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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Multi-response optimization in orthogonal turn milling by analyzing tool vibration and surface roughness using response surface methodology
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Multi-response optimization in orthogonal turn milling by analyzing tool vibration and surface roughness using response surface methodology

机译:通过使用响应表面方法分析工具振动和表面粗糙度正交转铣的多响应优化

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摘要

Turn milling is one of the machining processes used to mill circular work pieces while the work piece rotates about its own axis. Orthogonal milling is one of the turn milling processes where the bottom part of cutter removes material from the rotating work piece with high metal removal rate. In this article, tool condition was studied by analyzing surface roughness and vibration of cutter with the use of response surface methodology. According to design of experiments, 16 experiments were conducted on ASTM B139 phosphor bronze with high-speed steel end mill cutter on four-axis milling machine. The response surface methodology was used to find out significant parameters that are affecting surface roughness and amplitude of cutter vibration. A multi-response optimization technique was used to identify optimum cutting parameters for less surface roughness and amplitude of cutter vibration.
机译:转动铣削是用于铣削圆形工件的加工过程之一,而工件绕其自身轴旋转。 正交研磨是刀具的底部底部从旋转工件中除去材料,具有高金属去除速率。 在本文中,通过使用响应面方法分析切割器的表面粗糙度和振动来研究刀具状况。 根据实验的设计,在四轴铣床上为ASTM B139磷青铜器进行16个实验,在四轴铣床上进行高速钢端铣刀。 响应面方法用于找出影响刀具振动的表面粗糙度和幅度的重要参数。 多响应优化技术用于识别刀具振动的较低表面粗糙度和幅度的最佳切削参数。

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