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TOOL WEAR CHARACTERISTICS OF MICRO MILLING OF OPTICAL GLASS

机译:光学玻璃微铣的刀具磨损特性

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摘要

Wear characteristics of small ball end mills in the micro milling process on optical glass are discussed. A method to measure loss of cutting edge is developed to observe the wear characteristics of glass milling. This method allows the loss of cutting edge to be determined from the surface profile of a machined surface with a numerical approach. Cutting tests are performed by changing of the attitude of the tool cutting edge and typical cutting conditions to verify the validity of the developed method and to observe the wear characteristics in glass milling. In this experiment, the loss of cutting edge is changed by tool attitude because the cutter velocity of actual cutting area is changed by tool attitude. On the other hand, the loss of cutting edge is not changed with the rotational speed and feed rate of the milling tool in which a crack-free surface can be obtained. In addition, diamond-coated carbide tools show high durability. However, they leave small brittle cracks on the machined surface. It is concluded
机译:讨论了小型球头立铣刀在光学玻璃微铣削过程中的磨损特性。开发了一种测量切削刃损耗的方法,以观察玻璃研磨的磨损特性。这种方法可以通过数值方法从加工表面的表面轮廓确定切削刃的损耗。通过改变刀具切削刃的姿态和典型切削条件进行切削测试,以验证所开发方法的有效性并观察玻璃铣削中的磨损特性。在该实验中,刀刃的损耗因刀具的姿态而改变,因为实际切削区域的刀具速度随刀具的姿态而变化。另一方面,切削刃的损失不随能够获得无裂纹表面的铣削工具的转速和进给速度而变化。此外,金刚石涂层的硬质合金刀具具有很高的耐用性。但是,它们在机加工表面上留下小的脆性裂纹。结论

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