2008年3月31日 星期一

Tungsten carbide www.tool-tool.com


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

Tungsten carbide
Tungsten carbide milling bits
Identifiers
CAS number [12070-12-1]
Properties
Molecular formula WC
Molar mass 195.86 g·mol−1
Appearance grey-black solid
Density 15.8 g·cm−3, solid
Melting point

2870 °C, 5198 °F (3143K)

Boiling point

6000°C, 10832 °F (6273K)

Solubility in water Insoluble
Structure
Crystal structure Hexagonal
Hazards
EU classification not listed
Related compounds
Other anions Tungsten boride
Tungsten nitride
Other cations Molybdenum carbide
Titanium carbide
Silicon carbide
Except where noted otherwise, data are given for
materials in their standard state
(at 25 °C, 100 kPa)

Infobox disclaimer and references

Monotungsten carbide, WC, or Ditungsten Carbide, W2C, is a chemical compound containing tungsten and carbon, similar to titanium carbide. Tungsten is a very hard and dense metal, mined from Wolframite ore and symbolized by a (W) on the periodic table of elements. It melts at an extraordinary 6,192 degrees Fahrenheit–the highest melting point of all metals. On its own, tungsten is vulnerable to scratches and damage just like any other metal, such as titanium and steel. Tungsten does not gain its extreme hardness until it is combined with a carbon alloy, transferring it into tungsten carbide (WC) with a hardness between 8.5 and 9.5 on the Mohs hardness scale. Tungsten carbide is four times harder than titanium, twice as hard as steel, is virtually unscratchable, and has been widely used for decades in industrial applications such as cutting tools, mining machinery, and rocket engine nozzles. Its extreme hardness makes it useful in the manufacture of cutting tools, abrasives and bearings, as a cheaper and more heat-resistant alternative to diamond. Tungsten carbide is also used as a scratch-resistant material for jewelry including watch bands and wedding rings.

[edit] Uses in machine tools

Carbide cutting surfaces are often useful when machining through materials such as carbon steel or stainless steel, as well as in situations where other tools would wear away, such as high-quantity production runs. Sometimes, carbide will leave a better finish on the part, and allow faster machining. Carbide tools can also withstand higher temperatures than standard high speed steel tools. The material is usually tungsten-carbide cobalt, also called "cemented carbide", a metal matrix composite where tungsten carbide particles are the aggregate and metallic cobalt serves as the matrix. The process of combining tungsten carbide with cobalt is referred to as sintering or Hot Isostatic Pressing (HIP). During this process cobalt eventually will be entering the liquid stage and WC grains (>> higher melting point) remain in the solid stage. As a result of this process cobalt is embedding/cementing the WC grains and thereby creates the metal matrix composite with its distinct material properties. The naturally ductile cobalt metal serves to offset the characteristic brittle behavior of the tungsten carbide ceramic, thus raising its toughness and durability. Such parameters of tungsten carbide can be changed significantly within the carbide manufacturers sphere of influence, primarily determined by grain size, cobalt content, dotation (e.g. aloy carbides) and carbon content.

Machining with carbide can be difficult, as carbide is more brittle than other tool materials, making it susceptible to chipping and breaking. To offset this, many manufacturers sell carbide inserts and matching insert holders. With this setup, the small carbide insert is held in place by a larger tool made of a less brittle material (usually steel). This gives the benefit of using carbide without the high cost of making the entire tool out of carbide. Most modern face mills use carbide inserts, as well as some lathe tools and endmills.

To increase the life of carbide tools, they are sometimes coated. Four such coatings are TiN (titanium nitride), TiC (titanium carbide), Ti(C)N (titanium carbide-nitride), and TiAlN (Titanium Aluminum Nitride). (Newer coatings, known as DLC (Diamond Like Coating) are beginning to surface, enabling the cutting power of diamond without the unwanted chemical reaction between real diamond and iron.) Most coatings generally increase a tool's hardness and/or lubricity. A coating allows the cutting edge of a tool to cleanly pass through the material without having the material gall (stick) to it. The coating also helps to decrease the temperature associated with the cutting process and increase the life of the tool. The coating is usually deposited via thermal CVD and, for certain appilcations, with the mechanical PVD method. However if the deposition is performed at too high temperature, an eta phase of a Co6W6C tertiary carbide forms at the interface between the carbide and the cobalt phase, facilitating adhesion failure of the coating.

[edit] Military use

Tungsten carbide is often used in armor-piercing ammunition, especially where depleted uranium is not available or not politically acceptable. The first use of W2C projectiles occurred in Luftwaffe tank-hunter squadrons, which used 37 mm autocannon equipped Ju-87G Stuka attack planes to destroy Soviet T-34 tanks in WWII. Owing to the limited German reserves of tungsten, W2C material was reserved for making machine tools and small numbers of projectiles for the most elite combat pilots, like Hans Rudel. It is an effective penetrator due to its high hardness value combined with a very high density.

