專業刀具製造商,應對客戶高品質的刀具需求,我們可以協助客戶滿足您對產業的不同要求,我們有能力達到非常卓越的客戶需求品質,這是現有相關技術無法比擬的,我們成功的滿足了各行各業的要求,包括:精密HSS DIN切削刀具協助客戶設計刀具流程DIN or JIS 鎢鋼切削刀具設計NAS986 NAS965 NAS897 NAS937orNAS907 航太切削刀具,NAS航太刀具設計超高硬度的切削刀具醫療配件刀具設計複合式再研磨機PCD地板專用企口鑽石組合刀具粉末造粒成型機主機版專用頂級電桿PCD V-Cut捨棄式圓鋸片組粉末成型機航空機械鉸刀主機版專用頂級電汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具銑刀與切斷複合再研磨機銑刀與鑽頭複合再研磨機銑刀與螺絲攻複合再研磨機等等。我們的產品涵蓋了從民生刀具到工業級的刀具設計;從微細刀具到大型刀具;從小型生產到大型量產;全自動整合;我們的技術可提供您連續生產的效能,我們整體的服務及卓越的技術,恭迎您親自體驗!!

BW Bewise Inc. Willy Chen willy@tool-tool.com bw@tool-tool.com www.tool-tool.com skype:willy_chen_bw mobile:0937-618-190 Head &Administration Office No.13,Shiang Shang 2nd St., West Chiu Taichung,Taiwan 40356 http://www.tool-tool.com / FAX:+886 4 2471 4839 N.Branch 5F,No.460,Fu Shin North Rd.,Taipei,Taiwan S.Branch No.24,Sec.1,Chia Pu East Rd.,Taipao City,Chiayi Hsien,Taiwan

Welcome to BW tool world! We are an experienced tool maker specialized in cutting tools. We focus on what you need and endeavor to research the best cutter to satisfy users demand. Our customers involve wide range of industries, like mold & die, aerospace, electronic, machinery, etc. We are professional expert in cutting field. We would like to solve every problem from you. Please feel free to contact us, its our pleasure to serve for you. BW product including: cutting toolaerospace tool .HSS  DIN Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolNAS986 NAS965 NAS897 NAS937orNAS907 Cutting Tools,Carbide end milldisc milling cutter,Aerospace cutting toolhss drillФрезерыCarbide drillHigh speed steelCompound SharpenerMilling cutterINDUCTORS FOR PCDCVDD(Chemical Vapor Deposition Diamond )’PCBN (Polycrystalline Cubic Boron Nitride) Core drillTapered end millsCVD Diamond Tools Inserts’PCD Edge-Beveling Cutter(Golden FingerPCD V-CutterPCD Wood toolsPCD Cutting toolsPCD Circular Saw BladePVDD End Millsdiamond tool. INDUCTORS FOR PCD . POWDER FORMING MACHINE Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструменты Пустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FresePOWDER FORMING MACHINEElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterStaple CutterPCD diamond cutter specialized in grooving floorsV-Cut PCD Circular Diamond Tipped Saw Blade with Indexable Insert PCD Diamond Tool Saw Blade with Indexable InsertNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsend mill grinderdrill grindersharpenerStub roughing end millsDovetail milling cuttersCarbide slot drillsCarbide torus cuttersAngel carbide end millsCarbide torus cuttersCarbide ball-nosed slot drillsMould cutterTool manufacturer.

Bewise Inc. www.tool-tool.com

ようこそBewise Inc.の世界へお越し下さいませ、先ず御目出度たいのは新たな

情報を受け取って頂き、もっと各産業に競争力プラス展開。

弊社は専門なエンドミルの製造メーカーで、客先に色んな分野のニーズ

豊富なパリエーションを満足させ、特にハイテク品質要求にサポート致します。

弊社は各領域に供給できる内容は:

(1)精密HSSエンドミルのR&D

(2)Carbide Cutting tools設計

(3)鎢鋼エンドミル設計

(4)航空エンドミル設計

(5)超高硬度エンドミル

(6)ダイヤモンドエンドミル

(7)医療用品エンドミル設計

(8)自動車部品&材料加工向けエンドミル設計

弊社の製品の供給調達機能は:

(1)生活産業~ハイテク工業までのエンドミル設計

(2)ミクロエンドミル~大型エンドミル供給

(3)小Lot生産~大量発注対応供給

(4)オートメーション整備調達

(5)スポット対応~流れ生産対応

弊社の全般供給体制及び技術自慢の総合専門製造メーカーに貴方のご体験を御待ちしております。

Bewise Inc. talaşlı imalat sanayinde en fazla kullanılan ve üç eksende (x,y,z) talaş kaldırabilen freze takımlarından olan Parmak Freze imalatçısıdır. Çok geniş ürün yelpazesine sahip olan firmanın başlıca ürünlerini Karbür Parmak Frezeler, Kalıpçı Frezeleri, Kaba Talaş Frezeleri, Konik Alın Frezeler, Köşe Radyüs Frezeler, İki Ağızlı Kısa ve Uzun Küresel Frezeler, İç Bükey Frezeler vb. şeklinde sıralayabiliriz.

