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傳統高速鋼滾刀及濕切技術還能走多遠?

硬質合金滾刀和幹切加工的推動作用有目共睹。對於齒輪流水線大批量生產,高速鋼滾刀能否被硬質合金滾刀取替? 幹切是否已成為滾齒加工的必由之路,還是依然會走濕切之路?

硬 質合金滾刀雖然特別適用於滾削汽車用齒輪。但是,硬質合金滾刀在歐洲的應用程度仍然不高,這是由於隨著新型的高速鋼材料及高性能刀具塗層技術的發展,硬質 合金滾刀與高速鋼滾刀在滾齒時間上的差距可被控製在15%左右;硬質合金滾刀價格較高,若齒輪工件數量不足夠多,使用硬質合金滾刀的成本會很高;再者,使 用硬質合金滾刀時要特別小心,而且滾切參數和相應滾齒程序要編製得很細致,隻有現代滾齒機才能使用硬質合金滾刀正確滾齒,而若要更新滾齒設備,則需要巨大 的投資。就Samputensili而言,每年約生產25000把滾刀,其中硬質合金類隻占3%左右。這就是說,硬質合金滾刀每年的生產量最多為750 把。
  
齒輪幹切加工則是另外一回事。由於環保要求及處理冷卻廢液的費用很高,歐洲、美國和日本的用戶在選擇時一般會考慮幹切滾齒;而在中國、印度等發展中國家,控製汙染雖然也是一個迫切的要求,但需要時間。一旦社會對汙染問題的控製日益嚴格後,齒輪幹切加工也將會迅速發展起來。
  
哪一種齒輪精加工更流行
  
對於齒輪精加工,剃齒和磨齒之間,哪一種齒輪精加工更流行呢?
  
這首先要把一種行業與另一種行業區分開來。比方說,汽車工業使用的齒輪絕大多數還依靠剃齒進行加工。有些企業也會對後端傳動裝置齒輪進行磨削加工,這僅僅是為了消除環形圓柱齒輪上發生的任何變形。

上 述提到的齒輪加工時間減少,主要歸功於新型齒輪刀具、現代齒輪機床的發展及由此帶來的精加工餘量大幅減少和磨前齒輪質量的提高。另外,與磨齒機相比,現代 數控剃齒機常是價半功倍,可獲得熱處理前的高精度齒輪等級(高達DIN 5-6等級);而且與齒輪螺紋磨床磨削相比,加工周期也較短。
  
對 於汽車工業的齒輪,尤其是那些用在自動變速器的小齒輪,我們可以將剃齒加工後熱處理造成的變形控製在幾個微米;另外,通過齒形和齒向的修正有助於補償變 形。由於現代剃刀刃磨機的出現,如Samputensili公司所產生的S400 GS,齒形、齒向兩個參數可快速簡單修形;批量生產的時候,剃齒加工比磨削的好處多許多,相比較而言,剃齒既能保證品質,價格又合理。 

Samputensili
是齒輪機械行業名列前茅的公司之一,近年來其製造的剃刀還沒顯示出緩慢增產的兆頭。與此同時,齒輪磨削機床生產數量也在不斷上升。齒輪加工工藝的飛速發 展,齒輪機床所的操作高效快速,齒輪磨輪也有了迅速發展。這主要表現在陶瓷磨具、CBN砂輪、電鍍磨輪等方麵。用上述磨具來進行齒輪磨削加工,使加工周期 縮短。正由於加工周期逐步縮小,齒輪磨削加工的成本也隨之大幅降低。需要指出的是,有些產業對齒輪質量的要求很高,有的產業需要實現特殊的齒形,所以必須 經過磨削來完成。例如,重卡車工業、航空工程以及用於發電、變電的減速器工業,都依靠磨削去做齒輪精加工。在這些大功率產業中,齒輪磨削已處於絕對優勢。
  
齒輪批量生產的新技術
  
齒 輪的品質要求越來越高,變速噪音要求越來越低。要達到品質、噪音的雙重目標,這就要求進行精度更高的齒輪加工,實現極為複雜的齒輪齒向和齒形,目的是把變 速傳動的誤差降到最小。這意味著,在今後一個時期內,磨削仍然是齒輪成批生產的主要方法,齒輪磨削這項加工工藝可能會更加廣泛應用。但要特別注意齒輪加工 的單位成本。至今,成本低、收效大的剃齒帶來的好處是很明顯的。磨削在齒輪精加工中取得圓滿成功時,剃齒才可能大規模地被它代替。總之,無論選擇哪一種齒 輪加工方法,都要多注意實際使用情況。
  
鑒於滾齒加工目前取得了相當大的發展,很有可能滾齒後所獲的高精度也不再需要進行剃齒。齒輪燒結技術的進一步發展對齒輪製造也做出較大的貢獻,但是此方法目前正在處於萌芽狀態,很難準確預測未來發展趨勢。
  
正 如上麵所說,雖然齒輪加工技術發展變化很大,但是齒輪的單位加工成本肯定不會改變。在大批量流水生產線上,齒輪加工結構調整應該以這個參數為導向。新工藝 的發展對於質量、精度的提高大有裨益。隨著齒輪產品技術的精細化,對這兩個關鍵要素的要求越來越嚴格。盡管滿足這麼高的要求非常難,我們也必須要追求高標 準。可是,光著眼於高指標還不夠,我們更要關注的是達到價廉物美的標準,否則再好的齒輪新工藝、新功能也不會受到市場的歡迎,齒輪技術發展水平也不會進而 改善。在技術含量高的行業上,應該同時並存工藝精密和價格合理的趨勢。 

引用出處:http://tw.myblog.yahoo.com/lifung-biz/article?mid=4214&prev=4215&next=4213

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数控滚齿机由于传动链缩短,传动误差大为减少,提高了加工精度。但对高精度齿轮,特别是齿数多、直径大、齿面长、精度要求高且加工周期长的齿轮,它们在滚 切过程中要求有严格的工艺保证,必须控制好齿坯加工、夹具、刀具、机床调整及环境等各个环节。否则,即使采用数控滚齿机,也难以加工出合格的高精度齿轮。 

    1 齿坯加工 

    齿坯特别是直径较大的齿坯,装夹时很容易发生弹性变形,因在滚齿机上很难弥补,因此可能造成齿轮啮合精度的丧失。由于齿面加工常以齿轮孔和端面为基准面, 所以齿坯精度中主要是对齿轮孔的尺寸精度和形状精度、孔和端面的位置精度有较高的要求(参见GB10095-88)。如6级精度的齿轮,定位孔的尺寸和形 状精度等级为IT6,粗糙度 Ra1.6µm,分度圆直径在125400mm 范围内的齿轮定位孔径向跳动和端面圆跳动公差不超过0.014mm。一般采用两种加工方法保证:直接装夹车削(一次安装完成孔和基准端面的精车)穿 轴车削(以先加工好的孔为基准,完成端面、外圆的车削)。无论采用哪种方法,都应使齿坯达到规定要求,要有一个高精度的滚齿定位基准面。

1.滚刀架 2.特制车刀架 3.车刀 4.夹具 5.滚齿机工作台



 


1

1. 心轴2.夹具座
2

    2 滚齿夹具

    滚齿夹具要有足够的强度和能满足齿轮滚齿定位的精度。夹具定位基面在其它机床上加工后再装在滚齿机工作台上,常常不容易保证平行度。

    因此,可采用在滚齿机上车削定位平面的方法。如图1所示,将滚刀和刀杆拆下,利用滚刀架上的螺栓孔,将一特制车刀架固定在滚刀架上。编一径向走刀程序,让 滚齿机工作台带动夹具转动,滚刀架送进车刀做径向进给。注意工作台的转速不要超过其额定转速,车刀切入深度一次不过0.2mm

