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Numerical and empirical modelling of machining-induced residual stresses in ball end milling of Inconel 718

机译:Inconel 718球端铣削加工诱导的残余应力的数值和经验模型

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Machining induced residual stresses can be crucial for the performance and life of the end product. In this paper, a 3D numerical model and an empirical model for residual stresses prediction were built to evaluate the near-surface residual stresses in Inconel 718 under ball end milling conditions. A series of ball end milling experiments of Inconel 718 have been conducted and X-ray diffraction measurements have been utilized to obtain the test residual stress profiles. The comparison results reveal that the numerical model can give an efficient estimation of the residual stress state beneath the machined surface, but the accuracy of the simulation model still needs to be improved. On the basis of the measured residual stresses, an exponentially decaying cosine function was fitted using a particle swarm optimization method. For the purpose of predicting machining induced residual stresses with different cutting parameters, a prediction model based on cutting parameters was developed. A good correlation was observed between the experimental and the predicted results derived from the empirical model.
机译:加工诱导的残余应力对于最终产品的性能和寿命可能是至关重要的。在本文中,建立了3D数值模型和残余应力预测的经验模型,以评价球端铣削条件下的近乎718中的近表面残余应力。已经进行了Inconel 718的一系列球端研磨实验,并且已经利用了X射线衍射测量来获得试验残余应力分布。比较结果表明,数值模型可以有效地估计加工表面下方的残余应力状态,但仍然需要提高模拟模型的准确性。在测量的残余应力的基础上,使用粒子群优化方法装配指数衰减的余弦功能。为了预测采用不同切割参数的加工诱导的残余应力,开发了一种基于切削参数的预测模型。在实验和源自经验模型的预测结果之间观察到良好的相关性。

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