Tungsten carbide ammunition can be of the sabot type (a large arrow surrounded by a discarding push cylinder) or a subcaliber ammunition, where copper or other relatively soft material is used to encase the hard penetrating core, the two parts being separated only on impact. The latter is more common in small-caliber arms, while sabots are usually reserved for artillery use.

Tungsten carbide is also an effective neutron reflector and as such was used during early investigations into nuclear chain reactions, particularly for weapons. A criticality accident occurred at Los Alamos National Laboratory on 21 August 1945 when Harry K. Daghlian, Jr. accidentally dropped a tungsten carbide brick onto a plutonium sphere causing the sub-critical mass to go critical with the reflected neutrons.

[edit] In sports

Hard carbides, especially tungsten carbide, are used by athletes, generally on poles which impact hard surfaces. Trekking poles, used by many hikers for balance and to reduce pressure on leg joints, generally use carbide tips in order to gain traction when placed on hard surfaces (like rock); such carbide tips last much longer than other types of tips. Rocks along many popular hiking trails, such as the Appalachian Trail and Pacific Crest Trail, are scratched and pockmarked from hundreds or thousands of impacts from pole tips.[citation needed]

While ski pole tips are generally not made of carbide, since they do not need to be especially hard even to break through layers of ice, rollerski tips usually are. Roller skiing emulates cross country skiing and is used by many skiers to train during warm weather months. Because skiers require traction on bitumen (asphalt) carbide tips are used in the sport.[citation needed]

Some tire manufacturers, such as Nokian and Schwalbe, offer bicycle tires with tungsten carbide studs for better traction on ice. These are generally preferred over steel studs because of their wear resistance.

[edit] Domestic use

Tungsten carbide is used as the rotating ball in the tips of ballpoint pens to disperse ink during writing[1].

Tungsten carbide can now be found in the inventory of some jewelers, most notably as the primary material in men's wedding bands. When used in this application the bands appear with a lustrous dark hue often buffed to a mirror finish. The finish is highly resistant to scratches and scuffs, holding its mirror-like shine for years. A danger associated with this use is the occasional need to remove rings in the course of emergency medical treatment. Emergency rooms are usually equipped with jewelers' saws that can easily cut through gold and silver rings without injuring the patient when the ring cannot be slipped off easily. However, these saws are incapable of cutting through tungsten carbide.[2]

Tungsten carbide rings can actually be removed in an emergency situation by cracking them into pieces with standard vice grip–style locking pliers. Although standard ring cutting tools cannot be used due to the hardness of this material, there are specialty cutters available that are just as effective on tungsten carbide as they are on gold and platinum.

Many manufacturers of this emerging jewelry state that the use of a cobalt binder may cause unwanted reactions between the cobalt and the natural oils on human skin. Skin oils cause the cobalt to leach from the material. This is said to cause possible irritation of the skin and permanent staining of the jewelry itself. Many manufacturers now advertise that their jewelry is "cobalt free". This is obtained by substituting the cobalt with nickel as a binder.[citation needed]

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旋削加工における切削抵抗の測定www.tool-tool.com

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

1. 実験の背景と目的

旋削加工のような切削加工では,工具(主としてバイト)が工作物を切削するとき 工具に加わる力を切削抵抗と呼ぶ.切削抵抗は,切り屑の生成などの切削現象を理解する 上で不可欠なパラメータで,工作機械,工具,工作物に対して次のような影響を与える.

  • 工作機械:所要動力を決定し,各部に加わる力を知り, 精度や振動を解析する基礎データを与える
  • 工具:工具が受ける力であるから, その強度と変形を知り設計に役立てるばかりではなく,摩耗や寿命にも影響する.
  • 工作物:切削が良好な状況で行われているか否かということ, あるいは被削性の良否と関連をもつ.したがって切削抵抗の大小やその変動は, 消費動力,加工精度,仕上げ面あらさ,加工変質層,工具寿命などに大きな影響を 及ぼすので,これを知ることは切削加工にとって極めて重要である
そこで本実験では,以下に列挙する項目を実験目的とする.
  1. 切削加工における切り屑の生成機構を学び, 切削抵抗について理論式の導出される過程を切削条件と関連づけて理解する
  2. 歪みゲージを利用した切削抵抗の測定法について学び, 実際に測定装置の操作を行うことにより一層の理解を深める
  3. 切削加工においては工作物の比切削抵抗に関して寸法効果の 存在することを実験により確認する.