    夹具在机床工作台上安装后如图2所示,必须检验A BC三点的跳动量,AB之间的距离视齿轮毛坯长度(几个齿轮毛坯串联加工时视几个齿轮毛坯长度的总和)而定,一般要求允许最大跳动量A处为0.006mmB处和C处为0.003mm

    3 滚刀系统的安装与调整

   滚刀杆的安装与检验 

    安装 要平稳地将刀杆装入滚刀主轴锥孔中,并用拉杆拉紧,而后松开拉杆,以消除其拉伸应力,但不得使刀杆再次脱开。重新旋紧拉杆,恰好足以夹持滚刀杆,并将其固 定。这是由于拉紧刀杆进入主轴锥孔所产生的拉力使拉杆处于拉伸状态。在机床运转过程中,因机床温升引起主轴锥孔膨胀,刀杆将被拉伸状态的拉杆更深地拉入锥 孔。当停机冷却后,主轴锥孔收缩,会给拆卸刀杆带来困难。

1.千分表 2.滚刀杆 3.主轴
3

1. 轴套 2.调整垫片 3.滚刀 4.滚刀杆 5.千分表 6.联接键
4

    检验 如图3 所示,将两块千分表分别固定在机床滚刀架上,使千分表测头触及刀杆圆柱表面。旋转滚刀杆,检验ab处,其允许跳动量由机床加工精度而定。如加工精度为6级的滚齿机,允许最大跳动量a处为0.005mmb处为0.002mm

    滚刀的安装与调整

    滚刀的安装 根据齿轮的精度,选择相当精度的滚刀,一般6级精度以上的齿轮,须用AA级精度的滚刀。用调整垫片调整好滚刀相对机床中心的位置后夹紧。滚刀的夹紧应该通 过滚刀、轴套及调整垫片端面之间的静摩擦力来达到驱动要求,即使是带轴向键槽的滚刀,一般情况下,键连接只起备用驱动作用。

    滚刀调整 对高精度齿轮的加工,必须在滚刀杆上对滚刀仔细找正。如图4 所示,将两块千分表分别固定在机床上,使其触头触到滚刀两端的找正圆面上。旋转滚刀,观察千分表的跳动情况,再通过滚刀、调整垫片或轴套方位的调整,来消 除滚刀的径向跳动。一般要求允许最大跳动量a处为0.006mmb处为0.003mm

    4 温度对加工精度的影响

    这里讨论的温度是机床温度和环境温度。对于加工周期长的大齿轮,温度的变化对齿轮加工精度影响很严重。在加工中,温度的变化会使滚齿机各个滑座相对工件的 位置发生微量的变化。实践证明,温度对齿轮精度,特别是齿向精度影响较大,会使齿轮啮合的接触斑点量下降。一般数控滚齿机都有机床内部温度自动调整功能, 并有数值显示。因此,在加工中一定要注意观察,并着重控制好室内温度,最好保持室内恒温。

    本文所介绍的滚齿工艺是针对高精度齿轮而言的,在实际应用中应视工件的具体情况和不同要求采取相应的工艺措施,以免增加不必要的费用。

 

引用出處:http://tw.myblog.yahoo.com/lifung-biz/article?mid=4215&prev=4216&next=4214 

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。

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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

(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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来源: 作者: 发布时间:2007-09-25   

8-69a为滚齿加工 工作原理。滚齿时切削齿坯的刀具为滚刀,由于滚刀的螺旋升角较大,所以外形象一个蜗杆,滚刀在垂直于螺旋槽方向开槽,形成若干切削刃,其法向剖面具有齿条 形状。因此当滚刀连续旋转时,刀齿可视为一个无限长的齿条的移动,如图8-69b。同时刀齿由上而下的进行切削,保持齿条(滚刀)和齿坯之间的啮合关系, 滚刀就可在齿坯上加工出渐开线齿形,图8-69c 

 

 

    




滚齿加工的精度一般为87级,表面粗糙度Ra3.21.6μm 

滚齿加工是在滚齿机上进行的,图8-70为滚齿机外形图。滚刀安装在刀架上的滚刀杆上,刀架可沿着立柱垂直导轨上下移动。工件则安装在心轴上。

 

滚齿时滚齿机必须有以下几个运动:

1.切削运动(主运动) 即滚刀的旋转运动,其切削速度由变速齿轮的传动比决定。

 

2.分齿运动 即工件的旋转运动,其运动的速度必须和滚刀的旋转速度保持齿轮与齿条的啮合关系。其运动关系由分齿挂轮的传动比来实现。对于单线滚刀,当滚刀每转一转时,齿坯需转过一个齿的分度角度,即1/z转(z为被加工齿轮的齿数)。

 

3.垂直进给运动 即滚刀沿工件轴线自上而下的垂直移动,这是保证切出整个齿宽所必须的运动,由进给挂轮的传动比再通过与滚刀架相连接的丝杆螺母来实现。

 

在滚齿时,必须保持滚刀刀齿的运动方向与被切齿轮的齿向一致,然而由于滚刀刀齿排列在一条螺旋线上,刀齿的方向与滚刀轴线并不垂直。所以,必须把刀 架扳转一个角度使之与齿轮的齿向协调。滚切直齿轮时,扳转的角度就是滚刀的螺旋升角。滚切斜齿轮时,还要根据斜齿轮的螺旋方向,以及螺旋角的大小来决定扳 转角度的大小及扳转方向。

齿轮滚刀是一种专用刀具,每把滚刀可以加工模数相同而齿数不等的各种大小不同的直齿或斜齿渐开线外圆柱齿轮。

 

在滚齿机上除加工直齿、斜齿外圆柱齿轮外,也可以加工蜗轮、链轮。但不能加工内齿轮。对于加工双联齿轮和三联齿轮它也受到许多限制。 

 

引用出處:http://tw.myblog.yahoo.com/lifung-biz/article?mid=4216&prev=-1&next=4215 

 

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.

beeway 發表在 痞客邦 留言(0) 人氣()

 

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

碳纤维增强复合材料具有高强度、高模量,已在航天航空等领域广泛使用,是制造卫星、导弹、飞机的重要结构零部件的关键结构材料。它也是适用于制造汽车主结构――车身、底盘最轻的材料,受到汽车工业广泛重视。但由于碳纤维增强复合材料的价格昂贵,严重影响其在汽车工业中的应用。因此,发展廉价的碳纤维和高效率碳纤维增强复合材料的生产方法和工艺已成为汽车轻量化材料研究中的关键课题,美国、日本等已将其列为汽车轻量化材料的研究计划。

 

随着汽车工业的飞速发展,减少燃料消耗和降低对环境的污染已成为汽车工业发展和社会可持续发展急需解决的关键问题。汽车的燃料消耗和CO2废气的排放量与汽车重量存在密切的关系,美国能源部相关研究表明,美国现有的汽车,如减重25%,每天可节省750,000桶燃油,每年CO2的排放量可减少1.01亿吨,因此汽车轻量化已成为汽车工业技术发展的重要方向。除了对汽车各种零部件结构进行优化设计和改进外,采用高性能轻质材料是实现汽车轻量化的一条重要途径。如选用铝、镁、钛、高强度钢、工程塑料和复合材料等,用以制造汽车车身、底盘、发动机等零部件,可以有效的减轻汽车自重,提高发动机效率。

 