BW специализируется в научных исследованиях и разработках, и снабжаем самым высокотехнологичным карбидовым материалом для поставки режущих / фрезеровочных инструментов для почвы, воздушного пространства и электронной индустрии. В нашу основную продукцию входит твердый карбид / быстрорежущая сталь, а также двигатели, микроэлектрические дрели, IC картонорезальные машины, фрезы для гравирования, режущие пилы, фрезеры-расширители, фрезеры-расширители с резцом, дрели, резаки форм для шлицевого вала / звездочки роликовой цепи, и специальные нано инструменты. Пожалуйста, посетите сайт  www.tool-tool.com  для получения большей информации.

BW is specialized in R&D and sourcing the most advanced carbide material with high-tech coating to supply cutting / milling tool for mould & die, aero space and electronic industry. Our main products include solid carbide / HSS end mills, micro electronic drill, IC card cutter, engraving cutter, shell end mills, cutting saw, reamer, thread reamer, leading drill, involute gear cutter for spur wheel, rack and worm milling cutter, thread milling cutter, form cutters for spline shaft/roller chain sprocket, and special tool, with nano grade. Please visit our web  www.tool-tool.com  for more info.

 

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物理性质

二氧化硅又称硅石,化学式SiO2。自然界中存在有结晶二氧化和无定形二氧化两种。

结晶二氧化硅因晶体结构不同,分为石英、鳞石英和方石英三种。纯石英为无色晶体,大而透明棱柱状的石英叫晶。若含有微量杂质的水晶带有不同颜色,有紫水晶、晶、墨晶等。普通的砂是细小的石英晶体,有黄砂(较多的杂质)和白砂(杂质少、较纯净)。二氧化硅晶体中,硅原子的4个价电子与4个氧原子形成4个共价键,硅原子位于正四面体的中心,4个氧原子位于正四面体的4个顶角上,整个晶体是一个巨型分子,SiO2示组成的最简式不表示单个二氧化硅分子,仅是表示二氧化硅晶体中硅和氧的原子个数之比。

SiO2中Si—O键的键能很高,熔点、沸点较高(熔点1723℃,沸点2230℃)。

自然界存在的硅藻土是无定形二氧化硅,是低等水生植物硅藻的遗体,为白色固体或粉末状,多孔、质轻、松软的固体,吸附性强&Nbsp;

化学性质

是酸性氧化物、硅酸的酸酐。化学性质很稳定。不溶于水也不跟水反应,不跟一般的酸起作用。能与气体或氢氟酸反应生成四氟化硅气体。

SiO2+4HF SiF4↑+2H2O

有酸性氧化物的其它通性,高温下能与碱(强碱溶液或熔化的碱)反应生成盐和水。

常温下强碱溶液与SiO2缓慢地作用生成相应的硅酸盐。强碱溶液能腐蚀玻璃,故贮存强碱溶液的玻璃瓶不能用磨口玻璃塞,若采用玻璃塞(玻璃中含SiO2),会生成有粘性的硅酸钠,将玻璃瓶塞和瓶口粘结在一起。玻璃瓶内不能久放浓碱液。

高温下二氧化硅与碱性氧化物或某些金属碳酸盐共熔,生成硅酸盐。

SiO2+CaO CaSiO3(炼铁造渣)

将此高温下熔融状态的硅酸钠降温、冷却,可得石英玻璃,它有良好的透过紫外线性能,可作水银灯罩、耐高温的化学仪器、石英坩埚和光学仪器等。

二氧化硅的用途

   从硅石获 得消光剂的方法很多,根据其制造工艺主要可以分为两类。一类是热液法制造,生产的二氧化硅形态相对较为松软。用硅胶制造的产品质地则较硬。经过处理后的两 类产品均可制成标准的二氧化硅消光剂。处理过程是指使用有机(石蜡)或无机材料对二氧化硅表面进行一定程度的改性。与硅胶消光剂相比,处理过的二氧化硅拥 有不同的粒径、粒径分布和孔隙体积。热液法消光剂在粒径和分布方面也不同。未处理与处理过的产品也有所不同。目前只有一种消光剂适应于特殊场合,该消光剂 采用热解法制造,拥有很强的消光效率,且特别适用于水基涂料体系。

