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Simulation and Experimental Study on the Surface Generation Mechanism of Cu Alloys in Ultra-Precision Diamond Turning

机译:超精密金刚石车削中铜合金表面生成机理的模拟与实验研究

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摘要

The surface generation mechanism of the Cu alloys in ultra-precision diamond turning is investigated by both simulation and experimental methods, where the effects of the cutting parameters on the surface characteristics are explored, including the workpiece spindle speed, the cutting depth, the feed rate and the nose radius of the diamond tool. To verify the built model, the cutting experiments are conducted at selected parameters, where the causes of the error between the simulation and the machining results are analyzed, including the effects of the materials microstructure and the diamond tool wear. In addition, the nanometric surface characteristics of the Cu alloys after the diamond turning are identified, including the finer scratching grooves caused by the tool wear, the formation of the surface burs and the adhesion of graphite. The results show that the built model can be basically used to predict the surface topography for the selection of the appropriate machining parameters in the ultra-precision diamond turning process.
机译:通过仿真和实验方法研究了铜合金在超精密金刚石车削中的表面生成机理,探讨了切削参数对表面特性的影响,包括工件主轴转速,切削深度,进给速度和菱形工具的刀尖半径。为了验证所构建的模型,在选定的参数上进行了切削实验,分析了仿真和加工结果之间的误差原因,包括材料微观结构和金刚石刀具磨损的影响。此外,还确定了金刚石车削后的Cu合金的纳米表面特性,包括由工具磨损,表面毛刺的形成和石墨的附着力引起的更细的划痕槽。结果表明,所建立的模型基本上可以用于预测表面形貌,以选择超精密金刚石车削过程中的适当加工参数。

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