碳纤维及复合材料的性能特点

碳(石墨)纤维是以有机纤维――聚丙烯晴(PAN)纤维、粘胶纤维、沥青纤维等原丝经过预氧化、碳化、石墨化等高温固相反应工艺过程制备而成,由有择优取向的石墨微晶构成,因而具有很高的强度和弹性模量(刚性)。它的比重一般为1.701.80g/cm3,强度为12007000MPa,弹性模量为200400GPa,热膨胀系数接近于零,甚至可为负值(~1.5×10-6)。各种类型的碳纤维性能见表1

 

 

 

碳纤维同时具有导热、导电、耐高温、耐腐蚀等优良的综合性能。这些优良的综合性能使碳纤维成为先进复合材料最重要的增强纤维,可以用来增强聚合物(热固性、热塑性聚合物)组成高性能聚合物基复合材料;增强铝、镁、铜等金属组成碳/铝、碳/镁、碳/铜等金属基复合材料;增强碳、陶瓷组成耐高温的陶瓷基复合材料。碳纤维复合材料可以通过基体、纤维的选择、碳纤维含量和分布的优化设计做成性能能够满足多种要求的各种高性能构件,满足航天航空、电子信息、汽车等领域的需求。图2是碳纤维增强复合材料与钢、铝、钛等常用工程材料的强度、比模量的比数,可见碳纤维增强复合材料的比强度、比模量高出常用材料数倍,特别是碳纤维增强聚合物基复合材料的力学性能明显高出常用的工程材料。

 

 

 

由于碳纤维增强聚合物基复合材料有足够的强度和刚度,其适于制造汽车车身、底盘等主要结构件的最轻材料。预计碳纤维复合材料的应用可使汽车车身、底盘减轻重量4060%,相当于钢结构重量的1/31/6。英国材料系统实验室曾对碳纤维复合材料减重效果进行研究,结果表明碳纤维增强聚合物材料车身重172kg,而钢制车身重量为368kg,减重约50%。并且当生产量在2万辆以下时,采用RTM工艺生产复合材料车身成本要低于钢制车身。但由于碳纤维成本过高,碳纤维增强复合材料在汽车中的应用有限,仅在一些F1赛车、高级轿车、小批量车型上有所应用,如BMW公司的Z-9Z-22的车身,M3系列车顶蓬和车身,GM公司的Ultralite车身,福特公司的GT40车身、保时捷911 GT3承载式车身等。

 

 

为提高碳纤维增强复合材料的用量,美国、欧洲、日本等通过加紧研究廉价碳纤维的原丝(高品级聚丙烯晴丝)和碳纤维的低成本、高速率的生产工艺,使碳纤维的价格降低到约3美元/磅。目前碳纤维增强复合材料已用于赛车、重卡、混合动力车的各种零部件的生产。

 

碳纤维复合材料在汽车中广泛应用的障碍和解决途径

碳纤维增强复合材料在汽车中的应用目前存在一些技术障碍和问题急需研究解决。

1. 成本问题。碳纤维增强复合材料所用的纤维和基体材料价格高,是该材料在汽车工业广泛使用最大的障碍。生产碳纤维的原丝――聚丙烯晴丝较贵,美国正在研究以纺织商品级的聚丙烯晴丝为原丝并能够快速生产廉价碳纤维的工艺,可望将碳纤维的价格降至3美元/磅。

2. 缺乏大批量、高生产效率的碳纤维复合材料汽车零部件的生产方法。

需研究法政能够生长多种形状和性能的汽车零部件工艺方法,由于汽车行业特点,要求工艺成本要低,生产率要高。研究发展高效、低成本的复合材料零件生产工艺意义重大。

3. 缺乏复合材料的快速、大批量连接技术。

4. 复合材料汽车零部件的回收再利用问题。

碳纤维增强热固性树脂基复合材料的回收尚存在一定问题,有待解决。

5. 复合材料汽车零件的设计数据、试验方法、分析工具、碰撞模型等尚不完善。

 

碳纤维复合材料具有足够的强度和刚度以及优良的综合性能,它的应用将可大幅度降低汽车自重达4060%, 对汽车轻量化具有十分重要的意义,已成为汽车轻量化材料的重要发展方向。目前碳纤维增强复合材料的价格仍比较昂贵,大批量、高效率生产汽车零部件的工艺方 法仍需要进一步发展、完善。这些因素使得碳纤维增强复合材料在汽车中的应用还有限。国际上已将碳纤维复合材料在汽车中的应用列为汽车轻量化材料发展计划的 关键内容,并取得了重大进展,预期在2010年碳纤维增强复合材料将在汽车中大量应用。

引用出處:

http://www.zaoche168.com/auto/_01-ABC00000000000115023.shtml

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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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通常把2000~3000℃的热处理过程称为石墨化。炭纤维在此温度下处理所得的纤维称为石墨纤维。

一般炭纤维的炭化温度在1000~1500℃。热处理到1000℃时其碳含量已达 90%~92%,到1200~1500℃时碳含量可达95%左右。继续升温时,炭纤维中残留的氮、氢等非碳原子进一步被脱除,非芳构化碳减少,六角碳网平 面的环数增加,转化为类似石墨层面的组织。随着温度的不断上升,这些分布紊乱的石墨层面进一步靠拢(d002减小),转化为类似石墨的微晶状态,微晶增大(La,Lc增大),结晶态碳的比例增加,石墨层面沿纤维轴的取向度也增加。

石墨单晶的拉伸弹性模量高达1051GPa,炭纤维的拉伸弹性模量也随着最高热处理温度和石 墨化程度的升高而升高。但是其拉伸强度也将下降,这是因为在多晶材料中,晶界强度往往比晶粒内部强度小,所以初始裂纹大多存在于晶界处,且其在外力作用下 扩展时,多沿晶界进行。石墨化温度愈高,纤维中所含石墨微晶愈大,初始裂纹尺寸就愈大,纤维断裂前裂纹扩展所走的路程就愈短,所做的断裂功就愈小,即断裂 前所需储备的弹性应变势能也愈小,因此拉伸强度变小。此外石墨的蒸气压随温度升高而提高,在3000℃左右时可达103Pa,由于 碳的蒸发使纤维表面缺陷增多,拉伸强度降低。这可在密闭容器中使用高纯氩气加压石墨化的办法来解决(氩气在2000℃以上能与碳反应生成氰,故宜采用氩 气)。在进行石墨化的过程中,仍有5%左右的非碳原子进一步被排除,并以气体逸出的方式进行,因此当升温速率过大时,由于气胀作用会造成新的裂纹,并使一 部分闭气孔变为开口气孔,致使纤维的拉伸强度下降。

影响石墨纤维石墨化程度的主要因素除高温热处理条件(最高热处理温度和升温速率)外,还有原 料的石墨化难易程度。中间相沥青基炭纤维比聚丙烯腈基炭纤维容易石墨化,故目前所生产的超高模量石墨纤维大部分是以中间相沥青基炭纤维为原料的。石墨纤维 的生产是将炭纤维在两端敞口的卧式电阻炉中连续进行的,炉温为2800~3000℃,其发热体炉管多采用石墨材料做成,为了延长其寿命可在其内外壁涂以抗 氧化的物质如ZrO2、TaO等,也可采用热解炭涂层,炉管外围有一石墨圆筒,作为隔热屏,同时使炉管便于更换。石墨圆筒外的保温 材料一般为炭毡或炭黑。炭纤维丝束从一端进,从另一端出,出人口处均采用高纯脏气气封。在充高纯氩气和炉子通电升温前,需预先将炉子抽真空,尽可能将炉内 残留的氧气除去。以免在高温下,潜伏和吸附在保温材料里的氧分子与炭纤维和石墨炉管发生氧化反应,造成丝束断裂,缩短炉管寿命。

除连续石墨化方法外,还可采用间歇石墨化,方法是将炭纤维丝束排绕在石墨辊上,然后放入发热 体一石墨坩埚中,在立式密闭中频感应炉中加热,保温材料采用炭黑,最高炉温可达3200℃。问歇法与连续法相比,其优点是氩气消耗量小,并可以进行加压石 墨化和气相掺杂石墨化,缺点是产量较小、质量均匀性较差。

石墨纤维已商品化,聚丙烯腈基石墨纤维如日本东丽公司生产的M60J,其拉伸模量高达590GPa,中间相沥青基石墨纤维如美国联合碳化物公司生产的P120其拉伸模量高达830GPa,拉伸强度为2.14GPa。

引用出處:

http://baike.sososteel.com/doc/view/61042.html

 

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.

