欧美人妻精品一区二区三区99,中文字幕日韩精品内射,精品国产综合成人亚洲区,久久香蕉国产线熟妇人妻

Currently widely used CNC machining tool materials include diamond tools, cubic boron nitride tools, ceramic tools, coated tools, carbide tools and high-speed steel tools.

The Selection of Cutting Tool Materials 2

?ypes of cutting tool material

There are many grades of tool materials, and their performance is also very different. The main performance indicators of the various tool materials are as follows.

The Selection of Cutting Tool Materials 3

Tool materials for CNC machining must be selected based on the workpiece being machined and the nature of the process. The selection of tool materials should be matched with the processing object. The matching of cutting tool materials and machining objects mainly refers to the matching of mechanical properties, physical properties and chemical properties of the two to obtain the longest tool life and maximum cutting processing productivity.

strategy 1: Matching the cutting tool material with the mechanical properties of the work piece

The mechanical property matching problem between the cutting tool and the machined object mainly refers to the mechanical property parameters such as the strength, toughness and hardness of the tool and the workpiece material. Tool materials with different mechanical properties are suitable for machining workpiece materials.

1. The hardness sequence of the tool material is: diamond tool > cubic boron nitride tool > ceramic tool > hard alloy > high speed steel.

2. The bending strength order of the tool materials is: high speed steel > hard alloy > ceramic tool > diamond and cubic boron nitride tool.

3 The toughness order of the tool materials is: high speed steel > hard alloy > cubic boron nitride, diamond and ceramic tools.

High hardness workpiece materials must be processed with higher hardness tools. The hardness of the tool material must be higher than the hardness of the workpiece material. Generally, it is required to be above 60HRC. The higher the hardness of the tool material, the better its wear resistance. For example, when the amount of cobalt in the cemented carbide increases, the strength and toughness increase, the hardness decreases, and it is suitable for rough processing; when the amount of cobalt decreases, the hardness and wear resistance increase, which is suitable for finishing.

Tools with excellent high temperature mechanical properties are especially suitable for high speed machining. The excellent high temperature performance of ceramic tools enables them to be cut at high speeds, allowing cutting speeds to be 2 to 10 times higher than cemented carbides.

Strategy 2: The cutting tool material should match the physical properties of the machined object

Tools with different physical properties, such as high-speed steel tools with high thermal conductivity and low melting point, ceramic tools with high melting point and low thermal expansion, diamond tools with high thermal conductivity and low thermal expansion, are suitable for processing workpiece materials. When machining a workpiece with poor thermal conductivity, a tool material with better heat conductivity should be used to allow the cutting heat to be quickly transmitted to lower the cutting temperature. Due to the high thermal conductivity and thermal diffusivity of diamond, the cutting heat is easily dissipated and does not cause large thermal deformation, which is especially important for precision machining tools with high dimensional accuracy.

1. Heat resistance temperature of various tool materials: 700~800°C for diamond cutters; 1300~1500°C for PCBN cutters; 1100~1200°C for ceramic cutters; 900~1100°C for TiC(N) based cemented carbides; WC base The ultrafine grained cemented carbide is 800 to 900 ° C; the HSS is 600 to 700 ° C.

2. Thermal conductivity sequence of various tool materials: PCD>PCBN>WC-based hard alloy>TiC(N)-based cemented carbide>HSS>Si3N4-based ceramic>A1203-based ceramic.

3. The order of thermal expansion coefficient of various tool materials: HSS>WC based hard alloy>TiC(N)> A1203 based ceramic>PCBN>Si3N4 based ceramic>PCD.

4. The order of thermal shock resistance of various tool materials: HSS>WC-based cemented carbide>Si3N4-based ceramic>PCBN>PCD>TiC(N)-based cemented carbide>A1203-based ceramic.

The Selection of Cutting Tool Materials 4

Strategy 3: the chemical properties of the cutting tool material and the processed object match

The matching of the chemical properties of the cutting tool material with the processing object mainly refers to the matching of the chemical properties of the tool material with the chemical affinity, chemical reaction, diffusion and dissolution of the workpiece material. The materials of the workpieces that are different for different materials are different.

1. Anti-bonding temperature of various tool materials (with steel): PCBN>Ceramic>Carbide>HSS.

2. Anti-oxidation temperature of various tool materials: ceramic>PCBN>hard alloy>diamond>HSS.

Diffusion strength of three kinds of tool materials: for steel, diamond>Si3N4 based ceramic>PCBN>A1203 based ceramic; for titanium, A1203 based ceramic>PCBN>SiC>Si3N4>diamond.

Considerations of CNC tool materials

1.Hardness and wear resistance

The hardness of the tool material must be higher than the hardness of the workpiece material, generally required to be above 60HRC. In general, the higher the hardness of the tool material, the better the wear resistance.

2.Strength and toughness

The cutting part of the tool is subject to large cutting forces and impact forces. Therefore, the tool material should have high strength and toughness to withstand cutting forces, shocks and vibrations, and prevent brittle fracture and chipping of the tool.

3.Heat resistance and thermal conductivity

At high temperatures, the tool can maintain its hardness and strength. The better the heat resistance, the stronger the ability of the tool to resist plastic deformation and the anti-wear ability at high temperatures. The better the thermal conductivity, the easier the heat generated during cutting is conducted. , thereby reducing the temperature of the cutting portion and reducing tool wear.

4.Processability and economy

For ease of manufacture, the tool material should have good machinability, including hot workability, machinability, and grinding performance, so as to pursue high cost performance.

The Selection of Cutting Tool Materials 5

In general, PCBN, ceramic tools, coated carbide, and TiCN-based carbide tools are suitable for CNC machining of ferrous metals such as steel.PCD tools are suitable for non-ferrous materials such as Al, Mg, Cu and related alloys. Processing of non-metallic materials.

The table below shows some of the workpiece materials that are suitable for machining various tool materials.

The Selection of Cutting Tool Materials 6

發(fā)表評(píng)論

電子郵件地址不會(huì)被公開(kāi)。 必填項(xiàng)已用*標(biāo)注

成人黄色精品久久app| 无码视频在线观看| 男生用鸡巴操女生的视频| 99热这里只有精品亚洲| 色狠狠久久av北条麻妃| 日本成人在线一区中文字幕| 久久久国产精品2020| 国产精品熟女一区二区三区久久夜| 成人黄色精品久久app| 大鸡巴操逼 公司| 鸡巴插骚逼视频欧美风格| AV天堂手机福利网| 午夜精品福利一区二区三区蜜桃p| 91久久高清国语自产拍| 伊人网在线免费视频| 人人妻人人澡精品99| 色逼色逼色逼色逼色逼色| 青青河边草直播免费观看| 日韩人妻无码中字一区二区| 日韩久久奶茶视频| 黑人大屌爆操骚货| 天美传媒精品1区2区3区| 中文字幕一区二区日韩精品蜜臂| 美女穿黑丝被大鸡巴猛操| 日本免费精品一区二区三区四区| 欧美性一区二区三区五区| 在线观看国产日韩欧美一区二区| 日本高清一区二区三区不卡| 国产亚洲一区二区手机在线观看| 非洲男生操男生屁眼视频| 欧美久久精品免费看C片| 亚洲免费福利视频| 内射白嫩少妇超碰| 日本入室强伦姧人妻中文| 狠狠五月激情综合去干网| 日本av在线一区二区| 高清国产一区二区| 亚洲欧美一区二区三区在| 久久精品欧美精品免费观看| 白虎鲍鱼抠逼免费看| 久久国产高清波多野结衣|