How to choose woodworking cutters?--part2

Selection of woodworking cutters

identify the main technical parameters of the cutter
Main parameters:outer diameter, machining thickness, and the center diameter.
Other technical parameters: number of teeth, the direction of rotation, rotation speed, feed rate, clamping way, and cutter material.
Choose the structure type of cutter
According the request and characteristics of cutting object, and consideration from both the technical and economic aspects, select the whole cutters or welding cutters, assembly cutters, and combination cutter.
The choice of the cutter rotation direction
Cutter rotation direction is determined in accordance with the direction of rotation of the processing machinery spindle and the tool axis and the feed of the work piece relative position of the whole cutter, or assembling cutter, the inclination of the cutting blade relative to cutter radius determines the rotation of the cutter direction.
Selection of cutting amount of end mills
Cutting amount of end mills are including cutting speed, feed speed of work material, and depth of milling. Cutting speed depends on the rpm and the radius of the end mills .. feed rate depends on the requirements of cutting surface .. the surface roughness of work material largely depends on the feed rate per tooth during cutting process, too much feed will cause too rough surface of work piece; too small feed will cause burnt phenomenon on the surface, so the feed rate must be appropriate.
Operation stability of end mills
The stability of the cutter operation is to ensure that the basis of the machining accuracy and surface quality .. including two aspects: one is cutter excited vibration in machining due to external forces; the other is that cutter happens deformation by external forces.
Safety of milling process
The safety of the milling cutter includes the limitation of rotation speed, the limitation of chip thickness, height restrictions of molding cutter contour and the thickness of assembly cutter, and stretched limit.
Cutting timber is characterized by high speed cutting, the rotation speed of the milling cutters mostly above 3000 rpm. High speed cutting for timber brings high productivity and smooth surface .., it also brings a series of security problems. Therefore, when the spindle speed up to 9000 rpm, besides the cutter which diameter smaller than 16mm, it should prohibit to use assembly cutters and do strict testing and inspection for welding cutter.
It is necessary to limit chip thickness for avoiding overload of cutters. For end mills, the clamping method, cutter height, and thickness of work piece are with close relationship. When you ensure the thickness of work piece, mill diameter, and center diameter, the height of cutter reflects its own strength, stiffness, and capacity of cutting resistance. The height must be limited to ensure the safety of cutter usage.
The design point of welding end mills is clamping problem. No matter the body is cylindrical or disc-type, the blade clamp form must be guaranteed to provide sufficient clamping force to resist rotation centrifugal force .

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超精密研磨拋光技術

超精密加工是指加工誤差小於0.01μm、表面粗糙度小於Ra0.02μm 的加工,又稱之為亞微米級加工。現在,超精密加工已進入納米級,稱之為納米加工。用於製造高精度高表面品質的零件,如大型積體電路的矽片,不僅要求極高的平面度,極小的表面粗糙度,而且要求表面無變質層、無劃傷。光學平晶、量塊、石英振子基片平面,除要求極高平面度、極小表面粗糙度外,還要求兩端面嚴格平行。
拋光研磨方法:



研磨方法
磨料
研磨工具
研磨液
研磨方式
加工機理
加工對象


超精密研磨
各種維細磨料
鑄鐵
玻璃
陶瓷
機油
煤油
水溶液
手工研磨
機械研磨
以磨料的機械作用為去除加工余量
各種形位及尺寸精度高的硬脆材料零件


超精密拋光
各種微細磨料、軟質磨料
軟質研具、瀝青等
過濾水或蒸餾水
透鏡、平鏡研磨機,帶修整輪,加工運動平穩
光學零件、石英振子、玻璃等


液中研磨
、拋光
微細磨料
合成樹脂
過濾水或蒸餾水
研磨運動在液體中進行
以磨料的機械作用為主,加上液體的冷卻,分散磨料作用
矽片等電子材料


化學研磨
、拋光
微細磨料
無紡織等
純水或水溶液
研磨壓力大研磨速度高
以磨料的機械作用去除化學反應生成物
矽等


軟質磨料
玻璃板
藍寶石基板


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Cutter selection Part-2

Following on last introduction of end mill selection, now we continue to introduce the classification of cutter shape and application.
There are square end mill, side cutter, angle cutter, shape cutter, end mill, T-slot cutter, semi-moon key seat cutter, dovetail cutter , as well as face milling cutter.

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研磨與拋光介紹

研磨拋光(Polishing or Lapping)是使工件產生平滑鏡面的超精密研磨技術,其目的在於使表面粗糙度及平坦度到達一定的可容許範圍,常被廣泛的使用在硬脆金屬、陶瓷、玻璃及 晶圓等材料表面的精密加工。

研磨

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Cutter selection Part-1

Cutter selection
Only correct type and cutting edge may do a good job for milling work. Popular end mills include flat cutter, side cutter, face milling cutter, milling cutter, end mill, sawing, and milling cutter. Its characteristics is that many teeth and flutes on one milling cutter, some end mills with only two or three teeth; some cutters are with considerable numbers of teeth. Hence end mill is called as multi-teeth cutters.