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Platinum ( /ˈplæt.n.əm/ or /ˈplæt.nəm/) is a chemical element with the chemical symbol Pt and an atomic number of 78. Its name is derived from the Spanish term platina del Pinto, which is literally translated into "little silver of the Pinto River."[1] It is a dense, malleable, ductile, precious, gray-white transition metal. Even though it has six naturally occurring isotopes, platinum is one of the rarest elements in the Earth's crust and has an average abundance of approximately 0.005 mg/kg. It occurs in some nickel and copper ores along with some native deposits, mostly in South Africa which accounts for 80% of the world production.

As a member of platinum group of elements, as well as of group 10 of the periodic table of elements, platinum is generally unreactive. It exhibits a remarkable resistance to corrosion, even at high temperatures, and as such is considered a noble metal. As a result, platinum is often found chemically uncombined as native platinum. Because it occurs naturally in the alluvial sands of various rivers, it was first used by pre-Columbian South American natives to produce artifacts. It was referenced in European writings as early as 16th century, but it was not until Antonio de Ulloa published a report on a new metal of Colombian origin in 1748 that it became investigated by scientists.

Platinum is used in catalytic converters, laboratory equipment, electrical contacts and electrodes, platinum resistance thermometers, dentistry equipment, and jewelry. Because it is produced on only a couple of hundred of tonnes annually, it is a scarce material, and is highly valuable and is a major precious metal commodity. Being a heavy metal, it leads to health issues upon exposure to its salts, but due to its corrosion resistance it is not toxic as a metal. Some of its compounds are applied in chemotherapy against certain types of cancer.

As a pure metal, platinum is silvery-white, lustrous, ductile, and malleable. It does not oxidize at any temperature, although it is corroded by halogens, cyanides, sulfur, and caustic alkalis. Platinum is insoluble in hydrochloric and nitric acid, but dissolves in aqua regia to form chloroplatinic acid, H2PtCl6. Platinum's resistance to wear and tarnish is well suited for making fine jewelry. The metal has an excellent resistance to corrosion and high temperature and has stable electrical properties. All of these characteristics have been exploited for industrial applications.

The most common oxidation states of platinum are +2, and +4. The +1 and +3 oxidation states are less common, and are often stabilized by metal bonding in bimetallic (or polymetallic) species. As is expected, tetracoordinate platinum(II) compounds tend to adopt 16-electron square planar geometries. While elemental platinum is generally unreactive, it dissolves in aqua regia to give soluble hexachloroplatinic acid ("H2PtCl6", formally (H3O)2PtCl6·nH2O ):

Pt + 4 HNO3 + 6 HCl → H2PtCl6 + 4 NO2 + 4 H2O

As a soft acid, platinum has a great affinity for sulfur, such as on dimethyl sulfoxide (DMSO); numerous DMSO complexes have been reported and care should be taken in the choice of reaction solvent.

Platinum has six naturally occurring isotopes: 190Pt, 192Pt, 194Pt, 195Pt, 196Pt, and 198Pt. The most abundant of these is 195Pt, comprising 33.83% of all platinum. It is the only stable isotope with a non-zero spin; with a spin of 1/2, 195Pt satellites are often observed in NMR spectroscopy, e.g. phosphine complexes.

190Pt is the least abundant at only 0.01%. Of the naturally occurring isotopes, only 190Pt is unstable, though it decays with a half-life of 6.5 × 1011 years. 198Pt undergoes alpha decay, but because its half-life is estimated at longer than 3.2 × 1014 years, it is considered stable. Platinum also has 31 synthetic isotopes ranging in atomic mass from 166 to 202, making the total number of known isotopes 37. The least stable of these is 166Pt with a half-life of 300 µs, while the most stable is 193Pt with a half-life of 50 years. Most of platinum's isotopes decay by some combination of beta decay and alpha decay. 188Pt, 191Pt, and 193Pt decay primarily by electron capture. 190Pt and 198Pt have double beta decay paths.

Platinum is an extremely rare metal, occurring at a concentration of only 0.005 ppm in the Earth's crust.It is sometimes mistaken for silver (Ag). Platinum is often found chemically uncombined as native platinum and alloyed with iridium as platiniridium. Most often the native platinum is found in secondary deposits; platinum is combined with the other platinum group metals in alluvial deposits. The alluvial deposits used by pre-Columbian people in the Chocó Department, Colombia are still a source for platinum group metals. Another large alluvial deposit is in the Ural Mountains, Russia, and it is still mined.

In nickel and copper deposits, platinum group metals occur as sulfides (e.g., (Pt,Pd)S)), tellurides (e.g., PtBiTe), antimonides (PdSb), and arsenides (e.g., PtAs2), and as end alloys with nickel or copper. Platinum arsenide, sperrylite (PtAs2), is a major source of platinum associated with nickel ores in the Sudbury Basin deposit in Ontario, Canada. The rare sulfide mineral cooperite, (Pt,Pd,Ni)S, contains platinum along with palladium and nickel. Cooperite occurs in the Merensky Reef within the Bushveld complex, Gauteng, South Africa.

In 1865, chromites were identified in the Bushveld region of South Africa followed by the discovery of platinum in 1906. The largest known primary reserves are in the Bushveld complex in South Africa.[13] The large copper–nickel deposits near Norilsk in Russia, and the Sudbury Basin, Canada, are the two other large deposits. In the Sudbury Basin the huge quantities of nickel ore processed makes up for the fact that platinum is present as only 0.5 ppm in the ore. Smaller reserves can be found in the United States,for example in the Absaroka Range in Montana. In 2009, South Africa was the top producer of platinum with an almost 80% share, followed by Russia at 11%.

Platinum exists in higher abundances on the Moon and in meteorites. Correspondingly, platinum is found in slightly higher abundances at sites of bolide impact on the Earth that are associated with resulting post-impact volcanism, and can be mined economically; the Sudbury Basin is one such example.

Hexachloroplatinic acid mentioned above is probably the most important platinum compound, as it serves as the precursor for many other platinum compounds. By itself, it has various applications in photography, zinc etchings, indelible ink, plating, mirrors, porcelain coloring, and as a catalyst.

Treatment of hexachloroplatinic acid with an ammonium salt, such as ammonium chloride, gives ammonium hexachloroplatinate, which is relatively insoluble in ammonium solutions. Heating this ammonium salt in the presence of hydrogen reduces it to elemental platinum. Potassium hexachloroplatinate is similarly insoluble, and hexachloroplatinic acid has been used in the determination of potassium ions by gravimetry.

When hexachloroplatinic acid is heated, it decomposes through platinum(IV) chloride and platinum(II) chloride to elemental platinum, although the reactions do not occur stepwise:

(H3O)2PtCl6·n H2O PtCl4 + 2 HCl + (n + 2) H2O

PtCl4 PtCl2 + Cl2

PtCl2 Pt + Cl2

All three reactions are reversible. Platinum(II) and platinum(IV) bromides are known as well. Platinum hexafluoride is a strong oxidizer capable of oxidizing oxygen.

