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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Effect of ultrasonic vibration on frictional behavior of tool-chip interface: Finite element analysis and experimental study
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Effect of ultrasonic vibration on frictional behavior of tool-chip interface: Finite element analysis and experimental study

机译:超声波振动对工具芯片界面摩擦行为的影响:有限元分析与实验研究

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摘要

Ultrasonic-assisted machining is an advanced method which allows significant improvements in processing of materials. In this study, a finite element model is developed to study the effect of ultrasonic vibration on machinability of AISI 304 stainless steel in which the results are compared with conventional cutting process. A pneumatic quick-stop device and an optical microscope are applied to validate the simulation results by measuring shear angle and sticky region experimentally. As a result, the analysis of heat generation in primary and secondary deformation zones shows that temperature increases in the primary zone when ultrasonic vibration is used, while a significant reduction in temperature is seen in the tool-chip contact zone. This area is considerably effective on the length of sticky region. Moreover, the influence of cutting speed and feed rate on tool-chip engagement time is investigated by the analysis of cutting force profile.
机译:超声波辅助加工是一种先进的方法,可以显著改善材料的加工。本研究建立了一个有限元模型,以研究超声振动对AISI 304不锈钢可加工性的影响,并将结果与常规切削工艺进行了比较。采用气动快速停止装置和光学显微镜,通过实验测量剪切角和粘性区域,验证了模拟结果。因此,对一次变形区和二次变形区的生热分析表明,当使用超声波振动时,一次变形区的温度升高,而刀具-切屑接触区的温度显著降低。这个区域对粘性区域的长度非常有效。此外,通过对切削力分布的分析,研究了切削速度和进给速度对刀具-切屑啮合时间的影响。

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