2. 旋削加工における(切り屑の生成機構と)切削抵抗

図2-1に切削工具(バイト)で丸棒の外周面を削る旋削加工の様子を示す. 図中の斜線部分は切り屑として取り去られる部分である. またκ はバイトの切込み角,tdls はそれぞれ切込み,切削厚さ,切れ刃長さと工作物1回転あたりの送りである. いま工作物の回転数をnw (rpm),工具の送り速度をVf (mm/s)とすると, 切削厚さd (mm)や切削面積q (mm2)は次のように求められる.



図2-2に旋削加工における切削抵抗の3分力を示す. 切削抵抗Rは工具の切削方向に作用する主分力P1, 送り方向に作用する送り分力P2, 工具の軸方向に働く背分力P3に分ける. 単位切削面積あたりの切削抵抗は比切削抵抗と呼ばれ, 3方向の比切削抵抗をそれぞれKs1Ks2Ks3とすると, 切削抵抗と切削条件の関係が次のようになる.


図2-1 旋削加工における切削量

図2-2 旋削加工における切削抵抗の3分力

3. 実験装置と実験条件

1)力の測定原理と動力計の構成

加工力の測定方法としては,動力計に代表される各種力センサを用いるか, 駆動源であるモータの出力を検出して推定するのが一般的である. 特に主軸モータや送り軸モータの電流を測定することによって, 比較的簡単に加工動力や加工力の概算値を知ることができる. しかし,精度よく加工力を測定するために動力計が用いられることが多い. 動力計としては,力の検出原理によって圧電式と歪みゲージ式の2種類に大別される.

本実験では,3分力を測定する必要があるので図3-1 に示すような構造をもつ3分力歪みゲージ式動力計を用いる. 水平方向(YおよびZ方向)の力は, それぞれの方向のはりに貼った4枚の単軸ひずみゲージ (Y方向はA,B,C,D,Z方向はH,I,J,K)によって伸縮を検出する. 垂直方向(X方向)の力は図中の4本のはりに貼った4枚2軸90°交叉の ひずみゲージP,Q,R,Sによってはりのせん断変形から検出する.

  • 歪みゲージの原理
    歪みゲージは,接着剤で被測定物の表面に張り付けて使用し, 金属抵抗素子の抵抗値変化により,被測定物の表面歪みを測定するものです. 一般に金属材料の抵抗値は外部から力が与えられ,伸ばされれば増加し, 圧縮されれば減少する性質を持っています(式(1))
       (1)
    金属の長さl,断面積S,電気抵抗R,抵抗率ρ
    したがって流す電流を一定にすれば,歪みゲージが伸縮されることにより抵抗が変化して 出力される電圧の値が変わります(オームの法則:式(2))
       (2)
    電圧V,電流I
    ここで得られた電圧を力に換算して,切削抵抗を測定します.

図3-1 3分力動力計の構造とひずみゲージの配置

2)実験装置の構成

図3-2に実験装置の構成概略を示す. 卓上旋盤の工具ヘッド上に歪みゲージ式3分力動力計を固定し, そして工具ホールダを取り付ける. ブリッジボックスによって歪みゲージのブリッジ回路を構成する. 動歪み計(アンプ)の増幅を経て得られたアナログ電圧信号を A/Dコンバータによってデジタル信号に変換し,パソコンに読み込む.


図3-2 旋削加工における切削抵抗測定装置の概略図
  • 実験装置
    1. 卓上旋盤(光畑製作所)
    2. 歪みゲージ式動力計
    3. 校正装置一式
    4. 回転計、分銅
  • 実験条件
    1. 工具:バイトホルダー(東芝製JSCLCR0808H06)、チップ(CCGT060202FR-J10J740)
    2. 工作物:S45C(φ20)
    3. 切削条件(設定値)
      工作物の回転数:n=100,200 rpm
      切込量:t=0.25,0.5,0.75,1.0,1.25 mm
      送り速度:V=0.07,0.1 4 mm/rev
  • 実験方法
    1. 動力計の校正:分銅を使用してX,Y,Z方向に負荷をかけながら 荷重と出力電圧の関係を調べ、動力計の校正曲線を作成する.
    2. 測定実験:切削条件を20種類に組み合わせて切削実験を行い、 切削抵抗の3分力を測定する.
    3. 1で作成した校正曲線を用いて、切削抵抗を求め、グラフ(切込-切削抵抗)にする.
    4. 3で作成したグラフより、3方向の比切削抵抗Ksを求める.
  • 動力計の校正の様子

    X軸方向に分銅を使用し、重さ(荷重)と出力の関係を調べる.