Platinum(IV) oxide, PtO2, also known as Adams' catalyst, is a black powder which is soluble in KOH solutions and concentrated acids. PtO2 and the less common PtO both decompose upon heating. Platinum(II,IV) oxide, Pt3O4, is formed in the following reaction:

2 Pt2+ + Pt4+ + 4 O2− → Pt3O4

Platinum also forms a trioxide, where it is present in the +4 oxidation state.

Unlike palladium acetate, platinum(II) acetate is not commercially available. Where a base is desired, the halides have been used in conjunction with sodium acetate. The use of platinum(II) acetylacetonate has also been reported.

Several barium platinides have been synthesized in which platinum exhibits negative oxidation states ranging from 1 to 2. These include BaPt, Ba3Pt2, and Ba2Pt. Caesium platinide, Cs2Pt, has been shown to contain Pt2 anions.Platinum also exhibits negative oxidation states at surfaces reduced electrochemically.The negative oxidation states exhibited by platinum are unusual for metallic elements, and they are attributed to the relativistic stabilization of the 6s orbitals.

Zeise's salt, containing an ethylene ligand, was one of the first organometallic compounds discovered. Dichloro(cycloocta-1,5-diene)platinum(II) is a commercially available olefin complex, which contains easily displaceable cod ligands ("cod" being an abbreviation of 1,5-cyclooctadiene). The cod complex and the halides are convenient starting points to platinum chemistry.

Cisplatin, or cis-diamminedichloroplatinum(II) is the first of a series of square planar platinum(II)-containing chemotherapy drugs, including carboplatin and oxaliplatin. These compounds are capable of crosslinking DNA and kill cells by similar pathways to alkylating chemotherapeutic agents.

Platinum occurs naturally in the alluvial sands of various rivers, though there is little evidence of its use by ancient people. However, the metal was used by pre-Columbian Americans near modern-day Esmeraldas, Ecuador to produce artifacts of a white gold-platinum alloy. The first European reference to platinum appears in 1557 in the writings of the Italian humanist Julius Caesar Scaliger as a description of an unknown noble metal found between Darién and Mexico, "which no fire nor any Spanish artifice has yet been able to liquefy."

 

In 1741, Charles Wood, a British metallurgist, found various samples of Colombian platinum in Jamaica, which he sent to William Brownrigg for further investigation. Antonio de Ulloa, also credited with the discovery of platinum, returned to Spain from the French Geodesic Mission in 1746 after having been there for eight years. His historical account of the expedition included a description of platinum as being neither separable nor calcinable. Ulloa also anticipated the discovery of platinum mines. After publishing the report in 1748, Ulloa did not continue to investigate the new metal. In 1758, he was sent to superintend mercury mining operations in Huancavelica.

In 1750, after studying the platinum sent to him by Wood, Brownrigg presented a detailed account of the metal to the Royal Society, mentioning that he had seen no mention of it in any previous accounts of known minerals. Brownrigg also made note of platinum's extremely high melting point and refractoriness toward borax. Other chemists across Europe soon began studying platinum, including Torbern Bergman, Jöns Jakob Berzelius, William Lewis, and Pierre Macquer. In 1752, Henrik Scheffer published a detailed scientific description of the metal, which he referred to as "white gold", including an account of how he succeeded in fusing platinum ore with the aid of arsenic. Scheffer described platinum as being less pliable than gold, but with similar resistance to corrosion.

Carl von Sickingen researched platinum extensively in 1772. He succeeded in making malleable platinum by alloying it with gold, dissolving the alloy in aqua regia, precipitating the platinum with ammonium chloride, igniting the ammonium chloroplatinate, and hammering the resulting finely divided platinum to make it cohere. Franz Karl Achard made the first platinum crucible in 1784. He worked with the platinum by fusing it with arsenic, then later volatilizing the arsenic.

In 1786, Charles III of Spain provided a library and laboratory to Pierre-François Chabaneau to aid in his research of platinum. Chabaneau succeeded in removing various impurities from the ore, including gold, mercury, lead, copper, and iron. This led him to believe that he was working with a single metal, but in truth the ore still contained the yet-undiscovered platinum group metals. This led to inconsistent results in his experiments. At times the platinum seemed malleable, but when it was alloyed with iridium, it would be much more brittle. Sometimes the metal was entirely incombustible, but when alloyed with osmium, it would volatilize. After several months, Chabaneau succeeded in producing 23 kilograms of pure, malleable platinum by hammering and compressing the sponge form while white-hot. Chabeneau realized that the infusibility of platinum would lend value to objects made of it, and so started a business with Joaquín Cabezas producing platinum ingots and utensils. This started what is known as the "platinum age" in Spain.

In 2007 Gerhard Ertl won the Nobel Prize in Chemistry for determining the detailed molecular mechanisms of the catalytic oxidation of carbon monoxide over platinum (catalytic converter).

Platinum, along with the rest of the platinum metals is, obtained commercially as a by-product from nickel and copper mining and processing. During electrorefining of copper, noble metals such as silver, gold and the platinum group metals as well as selenium and tellurium settle to the bottom of the cell as anode mud, which forms the starting point for the extraction of the platinum group metals.

If pure platinum is found in placer deposits or other ores, it is isolated from them by various methods of subtracting impurities. Because platinum is significantly denser than many of its impurities, the lighter impurities can be removed by simply floating them away in a liquid. Platinum is also non-magnetic, while nickel and iron are both magnetic. These two impurities are thus removed by running an electromagnet over the mixture. Because platinum has a higher melting point than most other substances, many impurities can be burned or melted away without melting the platinum. Finally, platinum is resistant to hydrochloric and sulfuric acids, while other substances are readily attacked by them. Metal impurities can be removed by stirring the mixture in either of the two acids and recovering the remaining platinum.

One suitable method for purification for the raw platinum, which contains platinum, gold, and the other platinum group metals, is to process it with aqua regia, in which palladium, gold and platinum are dissolved, while osmium, iridium, ruthenium and rhodium stay unreacted. The gold is precipitated by the addition of iron(III) chloride and after filtering off the gold, the platinum is precipitated by the addition of ammonium chloride as ammonium chloroplatinate. Ammonium chloroplatinate can be converted to the metal by heating.

Of the 239 tonnes of platinum sold in 2006, 130 tonnes were used for vehicle emissions control devices, 49 tonnes for jewelry, 13.3 tonnes in electronics, and 11.2 tonnes in the chemical industry as a catalyst. The remaining 35.5 tonnes went to various other minor applications, such as electrodes, anticancer drugs, oxygen sensors, spark plugs and turbine engines.

The most common use of platinum is as a catalyst in chemical reactions, many times as platinum black. It has been employed in this application since the early 19th century, when platinum powder was used to catalyze the ignition of hydrogen. The most important application of platinum is in automobiles as a catalytic converter, which allows the complete combustion of low concentrations of unburned hydrocarbon from the exhaust into carbon dioxide and water vapor. Platinum is also used in the petroleum industry as a catalyst in a number of separate processes, but especially in catalytic reforming of straight run naphthas into higher-octane gasoline which becomes rich in aromatic compounds. PtO2, also known as Adams' catalyst, is used as a hydrogenation catalyst, specifically for vegetable oils.[17] Platinum metal also strongly catalyzes the decomposition of hydrogen peroxide into water and oxygen gas.

From 1889 to 1960, the meter was defined as the length of a platinum-iridium (90:10) alloy bar, known as the International Prototype Meter bar. The previous bar was made of platinum in 1799. The International Prototype Kilogram remains defined by a cylinder of the same platinum-iridium alloy made in 1879.