   二氧化硅的消光效果相对较强,浓度较高时可能导致粘度升高。储存过程中有沉淀的趋势,特别是未经处理的二氧化硅。为了避免积聚,我们可以使用石蜡或热解法二氧化硅。该消光剂能够调节45°、60°和85°方位的消光度。添加了二氧化硅消光剂的涂料可以进行罩涂。所有这些都是‘stir-in’产品。

    合成的硅酸能部分替代二氧化钛做为一种高质量增量剂使用,可应用于乳液底漆。该产物在干燥的乳液漆膜中能表现出均衡的消光效果。在长油树脂体系中可做为消光剂使用,但必须与颜料和填料一起进行分散。除了在粉末涂料系统中,二氧化硅消光剂可应用于所有的涂料。

 

歡迎來到Bewise Inc.的世界,首先恭喜您來到這接受新的資訊讓產業更有競爭力,我們是提供專業刀具製造商,應對客戶高品質的刀具需求,我們可以協助客戶滿足您對產業的不同要求,我們有能力達到非常卓越的客戶需求品質,這是現有相關技術無法比擬的,我們成功的滿足了各行各業的要求,包括:精密HSS DIN切削刀具協助客戶設計刀具流程DIN or JIS 鎢鋼切削刀具設計NAS986 NAS965 NAS897 NAS937orNAS907 航太切削刀具,NAS航太刀具設計超高硬度的切削刀具醫療配件刀具設計複合式再研磨機PCD地板專用企口鑽石組合刀具粉末造粒成型機主機版專用頂級電桿PCD V-Cut捨棄式圓鋸片組粉末成型機航空機械鉸刀主機版專用頂級電汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具銑刀與切斷複合再研磨機銑刀與鑽頭複合再研磨機銑刀與螺絲攻複合再研磨機等等。我們的產品涵蓋了從民生刀具到工業級的刀具設計;從微細刀具到大型刀具;從小型生產到大型量產;全自動整合;我們的技術可提供您連續生產的效能,我們整體的服務及卓越的技術,恭迎您親自體驗!!

BW Bewise Inc. Willy Chen willy@tool-tool.com bw@tool-tool.com www.tool-tool.com skype:willy_chen_bw mobile:0937-618-190 Head &Administration Office No.13,Shiang Shang 2nd St., West Chiu Taichung,Taiwan 40356 http://www.tool-tool.com / FAX:+886 4 2471 4839 N.Branch 5F,No.460,Fu Shin North Rd.,Taipei,Taiwan S.Branch No.24,Sec.1,Chia Pu East Rd.,Taipao City,Chiayi Hsien,Taiwan

Welcome to BW tool world! We are an experienced tool maker specialized in cutting tools. We focus on what you need and endeavor to research the best cutter to satisfy users demand. Our customers involve wide range of industries, like mold & die, aerospace, electronic, machinery, etc. We are professional expert in cutting field. We would like to solve every problem from you. Please feel free to contact us, its our pleasure to serve for you. BW product including: cutting toolaerospace tool .HSS  DIN Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolNAS986 NAS965 NAS897 NAS937orNAS907 Cutting Tools,Carbide end milldisc milling cutter,Aerospace cutting toolhss drillФрезерыCarbide drillHigh speed steelCompound SharpenerMilling cutterINDUCTORS FOR PCDCVDD(Chemical Vapor Deposition Diamond )’PCBN (Polycrystalline Cubic Boron Nitride) Core drillTapered end millsCVD Diamond Tools Inserts’PCD Edge-Beveling Cutter(Golden FingerPCD V-CutterPCD Wood toolsPCD Cutting toolsPCD Circular Saw BladePVDD End Millsdiamond tool. INDUCTORS FOR PCD . POWDER FORMING MACHINE Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструменты Пустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FresePOWDER FORMING MACHINEElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterStaple CutterPCD diamond cutter specialized in grooving floorsV-Cut PCD Circular Diamond Tipped Saw Blade with Indexable Insert PCD Diamond Tool Saw Blade with Indexable InsertNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsend mill grinderdrill grindersharpenerStub roughing end millsDovetail milling cuttersCarbide slot drillsCarbide torus cuttersAngel carbide end millsCarbide torus cuttersCarbide ball-nosed slot drillsMould cutterTool manufacturer.