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HSS材質對照表

HSS材質對照表
此表以HSS材料為主,將常用的材料規格號碼、記號加以歸納、整理、分析及化學成分及機械性質的分析。




台灣
中國
日本
美國
德國


CNS
GB
JIS
ASTM
DIN


2904
9943
G4403
A600
17350


材料號碼
記號


SKH2
W18Cr4V
SKH2
T1
1.3355
S 18-0-1


SKH3
W18Cr4V5Co5
SKH3
T4
1.3255
S 18-1-2-5


SKH4
W18Cr4V5Co8
SKH4
T5
1.3265
S 18-1-2-10


SKH10
W12Cr4V5Co5
SKH10
T15
1.3202
S 12-1-4-5


SKH51
W6Mo5Cr4V2
SKH51
M2
1.3342
S 6-5-2


SKH52
W6Mo5Cr4V3
SKH52
M3-1
1.3344
S 6-5-3


SKH53
--
SKH53
M3-2
1.3344
S 6-5-3


SKH54
--
SKH54
M4
1.3344
S 6-5-3


SKH55
W6Mo5Cr4V2Co5
SKH55
--
1.3243
S 6-5-2-5


SKH56
W6Mo5Cr4V2Co5
SKH56
M36
--
--


SKH57
--
SKH57
M41
1.3207
S 10-4-3-10


SKH58
--
SKH58
M7
--
--


SKH59
W2Mo9Cr4VCo8
SKH59
M42
1.3247
S 2-10-1-8



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tool,What is cutting tool?

There are lots of metal products around us in our life, but we all know how they are produced?
There are many processing methods to make metal, cutting is the major one among them.

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tool,Characteristics of precision miniature cutting tools

Four major cutting method:

Precision micro turning
Precision micro milling
Precision micro fly cut
Precision micro drilling

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擴散粒子 - BW產品

一般擴散粒子(Diffusion beads)包括有機材質之壓克力樹脂(PMMA)或聚苯乙烯(PS)或共聚PMMA-PS等多種高分子材質,具真圓狀的外型或多孔、絨毛、中空等行裝‧配合光學膜或其他用途,他可調控折射率、著色率、分散性、流動性、光反射性及彈性、接著性等。主要應用為LED背光模組擴散膜之光擴散劑及LED燈具擴散膜及其他光學塗層等。

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Characteristics and processing differences of the four kinds of cutting tools?

Plain Milling Cutter

Plain Milling Cutter-Characteristics and processing differences of the four kinds of cutting tools : Plain Milling Cutter, End Mill, Side Milling Cutter, and Face Milling Cutter


Plain Milling Cutter is the most commonly used tool in a horizontal milling machine. Plain Milling Cutter’s shape is like disc or cylindrical, which has blades on the outer circumference of the cutter for milling the plane which parallel to the cutter axis. The blade shapes include straight and helical blade-shaped. Generally helical blade shape is more commonly used. If the blade width is less 20mm, it is only suitable for light milling and milling hard materials because of its multi blades and small chip slots; if the width is over 20mm, it’s often designed as helical teeth in order to reduce the shear force and prevent vibration during milling, with fewer blades, so the chip slot is larger which is suitable for heavy milling and cutting soft materials.



End Mill

End Mill-Characteristics and processing differences of the four kinds of cutting tools : Plain Milling Cutter, End Mill, Side Milling Cutter, and Face Milling Cutter


Such cutters have a flute in the circumferential surface and the end for milling flat, face, shoulder angle and groove .There are straight shank, taper shank, straight flute, helical flute, double flute, multi-flute, and so on.



Side Milling Cutter

Side Milling Cutter-Characteristics and processing differences of the four kinds of cutting tools : Plain Milling Cutter, End Mill, Side Milling Cutter, and Face Milling Cutter


The shape of the side milling cutter is similar to the straight flute face cutter. Except the shape and function of end mills, its side also has cutting edge, which can milling the face and the side of work piece. Edge shape can be divided into straight teeth, spiral teeth and staggered teeth. Staggered teeth may be offset against each other and reduce vibration during machining, which is suitable for heavy milling.



Face Milling Cutter:

(Face Milling Cutter-Characteristics and processing differences of the four kinds of cutting tools : Plain Milling Cutter, End Mill, Side Milling Cutter, and Face Milling Cutter


Face milling cutter is a disc-shaped, with cutting blades around the body and the side face. Such cutter is specialized in cutting larger plane. The blade face is wider, and the cutter body is made of general tool steel, then embedded high-speed steel or carbide blade.



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Cutting Tools: What’s the difference among tungsten carbide, tungsten steel cutter, and super hard alloy cutter?

There are many kinds of different milling cutters. It may be divided into three categories as below according to its applications.
In fact, they are saying the same tool. The component is tungsten carbide (WC) and took part in the P type, M type, and K type. Micro grain carbide tool is made of tungsten carbide and adding some elements to to increase the hardness and abrasion resistance. Super hard alloy cutting tools is named by Japanese, which is also tungsten carbide cutter.
P, M, and K types are divided according to the different turning material.

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鎢鋼圓鋸片Part2 - 鎢鋼圓鋸片偏差

繼上一篇【鎢鋼圓鋸片Part1 - 鎢鋼圓鋸片切割】,這一篇為各位介紹鎢鋼圓鋸片中鎢鋼圓鋸片偏差相關要注意的細節!
木材切削用圓鋸片在精準度要不會求太過嚴謹,但要注意,雖圓鋸片在公差規範內,若機台偏差或加工參數不當等因素,仍會造成加工NG,所以造成工件毀損不是單一面向,所以除了要求圓鋸片公差品質外,更要注意可能造成偏差的因素,盡量避免。

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