The standard hydrogen electrode also utilizes a platinized platinum electrode due to its corrosion resistance, and other attributes.

Platinum is a precious metal commodity; its bullion has the ISO currency code of XPT. Coins, bars, and ingots are traded or collected. Platinum finds use in jewelry, usually as a 90–95% alloy, due to its inertness and shine. In watchmaking, Vacheron Constantin, Patek Philippe, Rolex, Breitling, and other companies use platinum for producing their limited edition watch series. Watchmakers appreciate the unique properties of platinum as it neither tarnishes nor wears out (relative to gold).

 

Average price of platinum from 1991 to 2007 in US$ per troy ounce (~$20/g)[37]

The price of platinum, like other industrial commodities, is more volatile than that of gold. In 2008, the price of platinum ranged from $774 to $2,252 per oz.

During periods of sustained economic stability and growth, the price of platinum tends to be as much as twice the price of gold, whereas during periods of economic uncertainty,the price of platinum tends to decrease due to reduced industrial demand, falling below the price of gold. Gold prices are more stable in slow economic times, as gold is considered a safe haven and gold demand is not driven by industrial uses. In the 18th century, platinum's rarity made King Louis XV of France declare it the only metal fit for a king.

In the laboratory, platinum wire is used for electrodes; platinum pans and supports are used in thermogravimetric analysis because of the stringent requirements of chemical inertness upon heating to high temperatures (~1000 °C). Platinum is used as an alloying agent for various metal products, including fine wires, noncorrosive laboratory containers, medical instruments, dental prostheses, electrical contacts, and thermocouples. Platinum-cobalt, an alloy of roughly three parts platinum and one part cobalt, is used to make relatively strong permanent magnets. Platinum-based anodes are used in ships, pipelines, and steel piers.

Platinum's rarity as a metal has caused advertisers to associate it with exclusivity and wealth. "Platinum" debit cards have greater privileges than do "gold" ones. "Platinum awards" are the second highest possible, ranking above "gold", "silver" and "bronze", but below diamond. For example, in the United States a musical album that has sold more than 1 million copies, will be credited as "platinum", whereas an album that sold more than 10 million copies will be certified as “diamond”. Some products, such as blenders and vehicles, with a silvery-white color are identified as "platinum". Platinum is considered a precious metal, although its use is not as common as the use of gold or silver. The frame of the Crown of Queen Elizabeth the Queen Mother, manufactured for her Coronation as Consort of King George VI, is made of platinum. It was the first British crown to be made of this particular metal.

According to the Centers for Disease Control and Prevention, short-term exposure to platinum salts may cause irritation of the eyes, nose, and throat and long-term exposure may cause both respiratory and skin allergies. The current OSHA standard is 2 microgram per cubic meter of air averaged over an 8-hour work shift.

Certain platinum complexes are used in chemotherapy and show good activity against some tumors. Cisplatin is particularly effective against testicular cancer; cure rate was improved from 10% to 85% However, the side effects are severe. Cisplatin causes cumulative, irreversible kidney damage and deafness.As with other ototoxic agents, deafness may be secondary to interactions with melanin in the stria vascularis.

As platinum is a catalyst in the manufacture of the silicone rubber and gel components of several types of medical implants (breast implants, joint replacement prosthetics, artificial lumbar discs, vascular access ports, etc.), the possibility that platinum could enter the body and cause adverse effects has merited study. The Food and Drug Administration and other institutions have reviewed the issue and found no evidence to suggest toxicity in vivo.

 

引用出處: 

http://en.wikipedia.org/wiki/Platinum 

 

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铂是一种化学元素,俗称白金。它的化学符号是Pt,它的原子序数是78。在自然界中常以自然矿状态存在,极为分散。多用原铂矿富积、萃取而获得。由西班牙人乌罗阿(Ulloa)和武德(Wood)分别于1935年和1941年发现。

1.

自然铂

2.铂合金

3.顺铂

4.氯氨铂

展开

  

  

拼音:bó 

  繁体字:

  部首:

  部外笔画:5

  总笔画:10

  繁体部首:

  部外笔画:5

  总笔画:13

  五笔86&98:QRG 

  仓颉:XCHA 

  笔顺编号:3111532511 

  四角号码:86702 

  UniCode:CJK 统一汉字 U+94C2

  

  

  

(铂)

  ㄅㄛˊ

   一种贵金属元素,元素符号Pt,是化学上常用的催化剂。铂和铱的合金是制造自来水笔笔尖的材料。

  

  

  

  

铂金戒指

  〈名〉

  一种银白色的贵金属元素,化学性质稳定,用于耐腐蚀的化学仪器等。通称白金” [platinum]——元素符号Pt

  

  

【戌集上】【金字部】铂

  【集韵】白各切,音泊。金薄也。【正字通】金铂,薄金也。药纸隔金屑锤之,金已薄,纸不损。纸初褐色,久则色似乌金。本借薄,俗加金作铂。

  

  

元素名称:铂

  符号:Pt

  元素原子量195.1

  元素类型:贵金属

  原子体积:(立方厘米/摩尔)

  9.10

  元素在太阳中的含量:(ppm)

  0.009

  地壳中含量:(ppm

  0.001

  元素在海水中的含量:(ppm)

  太平洋表面 0.00000011

  莫氏硬度:4--4.5

  声音在其中的传播速率:(m/S 2800

  氧化态:Main Pt+4 Other Pt0, Pt+2, Pt+5, Pt+6

  电离能 (kJ /mol)

  M - M+ 870

  M+ - M2+ 1791

  M2+ - M3+ 2800

  M3+ - M4+ 3900

  M4+ - M5+ 5300

  

  

M5+ - M6+ 7200

  M6+ - M7+ 8900

  M7+ - M8+ 10500

  M8+ - M9+ 12300

  M9+ - M10+ 14100

  晶体结构:等轴晶系,晶胞为面心立方晶胞,每个晶胞含有4个金属原子。

  晶胞参数:

  a = 392.42 pm

  b = 392.42 pm

  c = 392.42 pm

  α = 90°

  β = 90°

  γ = 90°

  发现人:乌罗阿(Ulloa 发现年代:1935

  发现过程:西班牙人乌罗阿(Ulloa)和武德(Wood)分别于1935年和1941年发现。

  

  

第一电离能9.0电子伏特。熔点1772,沸点3827。密度21.46/立方厘米。银白色金属,质柔软,有延展性。晶体结构为面心立方体。铂有很高的化学稳定性,除溶于王水[1]和熔融的碱外,还溶于盐酸和过氧化氢、盐酸和高氯酸的混合物中。不与一般强酸、碱和其他试剂作用。化合价+2+4+6

  与王水的反应:3Pt+3HNO3+18HCl=3H2[PtCl6]+4NO↑+8H2O

  在自然界中常以自然矿状态存在,极为分散。多用原铂矿富积、萃取而获得。

  

  

铂由于有很高的化学稳定性(除王水外不溶于任何酸,碱)和催化活性,因此,应用很广。可与钴合制强磁体。多用来制造耐腐蚀的化学仪器,如各种反应器皿、蒸发皿坩埚电极、铂网等,铂和铂合金常用作热电偶,来测定1200~1750的温度。还可用于制造首饰。铂在氢化、脱氢、异构化、环化、脱水、脱卤、氧化、裂解等化学反应中均可作催化剂。在医药中,可做抗癌药。

  

  

铂和它的同系金属——、铑、 样,几乎完全成单质状态存在于自然界中。它们在地壳中的含量也和金相近,且它们的化学惰性和金比较也不相上下,但是人们发现并使用它们却远在金后。它们在 自然界中的极度分散和它们的高熔点,可能是造成这种状况的原因。至今发现的最大的天然铂块是9.6千克。铂的熔点1772,钌的熔点2310,铑的熔 1966,钯的熔点1552,锇的熔点2054,铱的熔点2410,而金的熔点是1063

