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Rotary ultrasonic machining of carbon fiber reinforced plastic composites: An experimental stud/ on cutting temperature

机译:碳纤维增强塑料复合材料的旋转超声加工:实验螺柱/切削温度

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摘要

Carbon fiber reinforced plastic composites are used in many applications due to their superior properties. Drilling is the most frequently used machining process due to the need for assembly of carbon fiber reinforced plastic parts in mechanical structures. Rotary ultrasonic machining has been successfully used in drilling carbon fiber reinforced plastic composites. Reported investigations on rotary ultrasonic machining of carbon fiber reinforced plastic cover several output variables (including cutting force, torque, surface roughness, material removal rate, fiber delamination, tool wear, and power consumption). However, there are no reported studies on cutting temperature in rotary ultrasonic machining of carbon fiber reinforced plastic. This paper presents an experimental study on cutting temperature in rotary ultrasonic machining of carbon fiber reinforced plastic using two measurement methods (thermocouple and fiber optic sensor). Comparisons between these two methods are made and relations between input variables (ultrasonic power, tool rotation speed, and feedrate) and cutting temperature are experimentally determined.
机译:碳纤维增强塑料复合材料由于其优越的性能而被用于许多应用中。由于需要在机械结构中组装碳纤维增强塑料零件,因此钻孔是最常用的机加工工艺。旋转超声加工已成功用于碳纤维增强塑料复合材料的钻孔。关于碳纤维增强塑料的旋转超声加工的报道研究报告涵盖了几个输出变量(包括切削力,扭矩,表面粗糙度,材料去除率,纤维分层,工具磨损和功耗)。但是,没有关于碳纤维增强塑料的旋转超声加工中的切削温度的报道。本文介绍了使用两种测量方法(热电偶和光纤传感器)对碳纤维增强塑料进行旋转超声加工时切削温度的实验研究。比较这两种方法,并通过实验确定输入变量(超声波功率,刀具转速和进给速度)与切削温度之间的关系。

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