Bewise Inc. www.tool-tool.com

ようこそBewise Inc.の世界へお越し下さいませ、先ず御目出度たいのは新たな

情報を受け取って頂き、もっと各産業に競争力プラス展開。

弊社は専門なエンドミルの製造メーカーで、客先に色んな分野のニーズ

豊富なパリエーションを満足させ、特にハイテク品質要求にサポート致します。

弊社は各領域に供給できる内容は:

(1)精密HSSエンドミルのR&D

(2)Carbide Cutting tools設計

(3)鎢鋼エンドミル設計

(4)航空エンドミル設計

(5)超高硬度エンドミル

(6)ダイヤモンドエンドミル

(7)医療用品エンドミル設計

(8)自動車部品&材料加工向けエンドミル設計

弊社の製品の供給調達機能は:

(1)生活産業~ハイテク工業までのエンドミル設計

(2)ミクロエンドミル~大型エンドミル供給

(3)小Lot生産~大量発注対応供給

(4)オートメーション整備調達

(5)スポット対応~流れ生産対応

弊社の全般供給体制及び技術自慢の総合専門製造メーカーに貴方のご体験を御待ちしております。

Bewise Inc. talaşlı imalat sanayinde en fazla kullanılan ve üç eksende (x,y,z) talaş kaldırabilen freze takımlarından olan Parmak Freze imalatçısıdır. Çok geniş ürün yelpazesine sahip olan firmanın başlıca ürünlerini Karbür Parmak Frezeler, Kalıpçı Frezeleri, Kaba Talaş Frezeleri, Konik Alın Frezeler, Köşe Radyüs Frezeler, İki Ağızlı Kısa ve Uzun Küresel Frezeler, İç Bükey Frezeler vb. şeklinde sıralayabiliriz.

BW специализируется в научных исследованиях и разработках, и снабжаем самым высокотехнологичным карбидовым материалом для поставки режущих / фрезеровочных инструментов для почвы, воздушного пространства и электронной индустрии. В нашу основную продукцию входит твердый карбид / быстрорежущая сталь, а также двигатели, микроэлектрические дрели, IC картонорезальные машины, фрезы для гравирования, режущие пилы, фрезеры-расширители, фрезеры-расширители с резцом, дрели, резаки форм для шлицевого вала / звездочки роликовой цепи, и специальные нано инструменты. Пожалуйста, посетите сайт  www.tool-tool.com  для получения большей информации.

BW is specialized in R&D and sourcing the most advanced carbide material with high-tech coating to supply cutting / milling tool for mould & die, aero space and electronic industry. Our main products include solid carbide / HSS end mills, micro electronic drill, IC card cutter, engraving cutter, shell end mills, cutting saw, reamer, thread reamer, leading drill, involute gear cutter for spur wheel, rack and worm milling cutter, thread milling cutter, form cutters for spline shaft/roller chain sprocket, and special tool, with nano grade. Please visit our web  www.tool-tool.com  for more info.

 

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   氮化硅,子式为Si3N4,是一种重要的结构陶瓷材料。它是一种超硬物质,本身具有润滑性,并且耐磨损,为原子晶体;高温时抗氧化。而且它还能抵抗冷热冲 击,在空气中加热到1 000 ℃以上,急剧冷却再急剧加热,也不会碎裂。正是由于氮化硅陶瓷具有如此优异的特性,人们常常利用它来制造轴承、气轮机叶片、机械密封环、永久性模具等机械 构件。如果用耐高温而且不易传热的氮化硅陶瓷来制造发动机部件的受热面,不仅可以提高柴油机质量,节省燃料,而且能够提高热效率。我国及美国、日本等国家 都已研制出了这种柴油机。

除氢氟酸外,它不与其他无机酸反应(反应方程式:Si3N4+16HF═3SiF4↑+4NH4F),抗腐蚀能力强。

 

 

歡迎來到

氮 化硅用做高级耐火材料,如与sic结合作SI3N4-SIC耐火材料用于高炉炉身等部位;如与BN结合作SI3N4-BN材料,用于水平连铸分离环。 SI3N4-BN系水平连铸分离环是一种细结构陶瓷材料,结构均匀,具有高的机械强度。耐热冲击性好,又不会被钢液湿润,符合连珠的工艺要求。见下表

性 能
AL2O3
ZrO2
熔融石英(SiO2)
ZrO2 -MO金属陶瓷
反应结合 Si3N4
热压 Si3N4
热压 BN
反应结合 SiN4-BN

抗热震性







抗热应力







尺寸加工精度与易加工性能







耐磨性







耐侵蚀性






相 对分子质量140.28。灰色、白色或灰白色。六方晶系。晶体呈六面体。密度3.44。硬度9~9.5,努氏硬度约为2200,显微硬度为 32630MPa。熔点1900℃(加压下)。通常在常压下1900℃分解。比热容为0.71J/(g·K)。生成热为-751.57kJ/mol。热导 率为16.7W/(m·K)。线膨胀系数为2.75×10-6/℃(20~1000℃)。不溶于水。溶于氢氟酸。在空气中开始氧化的温度 1300~1400℃。比体积电阻,20℃时为1.4×105 ·m,500℃时为4×108 ·m。弹性模量为28420~46060MPa。耐压强度为490MPa(反应烧结的)。1285摄式度时与二氮化二钙反应生成二氮硅化钙,600度时使过渡金属还原,放出氮氧化物。抗弯强度为147MPa。可由硅粉在氮气中加热或卤化硅与氨反应而制得。可用作高温陶瓷原料。

