A robust design based methodology for investigation of optimal parameters' combination in ultrasonic assisted face grinding

Roman Wdowik, R. M. Chandima Ratnayake
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引用次数: 1

Abstract

This manuscript presents the results of experimental investigations which have been carried out to investigate the optimal parameter combination that results in the minimum axial process force (PF) in ultrasonic assisted face grinding (UAFG). A diamond grinding tool (diamond drill) was used in these investigations. The UAFG is a hybrid machining process, which has been used for the machining of advanced ceramic materials. The application of ultrasonic assisted grinding (UAG) is still limited, inter alia, because of difficulties during the selection of values for input machining parameters, such as: cutting velocity, feed rate, frequency of vibrations, and mounting torque, which is applied during tool clamping. The ultrasonic assistance provides advantages for the process course if the appropriate combination of input parameters is set on a hybrid/computer numerical control (CNC) machine tool. The PFs on the Ultrasonic 20 linear machine tool are measured using the Kistler 9256C2 dynamometer, and the optimal process parameter combination is calculated using the engineering robust design approach (ERDA).
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基于稳健设计的超声辅助磨削优化参数组合研究方法
本文介绍了超声辅助磨削(UAFG)中产生最小轴向加工力(PF)的最佳参数组合的实验研究结果。在这些研究中使用了金刚石研磨工具(金刚石钻)。UAFG是一种混合加工工艺,已被用于高级陶瓷材料的加工。超声辅助磨削(UAG)的应用仍然受到限制,特别是由于在选择输入加工参数值时存在困难,例如:切削速度,进给速率,振动频率和安装扭矩,这些参数在刀具夹紧期间施加。如果在混合/计算机数控(CNC)机床上设置适当的输入参数组合,超声波辅助将为加工过程提供优势。采用Kistler 9256C2测功机测量了超声20直线机床上的PFs,并采用工程稳健设计方法(ERDA)计算了最优工艺参数组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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