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Ultrasonic Vibration Assisted Cutting of Nomex Honeycomb Core Materials

机译:Nomex蜂窝芯材料超声波振动辅助切割

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摘要

Nomex honeycomb core materials have been widely used in the aviation industry due to their special structure and performance. Conventional high-speed machining have resulted in the poor machinability of the honeycomb core so that the ultrasonic machining technology was applied. The kinematic characteristics in the ultrasonic vibration assisted cutting process were analyzed according to the movement of the sharp tool. Based on slide effect, a cutting force model was proposed to study the relationship between cutting parameters and cutting force. Ultrasonic vibration assisted cutting and ordinary cutting tests of Nomex honeycomb core material were conducted by considering feed rate, the inclined angle and the deflected angle. Besides, the effects of cutting parameters on machined surface quality of honeycomb core wall were studied. The test results show that slide effect caused by ultrasonic vibrations can reduce cutting resistance compared with ordinary cutting. The developed cutting force model can be applied to evaluated the cutting force in the ultrasonic vibration assisted cutting of Nomex honeycomb core material. The inclined angle has a great influence on the cutting force during ultrasonic vibration assisted cutting. High-speed reciprocating sliding action can effectively cut aramid fibers so that burrs and tearing defects of the incision have been greatly improved under condition of ultrasonic vibration assisted cutting.
机译:由于其特殊的结构和性能,Nomex蜂窝核心材料已广泛应用于航空业。传统的高速加工导致蜂窝芯的可加工性可差,从而应用超声波加工技术。根据尖锐工具的运动分析超声波振动辅助切割过程的运动特性。基于滑动效果,提出了一种切割力模型来研究切割参数与切割力之间的关系。通过考虑进料速率,倾斜角度和偏转角来进行Nomex蜂窝芯材料的超声波振动辅助切割和常规切削测试。此外,研究了切割参数对蜂窝芯壁加工表面质量的影响。测试结果表明,与常规切割相比,超声波振动引起的滑动效果可以降低切削电阻。可以应用所发育的切割力模型来评估Nomex蜂窝芯材的超声波振动辅助切割中的切削力。倾斜角度在超声波振动辅助切割期间对切割力产生很大影响。在超声波振动辅助切割的条件下,高速往复滑动动作可以有效地切割芳族纤维,使得切口的毛刺和切口的撕裂缺陷。

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