  南美洲古代印第安人却早已经利用铂和金的合金制成装饰品。由于铂在铂系矿物中的含量比其他元素的含量大的多,因而它是铂系元素中首先被发现的。

  在欧洲首先提到铂的可能是法国矿物学家斯卡里吉在1557年发表的著述中。他讲到所有金属都能熔化,但有一种墨西哥和达里南Darian(今巴拿马)矿里的一种金属不能熔化。这可以认为是指铂。

  18世纪中叶,南美洲的铂矿传到欧洲一些学者手中,他们对铂进行了研究。不少学者认为铂不是一种纯金属,而是金、铁和汞的合金,还有人认为它是一种半金属。1752年瑞典化学家谢斐尔肯定它是一种独立的金属,称它为aurum album(白金)。

  1789年拉瓦锡发表他制定的元素表,铂被列入其中。现今铂的拉丁名称是platinum,元素符号是Pt

  相对原子质量 195 常见化合价: +2,+3,+4 电负性: 2.2

  外围电子排布: 5d96d1 核外电子排布: 2,8,18,32,17,1

  同位素及放射线: Pt-188[10.2d] Pt-190( α[6.0E11y]) Pt-191[2.96d] Pt-192( α) Pt-193[60y] Pt-194 *Pt-195 Pt-196 Pt-197[18.3h] Pt-198

  电子亲合和能: 205.3 KJ·mol-1

  第一电离能: 860 KJ·mol-1 第二电离能: 1791 KJ·mol-1 第三电离能: 0 KJ·mol-1

  

  

单质密度: 21.45 g/cm3 单质熔点: 1772.0 单质沸点: 3827.0

  原子半径: 1.83 离子半径: 0.63(+4) 共价半径: 1.3

  常见化合物: H2(PtCl6)

  名称由来:

  西班牙语:platina(亚银)。

  元素描述:

  稀有、柔软的银白色金属,非常沉重。

  元素来源:

  开采自天然游离态铂矿藏。

  

  

一种化学元素 化学符号 Pt 原子序数 78 原子量195.08,属周期系族,为铂系元素的成员。俗称白金。18世纪初英国C.伍德在新格拉纳达的卡塔赫纳采集到嵌有铂粒的砂石。1735年西班牙乌略亚-德拉·托雷·希拉尔在平托附近的金矿 现一块难以加工的金属,很像银,便取名为platinum,该字来自西班牙文platina,含义是银。1748年英国沃森确认这是一种新元素。 铂在地壳中的含量为 5×10-7%, 常与其他铂系元素一起分散在冲积矿床和砂积矿床的多种矿物(如原铂矿、硫化镍铜矿、磁铁矿等)中。独立矿物有砷铂矿、硫铂矿、锑铂矿、硫铂钯矿、硫镍钯铂矿等。还有以游离状态存在的自然铂。

  铂是银白色有光泽的金属,熔点1772,沸点 3827 ±100,密度21.45克/厘米3 20),较软,有良好的延展性、导热性和导电性。海绵铂为灰色海绵状物质,有很大的比表面积,对气体(特别是氢、氧和一氧化碳)有较强的吸收能力。粉末 状的铂黑能吸收大量氢气。铂的化学性质不活泼,在空气和潮湿环境中稳定,低于 450加热时,表面形成二氧化铂薄膜,高温下能与硫、磷、卤素发生反应。铂不溶于盐酸、硫酸硝酸和碱溶液,但可溶于王水和熔融的碱。铂的氧化态为+2、+3、+4、+5、+6。容易形成配位化合物,如〔PtNH32Cl2KPtNH3Cl5〕。

  用王水溶解经过处理的铂精矿或电解铜、镍产生的阳极泥,经一系列化学处理后,可得氯铂酸铵,将 它在1000缓慢灼烧,便分解制得海绵铂。铂在氢化、脱氢、异构化、环化、脱水、脱卤、氧化、裂解等化学反应以及接触法生产硫酸、氨氧化法制取硝酸、氨 和甲烷制取氢氰酸、制备环己烷、生产维生素时都用作催化剂。用铂催化剂重整石脑油,可提高汽油产品的辛烷值 铂及其合金在高温下耐氧化和腐蚀,用于制作坩埚、蒸发皿、电极、喷嘴、反应器等。铂和铂铑合金在冶金、玻璃、陶瓷工业中用作高温炉的炉丝和热电偶。铂还用于制作首饰。

  100 多年前曾有过一种作为光源的铂丝酒精灯,它的原理和用法你可能不知道吧?

  那是在1820 年,英国化学家戴维做了这样一个实验:先用酒精把铂丝润湿,然后点燃。他发现,这时酒精燃烧得特别剧烈,能使铂丝温度达到炽热程度,发出很亮的光来。于是,戴维做了一种铂丝酒精灯,用它来照明。这灯在欧洲风行了许多年。

  铂丝之所以炽热,是因为铂可以对酒精氧化起催化作用,使它在自己表面燃烧得更激烈。人们利用铂的这种性质,还制成了一种玩具打火机:它是在酒精容器的盖子里,装上一支细铂丝。只要打开瓶盖并把铂丝放在瓶口,酒精就在铂丝表面与氧气反应。稍过一会儿,反应所放的热就把酒精蒸气点燃了,从而成为一种不点自燃的自来火

  于是有人设计了一种金属做的、扁平圆滑可以揣到怀里的炉子。这炉子里既不装红煤球也不烧炭,装的只有酒精和铂,酒精靠人体的体温缓缓挥发,酒精蒸气在通过附有铂粉的石棉时发生氧化而发热,使人们达到取暖的目的。人们把它称为铂怀炉

  现在许多技术发达的国家已把它改制成了无焰燃烧器。他们把丙烷(石油液化气)以0.01―1 大气压的压力通入一个荧光吊灯样的装置,在装置的铂丝上,丙烷跟空气相接触而氧化放热(没发生火焰)。由于它能静悄悄地供暖而不产生煤气,所以成为鸡舍中的理想热源。

自然铂

  化学组成:Pt晶体属等轴晶系的一种自然元素矿物。又名白金,但中国古籍中所谓的白金,系指,并非铂。除Pt外,自然铂经常含铁,911%时称为粗铂矿;更高时称为铁铂矿,最高可达28%。还常含、金、、钯、铱和铑等,钯最高含量可达21.830.0%,铱27.7929.0

  铂

  0%,铑16.320.1%。常以细粒、细片或不规则团块状产出。在俄罗斯乌拉尔曾采得重89千克的自然铂漂砾和 427.5克的原生自然铂块。

  鉴定特征: 金属光泽,银白至灰色,比重大,在空气中不氧化,除王水之外,在普通酸类中不溶解;以高比重和硬度大区别于自然银。

  成因产状:自然铂主要见于岩浆矿床,成因上与基性岩﹑超基性岩有关;此外,常富集于砂矿中;

  著名产地:世界著名产地有南非Meresnky Reef俄罗斯乌拉尔、加拿大萨德伯里、美国等地。 中国某些超基性岩中也产有自然铂。

  名称来源:Platinum 一字,来自西班牙语的Platina,意指银;

  晶体形态:六八面体晶类;呈粒状或葡萄状,偶见立方体晶形;

  晶体结构:晶系和空间群: 等轴晶系,Fm3m

  晶胞参数: a0=3.924?

