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Residual Stresses Analysis in Ball end Milling of Nickel-Based Superalloy Inconel 718

机译:镍基高温合金Inconel 718球头铣削中的残余应力分析

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ABSTRACT Inconel 718 is widely used in the aviation, space, automotive and biomedical industries because of its outstanding properties. Near-surface residual stresses that are induced by ball end milling in Inconel 718 can be crucial for the performance and service time of the machined parts. In this paper, the influences of cutting conditions, including the use of cutting parameters, cutting fluid and spindle angles, on the residual stresses in the ball end milling process of Inconel 718 alloy were investigated experimentally. X-ray diffraction measurements reveal that residual stress distributions are highly influenced by cutting parameters, especially the depth of cut and cutting speed. The milling operation with cooling induces more compressive stresses trend and the magnitude of the residual stresses increases in the tensile direction with the increase of spindle angles. These cutting induced effects were further discussed with respect to thermal- mechanical coupling theory and some observations made by optical microscopy. From this investigation, it is suggested that the machining process parameters are not the smaller the better for the control of residual stresses in the ball end milling process of Inconel 718.
机译:摘要Inconel 718因其卓越的性能而广泛用于航空,航天,汽车和生物医学行业。 Inconel 718中球头铣削引起的近表面残余应力对于加工零件的性能和使用寿命至关重要。本文研究了切削条件(包括切削参数的使用,切削液和主轴角度)对Inconel 718合金球头铣削过程中残余应力的影响。 X射线衍射测量表明,残余应力分布受切削参数(尤其是切削深度和切削速度)的影响很大。带有冷却的铣削操作会引起更多的压应力趋势,并且残余应力的大小会随着主轴角度的增加而在拉伸方向上增加。这些切削引起的影响将在热力耦合理论和光学显微镜观察中得到进一步讨论。从这项调查中可以看出,Inconel 718球头铣削过程中的加工过程参数不是越小,越有利于控制残余应力。

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