The development trend of aluminum alloy precision parts machining technology

分类:Industry Trends
发布时间:2021-06-02
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The machining technology of aluminum alloy precision parts is a comprehensive system engineering, which makes comprehensive use of machine tools, tools, measurement, environmental technology, micro-electronic technology, computer technology and numerical control technology etc. To further improve the machining accuracy of aluminum alloy precision parts needs to carry out in-depth researches.
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As we all know, the single-point diamond lathe has super excellent surface forming quality and surface precision. In the optical system, a large number of optical components rely on the single-point diamond to carry out ultra-precision turning, its purpose is to achieve high quality ultra-precision parts. So, how is this ultra-precision turning processing to achieve it?
The machining technology of aluminum alloy precision parts is a comprehensive system engineering, which makes comprehensive use of machine tools, tools, measurement, environmental technology, micro-electronic technology, computer technology and numerical control technology etc. To further improve the machining accuracy of aluminum alloy precision parts needs to carry out in-depth researches.
Turning tool belongs to a single blade tool. There are many types of turning tool due to the different shapes of cutting workpiece,but the name and function of each part are the same. A good turning tool must have two parts:good rigid handle and sharp blade.The blade angle of turning tool affects cutting directly. Different turning tool materials and workpiece materials result in different angle of the blade. Lathe tool has four important angles: front clearance angle, edge clearance angle, back bevel angle and edge bevel angle.
Grinding wheel is an important tool for grinding. It is a porous object composed of abrasive and binder. Abrasives, binders and pores are the three basic components of the grinding wheel. It has an important influence on the grinding precision, roughness and production efficiency.