  铂电阻

  粉晶数据: 2.265(1) 1.962(0.53) 1.1826(0.33)

  摩氏硬度44.5

  比重:一般在1419之间,视所含其他元素的种类和含量而定;纯铂的理论比重为 21.45。富含时具磁性。

  熔点:1772

  其他性质:耐腐蚀性极强。抗氧化性强。热膨胀系数小。热电稳定性强。延展性良好。催化活性高。

  用途:自然铂几乎是金属铂的唯一来源。铂除用于珠宝饰物外,大量用于汽车催化转换器中,以及作为炼油工业的催化剂,用于制作电子器件、白金坩埚、牙科材料和人造纤维的喷丝头等。

铂合金

  铂合金(platinum alloy)︰指铂与其他金属混合而成的合金,如与钯、,铑、、钌、 锇、铜等。尽管铂硬度比金高,但作为镶崁之用尚嫌不足,必需与其他金属合金,方能用来制作首饰。首饰业使用铂、钌合金和铂、铱合金较多。在欧洲和香港使用 铂、钴合金於浇铸。在日本用铂(85%),钯合金制造鍊条。国际上铂金饰的戳记是PtPlatPlatinum的字样,并以纯度之千分数字代表之,如 Pt900表示纯度是900%o 在日本铂金饰品的规格标示有Pt1000Pt950Pt900Pt850

顺铂

  英文名 Cisplatin,癌症治疗的常用化学药物,具有较高疗效。别名: 氯氨铂,顺一双氯双胺络珀,二氯二氨铂,顺氯氨铂。 英文名: Cisplatin (CDDP) 作用与用途:本品属细胞周期非特异性药物,具有细胞毒性,可抑制癌细胞的DNA复制过程,并损伤其细胞膜上结构,有较强的广谱抗癌作用。临床用于卵巢癌、前列腺癌、睾丸癌、肺癌、鼻咽癌、食道癌、恶性淋巴瘤、乳腺癌、头颈部鳞癌、甲状腺癌及成骨肉瘤等多种实体肿瘤均能显示疗效。 副作用: 1 有骨髓抑制、血小板白细胞 少。有胃肠道反应、恶心、呕吐。 肾毒性,多饮水或输液、强迫利尿可减轻肾毒性。肾功能不全者慎用。西药剂量: 成人常用剂量10mg20mg/日,溶于200ml300ml生理盐水中,静脉滴注,避光2小时内滴完,每疗程为200mg400mg,在用量达到 100mg200mg后,需间隔12周。总用量达200mg时,多数病人呈现主客观缓解。

氯氨铂

  【别名】 氯氨铂;顺铂;-双氯双氨络铂 , 双氯双氨络铂,威力顺铂,顺式铂,氨氯铂,, 顺氯氨铂

  【外文名】Cisplatin,Cis-Platium, DDP, PDD,NSC-119875,Randa, Neoplatin, Platinol

  【适应症】 抗瘤谱较广,临床用于治疗睾丸恶肿肿瘤,对胚胎瘤和精原细胞瘤均有较好效果,与常用药物无交叉耐药。对卵巢癌、乳腺癌和膀胱癌有较好疗效。对头颈部癌、肺 癌、食管癌、恶性黑色素瘤、恶性淋巴瘤软组织肉瘤和癌性胸腹水等也有一定疗效。与其他抗癌药联合应用效果更好。

  【用量用法】 1.一般剂量:每平方米体表面积20~30m

  注射用顺铂

  g溶于等渗盐水200ml中静滴,连用3~5日(总量150mg),间隔3周再重复,可重复用 药3~4疗程。 2.高剂量:每平方米体表面积80~120mg,同时进行水化和利尿,每3周用药1次,可重复3~4次。 3.胸腹腔注射:每次30~60mg,710日1次。

  【注意事项】 1.消化道 应有食欲减退、恶心、呕吐、腹泻等。一般于注射后1~2小时发生,持续4~6小时或更长,停药2~3日后消失。但也有少数病人可持续1周以上。 2.骨髓抑制:主要表现白细胞减少,多发生于剂量超过1日每平方米体积100mg时,血小板减少相对较轻。 3.听神经毒性与总剂量有关,表现为耳鸣、耳聋、头昏,严重者可有不可逆的高频听力丧失。 4.肾脏毒性表现为血尿及肾功能损害,血清肌酐升高及清除率降低,与所用总量有关,常发生于治疗后7~14日之间。 5.尚有人报告少数病人可出现心电图ST-T改变,肝功能损伤等。 6.有以下情况时应停用本品: (1)白细胞低于3500/μl; (2)血小板低于7.5万/μl; (3)持续性恶心呕吐; (4)早期肾脏 性如尿中白细胞10/高倍视野、红细胞5/高倍视野或管型5/高倍视野以上者; (5)血清肌酐超过1.5mg/日者; (6)既往患过肾肝疾患、肾功能不好及患过中耳炎的病人。 7.为了减轻毒性反应,用药期间应多饮水或输液,强迫利尿;药前先给甲氧氯普胺(胃复安)和氯丙嗪等减轻消化道反应;经常检查血、尿、肝、肾功能及听力。 8.过敏反应发生快,如有的病人仅在用药几分钟后出现面部水肿、哮鸣、心动过速和低血压。 9.本品具有诱变性、致畸性和可能的致癌性。

 &Nbsp;  贵稀金属贵金属稀有金属的总称。由于金和银由人民银行专营,物资部门经营的贵金属主要是族元素,而 属稀散元素,通常称为半金属.
    
铂:铂是银白色金属,熔点为1769度,密度21.45g/cm3主要用于气仪 化学工业及制作精密合金等。
    
:钯是银灰色金属,熔点1552度,密度12.16g/cm3可塑性好,在贵金属中耐蚀性较差,供电气、 仪表 化工工业及制作精密合金等用.
     
:铑是烟灰色金属,熔点为1960度,密度为12.44g/cm3是脆性金属。供电气 仪表 高温合金及精密合金等用.
    
:铱是银灰色金属,熔点为2443度,是贵金属中熔点最高的。密度为22.4g/cm3是脆性金属,化学性质稳定,耐酸碱腐蚀,硬度高。用于电气、化学、仪表、轻工等方面,配制精密合金。
     
:液态镓为银白色金属,固态镓为蓝色结晶金属,质地柔软,熔点为29.8度,密度是5.9g/cm3空气中化学性能稳定,镓主要用于半导体工业、制作温度计、配制易熔金属等。 
    
:铟是银白色金属,熔点156.6度,密度为7.31g/cm3还软,延展性好,化学性能稳定,主要用于配制贵金属合金,低熔点合金,轴承合金以及、 电镀等工业方面。 
    
硒:硒是黑色或深灰色玻璃状无定型锭块(红硒与灰硒为硒的结晶变体,主成分不变)属于稀散元素,也称半金属。硒的熔点为220度,沸点为685度,密度为40808g/cm3质脆,主要用于制造整流器、硒感光板、复印硒鼓、合金、搪瓷和玻璃工业等方面。 
    
碲:碲是一种银灰色半金属,属稀散元素,熔点为450度,密度为6.24g/cm3质脆,具有很高的电阻系数,是逆性金属,所以是良好的半导体材料。主要用来制作半导体器件、合金、化工原料及铸橡胶、玻璃等产品的添加剂。 
    
砷:砷是银灰色半金属,属稀散元素。砷的熔点为814度,在613度时即升华,砷在空气中易氧化,砷的氧化物有剧毒(俗称砒霜)砷的密度为5.73G/cm3不溶于,也不溶于有机溶剂,用于制作合金和半导体器件等。 

引用出處:

http://baike.baidu.com/view/29885.htm

http://knology.chinaccm.com/phrase-2006011522531400232.html

 

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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.

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