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Analysis of forces in vibro-impact and hot vibro-impact turning of advanced alloys

机译:振动抗冲击力分析及热振动式转动先进合金

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摘要

Analysis of the cutting process in machining of advanced alloys, which are typically difficult-tomachine materials, is a challenge that needs to be addressed. In a machining operation, cutting forces causes severe deformations in the proximity of the cutting edge, producing high stresses, strain, strain-rates and temperatures in the workpiece that ultimately affect the quality of the machined surface. In the present work, cutting forces generated in a vibro-impact and hot vibro-impact machining process of Ti-based alloy, using an in-house Ultrasonically Assisted Turning (UAT) setup, are studied. A three-dimensional, thermo-mechanically coupled, finite element model was developed to study the thermal and mechanical processes in the cutting zone for the various machining processes. Several advantages of ultrasonically assisted turning and hot ultrasonically assisted turning are demonstrated when compared to conventional turning.
机译:对通常困难的合金加工加工过程的切割过程是需要解决的挑战。在加工操作中,切割力引起切削刃接近的严重变形,在工件中产生高应力,应变,应变率和温度最终影响机加工表面的质量。在本作工作中,研究了使用内部超声辅助转弯(UAT)设置的Ti基合金的振动式合金中产生的切割力和热振动加工过程。开发了三维,热机械耦合的有限元模型,用于研究各种加工过程的切割区中的热和机械过程。与传统转动相比,在超声辅助转动和热超声辅助转动的几个优点。

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