氮化硅陶瓷制品的生产方法有两种,即反应烧结法和热压烧结法。 反应烧结法是将硅粉或硅粉与氮化硅粉的混合料按一般陶瓷制品生产方法成型。然后在氮化炉内,在1150~1200℃预氮化,获得一定强度后,可在机床上进 行机械加工,接着在1350~1450℃进一步氮化18~36h,直到全部变为氮化硅为止。这样制得的产品尺寸精确,体积稳定。热压烧结法则是将氮化硅粉 与少量添加剂(如MgO、Al2O3、MgF2、AlF3或Fe2O3等),在19.6MPa以上的压力和1600~1700℃条件下压热成型烧结。通常 热压烧结法制得的产品比反应烧结制得的产品密度高,性能好。附表1中列出了这两种方法生产的氮化硅陶瓷的性能。

氮化硅陶瓷材料具有热稳定 性高、抗氧化能力强以及产品尺寸精确度高等优良性能。由于氮化硅是键强高的共价化合物,并在空气中能形成氧化物保护膜,所以还具有良好的化学稳定 性,1200℃以下不被氧化,1200~1600℃生成保护膜可防止进一步氧化,并且不被铝、铅、锡、银、黄铜、镍等很多种熔融金属或合金所浸润或腐蚀, 但能被镁、镍铬合金、不锈钢等熔液所腐蚀。

  氮化硅陶瓷材料可用于高温工程的部件,冶金工业等方面的高级耐火材料,化工工业中抗腐蚀部件和密封部件,机械加工工业的刀具和刃具等。

  由于氮化硅与碳化硅氧化铝、二氧化钍、氮化硼等能形成很强的结合,所以可用作结合材料,以不同配比进行改性。

  此外,氮化硅还能应用到薄膜太阳能电池中。用PECVD法镀氮化硅膜后,不但能作为减反射膜可减小入射光的反射,而且,在氮化硅薄膜的沉积过程中,反应产物氢原子进入氮化硅薄膜以及硅片内,起到了钝化缺陷的作用。

Bewise Inc.的世界,首先恭喜您來到這接受新的資訊讓產業更有競爭力,我們是提供專業刀具製造商,應對客戶高品質的刀具需求,我們可以協助客戶滿足您對產業的不同要求,我們有能力達到非常卓越的客戶需求品質,這是現有相關技術無法比擬的,我們成功的滿足了各行各業的要求,包括:精密HSS DIN切削刀具協助客戶設計刀具流程DIN or JIS 鎢鋼切削刀具設計NAS986 NAS965 NAS897 NAS937orNAS907 航太切削刀具,NAS航太刀具設計超高硬度的切削刀具醫療配件刀具設計複合式再研磨機PCD地板專用企口鑽石組合刀具粉末造粒成型機主機版專用頂級電桿PCD V-Cut捨棄式圓鋸片組粉末成型機航空機械鉸刀主機版專用頂級電汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具銑刀與切斷複合再研磨機銑刀與鑽頭複合再研磨機銑刀與螺絲攻複合再研磨機等等。我們的產品涵蓋了從民生刀具到工業級的刀具設計;從微細刀具到大型刀具;從小型生產到大型量產;全自動整合;我們的技術可提供您連續生產的效能,我們整體的服務及卓越的技術,恭迎您親自體驗!!

BW Bewise Inc. Willy Chen willy@tool-tool.com bw@tool-tool.com www.tool-tool.com skype:willy_chen_bw mobile:0937-618-190 Head &Administration Office No.13,Shiang Shang 2nd St., West Chiu Taichung,Taiwan 40356 http://www.tool-tool.com / FAX:+886 4 2471 4839 N.Branch 5F,No.460,Fu Shin North Rd.,Taipei,Taiwan S.Branch No.24,Sec.1,Chia Pu East Rd.,Taipao City,Chiayi Hsien,Taiwan

