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Effects of Cutting Edge Microgeometry on Residual Stress in Orthogonal Cutting of Inconel 718 by FEM

机译:切削微几何形状对有限元法对Inconel 718进行正交切削时残余应力的影响

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摘要

Service performance of components such as fatigue life are dramatically influenced by the machined surface and subsurface residual stresses. This paper aims at achieving a better understanding of the influence of cutting edge microgeometry on machined surface residual stresses during orthogonal dry cutting of Inconel 718. Numerical and experimental investigations have been conducted in this research. The cutting edge microgeometry factors of average cutting edge radius S¯, form-factor K, and chamfer were investigated. An increasing trend for the magnitudes of both tensile and compressive residual stresses was observed by using larger S¯ or introducing a chamfer on the cutting edges. The ploughing depth has been predicted based on the stagnation zone. The increase of ploughing depth means that more material was ironed on the workpiece subsurface, which resulted in an increase in the compressive residual stress. The thermal loads were leading factors that affected the surface tensile residual stress. For the unsymmetrical honed cutting edge with K = 2, the friction between tool and workpiece and tensile residual stress tended to be high, while for the unsymmetrical honed cutting edge with K = 0.5, the high ploughing depth led to a higher compressive residual stress. This paper provides guidance for regulating machine-induced residual stress by edge preparation.
机译:零件的服务性能(例如疲劳寿命)受加工表面和次表面残余应力的影响很大。本文旨在更好地了解在Inconel 718正交干切削过程中切削刃的微观几何形状对机械加工表面残余应力的影响。本研究已进行了数值和实验研究。平均切削刃半径的切削刃微观几何因子 S ¯ ,形状系数K以及倒角进行了调查。通过使用较大的 S < / math>或在切削刃上引入倒角。已经根据停滞区预测了耕深。耕深的增加意味着在工件次表面上熨烫了更多的材料,这导致了压缩残余应力的增加。热负荷是影响表面拉伸残余应力的主要因素。对于K = 2的非对称珩磨刀刃,刀具与工件之间的摩擦力和拉伸残余应力往往较高,而对于K = 0.5的非对称珩磨刀刃,较高的耕作深度导致较高的压缩残余应力。本文为通过边缘准备来调节机器产生的残余应力提供了指导。

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