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FEA-Based Comparative Investigation on High Speed Machining of Aluminum Alloys AA6061-T6 and AA7075-T651

机译:基于FEA的铝合金高速加工AA6061-T6和AA7075-T651的比较研究

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Independent research studies have shown notable dissimilarity in the machining behaviour of aluminum alloys AA6061-T6 and AA7075-T651 commonly used in automotive and aeronautical applications. The present work attempts to investigate this dissimilarity based on experimental and numerical data with a focus on chip formation and generated residual stresses under similar high speed machining (HSM) conditions. The numerical data were calculated by a finite element modeling (FEM) developed using Deform 2D software. The results showed that both studied alloys exhibit different chip formation mechanisms and residual stress states at the machined surfaces. On one hand, the AA6061-T6 alloy generates continuous chips and tensile residual stresses whereas the AA7075-T651 alloy produces segmented chips and compressive residual stresses. FEM results showed that the AA6061-T6 alloy generates lower cutting temperature at the tool/chip interface along with higher equivalent total strains at the machined surface as compared to the AA7075-T651 alloy. Based on the experimental and numerical results, it was pointed out that the differences in terms of thermal conductivity and initial yield stress are the main reasons explaining the dissimilarity observed.
机译:独立研究研究表明,铝合金AA6061-T6和AA7075-T651常用于汽车和航空应用的AA7075-T651的加工行为显着不相似。目前的作品试图根据实验和数值数据来研究这种不相似性,并在类似的高速加工(HSM)条件下产生芯片形成和产生残余应力。通过使用Deform 2D软件开发的有限元建模(FEM)计算数值数据。结果表明,两种研究的合金在加工表面上表现出不同的芯片形成机制和残余应力状态。一方面,AA6061-T6合金产生连续芯片和拉伸残余应力,而AA7075-T651合金产生分段芯片和压缩残余应力。有限元的结果表明,与AA7075-T651合金相比,AA6061-T6合金在工具/芯片界面处产生较低的切削温度以及加工表面的等效总菌株。基于实验性和数值结果,指出了导热系数和初始产量应力方面的差异是说明观察到不相似性的主要原因。

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