Welcome to BW tool world! We are an experienced tool maker specialized in cutting tools. We focus on what you need and endeavor to research the best cutter to satisfy users demand. Our customers involve wide range of industries, like mold & die, aerospace, electronic, machinery, etc. We are professional expert in cutting field. We would like to solve every problem from you. Please feel free to contact us, its our pleasure to serve for you. BW product including: cutting toolaerospace tool .HSS  DIN Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolNAS986 NAS965 NAS897 NAS937orNAS907 Cutting Tools,Carbide end milldisc milling cutter,Aerospace cutting toolhss drillФрезерыCarbide drillHigh speed steelCompound SharpenerMilling cutterINDUCTORS FOR PCDCVDD(Chemical Vapor Deposition Diamond )’PCBN (Polycrystalline Cubic Boron Nitride) Core drillTapered end millsCVD Diamond Tools Inserts’PCD Edge-Beveling Cutter(Golden FingerPCD V-CutterPCD Wood toolsPCD Cutting toolsPCD Circular Saw BladePVDD End Millsdiamond tool. INDUCTORS FOR PCD . POWDER FORMING MACHINE Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструменты Пустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FresePOWDER FORMING MACHINEElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterStaple CutterPCD diamond cutter specialized in grooving floorsV-Cut PCD Circular Diamond Tipped Saw Blade with Indexable Insert PCD Diamond Tool Saw Blade with Indexable InsertNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsend mill grinderdrill grindersharpenerStub roughing end millsDovetail milling cuttersCarbide slot drillsCarbide torus cuttersAngel carbide end millsCarbide torus cuttersCarbide ball-nosed slot drillsMould cutterTool manufacturer.

Bewise Inc. www.tool-tool.com

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(5)超高硬度エンドミル

(6)ダイヤモンドエンドミル

(7)医療用品エンドミル設計

(8)自動車部品&材料加工向けエンドミル設計

弊社の製品の供給調達機能は:

(1)生活産業~ハイテク工業までのエンドミル設計

(2)ミクロエンドミル~大型エンドミル供給

(3)小Lot生産~大量発注対応供給

(4)オートメーション整備調達

(5)スポット対応~流れ生産対応

弊社の全般供給体制及び技術自慢の総合専門製造メーカーに貴方のご体験を御待ちしております。

Bewise Inc. talaşlı imalat sanayinde en fazla kullanılan ve üç eksende (x,y,z) talaş kaldırabilen freze takımlarından olan Parmak Freze imalatçısıdır. Çok geniş ürün yelpazesine sahip olan firmanın başlıca ürünlerini Karbür Parmak Frezeler, Kalıpçı Frezeleri, Kaba Talaş Frezeleri, Konik Alın Frezeler, Köşe Radyüs Frezeler, İki Ağızlı Kısa ve Uzun Küresel Frezeler, İç Bükey Frezeler vb. şeklinde sıralayabiliriz.

BW специализируется в научных исследованиях и разработках, и снабжаем самым высокотехнологичным карбидовым материалом для поставки режущих / фрезеровочных инструментов для почвы, воздушного пространства и электронной индустрии. В нашу основную продукцию входит твердый карбид / быстрорежущая сталь, а также двигатели, микроэлектрические дрели, IC картонорезальные машины, фрезы для гравирования, режущие пилы, фрезеры-расширители, фрезеры-расширители с резцом, дрели, резаки форм для шлицевого вала / звездочки роликовой цепи, и специальные нано инструменты. Пожалуйста, посетите сайт  www.tool-tool.com  для получения большей информации.

BW is specialized in R&D and sourcing the most advanced carbide material with high-tech coating to supply cutting / milling tool for mould & die, aero space and electronic industry. Our main products include solid carbide / HSS end mills, micro electronic drill, IC card cutter, engraving cutter, shell end mills, cutting saw, reamer, thread reamer, leading drill, involute gear cutter for spur wheel, rack and worm milling cutter, thread milling cutter, form cutters for spline shaft/roller chain sprocket, and special tool, with nano grade. Please visit our web  www.tool-tool.com  for more info.

 

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氮化硅, 12033-89-5, 结构式
氮化硅

CAS号:
12033-89-5

英文名称:
SILICON NITRIDE

英文同义词:
SI3N4 B7;SI3N4 M11;SILICON (IV) NITRIDE;SILICON (IV) NITRIDE ALPHA PHASE;Silicon IV nitride Powder;SILICON NITRIDE;Siliconnitridemeshlightgraypowder;Siliconnitridepowderprimarilyphase;trisilicon tetranitride;SILICON NITRIDE, NANOPOWDER, 98.5+%;SILICON NITRIDE, POWDER, SUBMICRON, 99.9 +%;SILICON NITRIDE, -325 MESH, PREDOMINANTL Y ALPHA-PHASE;SILICON NITRIDE, -325 MESH, PREDOMINANTL Y BETA-PHASE;SILICON NITRIDE, NANOPOWDER, 98+%;SILICON NITRIDE B-PHASE;SILICON NITRIDE A-PHASE;Silicon(IV)nitride,<5micron(99%-Si);silicon (iv) nitride, amorphous;silicon(iv) nitride, electronic grade;MILLEDSILICONNITRIDE

