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Experimental measurement and optimization of tensile residual stress in turning process of Inconel718 superalloy

机译:Inconel718高温合金车削过程中拉伸残余应力的实验测量与优化

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摘要

Generated residual stress in the machining processes is one of the most important factors which affects significantly service quality and component life. Inconel718 superalloy is one of the hard materials utilized widely in the aerospace industries. State of surface residual stress is a critical problem in the finish machining of Inconel718. Therefore, the aim of the present study is to estimate and optimize the effect of machining parameters including cutting speed, depth of cut and feed rate on induced tensile residual stress in the finish/ semi-finish turning process of Inconel718. Machining residual stresses were measured by X-ray Diffraction (XRD) method. Then, the results were introduced to the intelligent systems (including Artificial Neural Network (ANN) and Genetic Algorithm (GA)) to estimate residual stress at the various machining parameters and optimize the process. Finally, it was shown that, implemented efficient intelligent techniques in this paper are remarkably appropriate for machining of Inconel718. (C) 2014 Elsevier Ltd. All rights reserved.
机译:加工过程中产生的残余应力是最重要的因素之一,它会显着影响服务质量和组件寿命。 Inconel718高温合金是在航空航天工业中广泛使用的硬质材料之一。表面残余应力的状态是Inconel718精加工中的关键问题。因此,本研究的目的是评估和优化Inconel718精加工/半精加工车削过程中切削速度,切削深度和进给速度等加工参数对感应拉伸残余应力的影响。加工残余应力通过X射线衍射(XRD)方法测量。然后,将结果引入智能系统(包括人工神经网络(ANN)和遗传算法(GA)),以估计各种加工参数下的残余应力并优化工艺。最后,结果表明,在本文中实施的高效智能技术非常适合Inconel718的加工。 (C)2014 Elsevier Ltd.保留所有权利。

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