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超声振动对 Ti6Al4V 加工影响的建模与仿真。

Modelling and simulation of effect of ultrasonic vibrations on machining of Ti6Al4V.

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.

出版信息

Ultrasonics. 2014 Feb;54(2):694-705. doi: 10.1016/j.ultras.2013.09.010. Epub 2013 Sep 19.

Abstract

The titanium alloys cause high machining heat generation and consequent rapid wear of cutting tool edges during machining. The ultrasonic assisted turning (UAT) has been found to be very effective in machining of various materials; especially in the machining of "difficult-to-cut" material like Ti6Al4V. The present work is a comprehensive study involving 2D FE transient simulation of UAT in DEFORM framework and their experimental characterization. The simulation shows that UAT reduces the stress level on cutting tool during machining as compared to that of in continuous turning (CT) barring the penetration stage, wherein both tools are subjected to identical stress levels. There is a 40-45% reduction in cutting forces and about 48% reduction in cutting temperature in UAT over that of in CT. However, the reduction magnitude reduces with an increase in the cutting speed. The experimental analysis of UAT process shows that the surface roughness in UAT is lower than in CT, and the UATed surfaces have matte finish as against the glossy finish on the CTed surfaces. Microstructural observations of the chips and machined surfaces in both processes reveal that the intensity of thermal softening and shear band formation is reduced in UAT over that of in CT.

摘要

钛合金在加工过程中会产生大量的加工热,并导致刀具刃口迅速磨损。超声辅助车削(UAT)已被证明在各种材料的加工中非常有效;特别是在加工钛 6 铝 4 钒等“难加工”材料时。本工作是一项综合研究,涉及在 DEFORM 框架中进行 UAT 的二维有限元瞬态模拟及其实验特性。模拟表明,与连续车削(CT)相比,UAT 降低了加工过程中刀具上的应力水平,但在穿透阶段除外,此时两种刀具都承受相同的应力水平。与 CT 相比,UAT 的切削力降低了 40-45%,切削温度降低了约 48%。然而,随着切削速度的增加,减少的幅度会减小。UAT 过程的实验分析表明,UAT 的表面粗糙度低于 CT,并且 UAT 加工表面具有哑光光泽,而 CT 加工表面则具有光泽。对两种工艺的切屑和加工表面的微观结构观察表明,与 CT 相比,UAT 中热软化和剪切带形成的强度降低。

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