中文名称:
氮化硅

中文同义词:
氮 化硅;四氮化三硅;四氮化三硅 ;氧化镁粘结型氮化硅溅射靶;氮化硅粉末;氧化镁粘结型氮化硅(IV)溅射靶, 50.8MM (2.0IN) DIA X 3.18M;氧化镁粘结型氮化硅(IV)溅射靶, 50.8MM (2.0IN) DIA X 6.35M;氧化镁粘结型氮化硅(IV)溅射靶, 76.2MM (3.0IN) DIA X 3.18M;氧化镁粘结型氮化硅(IV)溅射靶T, 76.2MM (3.0IN) DIA X 6.35;氮化硅(IV), AMORPHOUS, 96+%;氮化硅(IV), ELECTRONIC GRADE, 99.85% (METALS BASIS), 94% ^;氮化硅(IV), ^A-PHASE, 99.9% (METALS BASIS);氮化硅(IV), 99.3% (METALS BASIS), TYPICALLY 90% ^B-PHASE;氮化硅(IV), ^A-PHASE;氮化硅(IV);氮化硅(IV),^A-PHASE,95%;氧化镁粘结型氮化硅(IV)溅射 靶,76.2MM(3.0IN)DIAX3.18MM(0.125IN)THICK,99.9%(METALSBASIS);氧化镁粘结型氮化硅(IV) 溅射靶T,76.2MM(3.0IN)DIAX6.35MM(0.250IN)THICK,99.9%(METALSBASIS);氧化镁粘结型氮化硅 (IV)溅射靶,50.8MM(2.0IN)DIAX3.18MM(0.125IN)THICK,99.9%(METALSBASIS);氧化镁粘结型氮 化硅(IV)溅射靶,50.8MM(2.0IN)DIAX6.35MM(0.250IN)THICK,99.9%(METALSBASIS)

CBNumber:
CB8744847

分子式:
N4Si3

分子量:
140.28

MOL File:
12033-89-5.mol

氮化硅 化学性质

熔点 :
1900 °C

密度 :
3.44 g/mL at 25 °C(lit.)

form :
powder

Merck :
14,8497

稳定性:
Stable.

CAS 数据库:
12033-89-5(CAS DataBase Reference)

安全信息

危险品标志 :
Xi

危险类别码 :
37

安全说明 :
22-24/25

WGK Germany :
3

F :
10

TSCA :
Yes

 

歡迎來到Bewise Inc.的世界,首先恭喜您來到這接受新的資訊讓產業更有競爭力,我們是提供專業刀具製造商,應對客戶高品質的刀具需求,我們可以協助客戶滿足您對產業的不同要求,我們有能力達到非常卓越的客戶需求品質,這是現有相關技術無法比擬的,我們成功的滿足了各行各業的要求,包括:精密HSS DIN切削刀具協助客戶設計刀具流程DIN or JIS 鎢鋼切削刀具設計NAS986 NAS965 NAS897 NAS937orNAS907 航太切削刀具,NAS航太刀具設計超高硬度的切削刀具醫療配件刀具設計複合式再研磨機PCD地板專用企口鑽石組合刀具粉末造粒成型機主機版專用頂級電桿PCD V-Cut捨棄式圓鋸片組粉末成型機航空機械鉸刀主機版專用頂級電汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具銑刀與切斷複合再研磨機銑刀與鑽頭複合再研磨機銑刀與螺絲攻複合再研磨機等等。我們的產品涵蓋了從民生刀具到工業級的刀具設計;從微細刀具到大型刀具;從小型生產到大型量產;全自動整合;我們的技術可提供您連續生產的效能,我們整體的服務及卓越的技術,恭迎您親自體驗!!

