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Cutting temperature in rotary ultrasonic machining of titanium: experimental study using novel Fabry-Perot fiber optic sensors

机译:钛的旋转超声加工中的切削温度:使用新型Fabry-Perot光纤传感器的实验研究

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摘要

Titanium has a wide variety of applications, particularly in the aerospace industry. However, because of its low thermal conductivity and high strength, machining of titanium is very difficult. The heat generated in machining can dramatically shorten the tool life. Rotary ultrasonic machining (RUM) is a non-traditional machining process, and has been used to machine various difficult-to-machine materials. Investigations have been reported regarding effects of machining variables (including ultrasonic power, tool rotation speed, and feedrate) on several output variables in RUM, such as cutting force, torque, surface roughness, edge chipping, material removal rate, and tool wear. However, there have been few studies on cutting temperatures in RUM. This paper presents an experimental study on cutting temperature in RUM of titanium. It is the first study to utilise fibre optic temperature sensors to measure the cutting temperature in RUM. The results revealed effects of machining variables on cutting temperature in RUM, and demonstrated that Fabry-Perot (FP) fibre optic sensors offer more accurate localised measurement of temperature in RUM than thermocouples.
机译:钛具有广泛的应用,特别是在航空航天工业中。然而,由于钛的低导热性和高强度,钛的机械加工非常困难。加工中产生的热量会大大缩短刀具寿命。旋转超声加工(RUM)是一种非传统的加工工艺,已用于加工各种难加工的材料。已经报道了有关加工变量(包括超声功率,刀具转速和进给速度)对RUM中多个输出变量的影响的调查,例如切削力,扭矩,表面粗糙度,切屑,材料去除率和刀具磨损。然而,很少有关于降低RUM中温度的研究。本文提出了钛RUM切削温度的实验研究。这是首次利用光纤温度传感器测量RUM中的切削温度的研究。结果揭示了加工变量对RUM中切削温度的影响,并证明了Fabry-Perot(FP)光纤传感器比热电偶可提供更精确的RUM温度局部测量。

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