    X軸同様に、Y、Z軸方向の重さと出力の関係も調べる. 下の写真のようにY、Z方向は滑車を利用して測定する.


  • 出力結果(X軸方向の出力結果)

    重りを1kgfづつ増やしていき、動力計の出力を確認する. 重りを増やすごとに、出力値も増加することが確認できる.


  • 測定実験の様子

  • 実験結果

    実験結果は下のように出力される. この結果と動力計の校正結果から切削抵抗を求める.


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汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具等等。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 steelMilling cutterCVDD(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 Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструментыПустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FreseElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsStub 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。

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.

鑄鐵與中碳鋼哪一種比較硬?哪一種容易斷?www.tool-tool.com

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

是否能提供生針對鐵,鑄鐵,低碳鋼,中碳鋼,高碳鋼的強度,硬度,疲勞,衝擊韌性之個別分析.


鑄鐵是一種以含碳(可高達4%)及矽(可高達3.5%)為主的鐵合金,可分下例各種形態的鑄鐵:



(一)灰口鑄鐵:該鑄鐵之碳以游離碳或以片狀石墨分佈於其   中,其破斷面呈灰色。



(二)白口鑄鐵:該種鑄鐵之碳以化合態、雪明碳鐵存石,其破斷面呈白色結晶表面。



(三)可鍛鑄鐵:將適當化學成份之白口鑄鐵經熱處理後使其具有延性或可鍛性的一種鑄鐵,其碳是以球狀聚集的石墨存在。



(四)球墨鑄鐵:於鑄鐵水中加入一些鎂,使其中之部份碳變成球狀石墨,此種鑄鐵之破斷面呈一種像鋼般的光亮斷面。



(五)合金鑄鐵:於上述鑄鐵中再加入鎳、鉻、鉬、釩、銅、鋁、等合金元素,

中碳鋼

以改善鑄鐵的耐熱、耐蝕、耐磨、高強度等性質。

近 年來,鋼研院開展覆蓋公司產品的質量攻關、降低能源消耗、改進生產工藝、新產品開發等科研攻關項目。科研攻關範圍逐漸覆蓋高爐精料、噴煤降焦、煉軋鋼工藝 等技術環節,完成了鐵礦石預選研究與應用、配煤煉焦試驗研究、均勻燒結新技術研究、降低燒結固體燃耗的實驗研究、板坯(材)質量攻關、線材拉拔脆斷質量攻 關等項目;品種鋼開發鋼種由82B、70、65、77MnA、焊絲鋼、80、60等品種鋼線材擴大到X46、X52、X60、高強船板、D級船板、橋樑 鋼、DB60、中碳棒、以及管線鋼、JGH60鋼、HRB400熱軋帶肋鋼筋、中碳鋼棒材等板材、棒材,工藝技術和產品性能等均取得了突破性進展。年科研 攻關效益達到3400多萬元。2003年確定和開始實施長型材和板材的超細晶強化研究應用,並取得了突破性技術進展和可觀的經濟效益

參考資料 http://tw.yahoo.com/
2006-02-12 23:46:43 補充 熟鐵 0.08以下 用於裝飾鐵
低碳鋼 0.08~0.3 易於加工成形,良用於製造鑽模與夾具,無耐磨耐蝕的能力
中碳鋼 0.3~0.6 退火後可予切削加工,亦可硬化處理,用於夾具本体製作
高碳鋼 0.6~2.0 質地堅硬,難以切削,高碳鋼若加入少量的囑、錳等元素則較易鍛造與切削加工,而可使用為工具,一般稱為碳工具鋼
鑄鐵 2.0~6.67 吸收震動能力較佳,耐蝕能力比碳鋼好,易製成複雜形狀,常用於夾具本体及模組底座
碳鋼中加入鎢、鉻、釩、鈷、鉬、錳、鈦、鎳可改善金屬材料的強度、硬度、耐熱、耐蝕及導電能力,凡是在碳鋼中加入其它合金元素者稱為合金鋼

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汽車業刀具設計電子產業鑽石刀具木工產業鑽石刀具等等。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 steelMilling cutterCVDD(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 Single Crystal Diamond Metric end millsMiniature end millsСпециальные режущие инструментыПустотелое сверло Pilot reamerFraisesFresas con mango PCD (Polycrystalline diamond) ‘FreseElectronics cutterStep drillMetal cutting sawDouble margin drillGun barrelAngle milling cutterCarbide burrsCarbide tipped cutterChamfering toolIC card engraving cutterSide cutterNAS toolDIN or JIS toolSpecial toolMetal slitting sawsShell end millsSide and face milling cuttersSide chip clearance sawsLong end millsStub 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。

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.