BW Bewise Inc. Willy Chen willy@tool-tool.com bw@tool-tool.com www.tool-tool.com skype:willy_chen_bw mobile:0937-618-190 Head &Administration Office No.13,Shiang Shang 2nd St., West Chiu Taichung,Taiwan 40356 http://www.tool-tool.com / FAX:+886 4 2471 4839 N.Branch 5F,No.460,Fu Shin North Rd.,Taipei,Taiwan S.Branch No.24,Sec.1,Chia Pu East Rd.,Taipao City,Chiayi Hsien,Taiwan

Welcome to BW tool world! We are an experienced tool maker specialized in cutting tools. We focus on what you need and endeavor to research the best cutter to satisfy users demand. Our customers involve wide range of industries, like mold & die, aerospace, electronic, machinery, etc. We are professional expert in cutting field. We would like to solve every problem from you. Please feel free to contact us, its our pleasure to serve for you. BW product including: cutting toolaerospace tool .HSS  DIN Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolNAS986 NAS965 NAS897 NAS937orNAS907 Cutting Tools,Carbide end milldisc milling cutter,Aerospace cutting toolhss drillФрезерыCarbide drillHigh speed steelCompound SharpenerMilling cutterINDUCTORS FOR PCDCVDD(Chemical Vapor Deposition Diamond )’PCBN (Polycrystalline Cubic Boron Nitride) Core drillTapered end millsCVD Diamond Tools Inserts’PCD Edge-Beveling Cutter(Golden FingerPCD V-CutterPCD Wood toolsPCD Cutting toolsPCD Circular Saw BladePVDD End Millsdiamond tool. INDUCTORS FOR PCD . POWDER FORMING MACHINE Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструменты Пустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FresePOWDER FORMING MACHINEElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterStaple CutterPCD diamond cutter specialized in grooving floorsV-Cut PCD Circular Diamond Tipped Saw Blade with Indexable Insert PCD Diamond Tool Saw Blade with Indexable InsertNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsend mill grinderdrill grindersharpenerStub roughing end millsDovetail milling cuttersCarbide slot drillsCarbide torus cuttersAngel carbide end millsCarbide torus cuttersCarbide ball-nosed slot drillsMould cutterTool manufacturer.

Bewise Inc. www.tool-tool.com

ようこそBewise Inc.の世界へお越し下さいませ、先ず御目出度たいのは新たな

情報を受け取って頂き、もっと各産業に競争力プラス展開。

弊社は専門なエンドミルの製造メーカーで、客先に色んな分野のニーズ

豊富なパリエーションを満足させ、特にハイテク品質要求にサポート致します。

弊社は各領域に供給できる内容は:

(1)精密HSSエンドミルのR&D

(2)Carbide Cutting tools設計

(3)鎢鋼エンドミル設計

(4)航空エンドミル設計

(5)超高硬度エンドミル

(6)ダイヤモンドエンドミル

(7)医療用品エンドミル設計

(8)自動車部品&材料加工向けエンドミル設計

弊社の製品の供給調達機能は:

(1)生活産業~ハイテク工業までのエンドミル設計

(2)ミクロエンドミル~大型エンドミル供給

(3)小Lot生産~大量発注対応供給

(4)オートメーション整備調達

(5)スポット対応~流れ生産対応

弊社の全般供給体制及び技術自慢の総合専門製造メーカーに貴方のご体験を御待ちしております。

Bewise Inc. talaşlı imalat sanayinde en fazla kullanılan ve üç eksende (x,y,z) talaş kaldırabilen freze takımlarından olan Parmak Freze imalatçısıdır. Çok geniş ürün yelpazesine sahip olan firmanın başlıca ürünlerini Karbür Parmak Frezeler, Kalıpçı Frezeleri, Kaba Talaş Frezeleri, Konik Alın Frezeler, Köşe Radyüs Frezeler, İki Ağızlı Kısa ve Uzun Küresel Frezeler, İç Bükey Frezeler vb. şeklinde sıralayabiliriz.

BW специализируется в научных исследованиях и разработках, и снабжаем самым высокотехнологичным карбидовым материалом для поставки режущих / фрезеровочных инструментов для почвы, воздушного пространства и электронной индустрии. В нашу основную продукцию входит твердый карбид / быстрорежущая сталь, а также двигатели, микроэлектрические дрели, IC картонорезальные машины, фрезы для гравирования, режущие пилы, фрезеры-расширители, фрезеры-расширители с резцом, дрели, резаки форм для шлицевого вала / звездочки роликовой цепи, и специальные нано инструменты. Пожалуйста, посетите сайт  www.tool-tool.com  для получения большей информации.

BW is specialized in R&D and sourcing the most advanced carbide material with high-tech coating to supply cutting / milling tool for mould & die, aero space and electronic industry. Our main products include solid carbide / HSS end mills, micro electronic drill, IC card cutter, engraving cutter, shell end mills, cutting saw, reamer, thread reamer, leading drill, involute gear cutter for spur wheel, rack and worm milling cutter, thread milling cutter, form cutters for spline shaft/roller chain sprocket, and special tool, with nano grade. Please visit our web  www.tool-tool.com  for more info.

 

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