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Residual stresses prediction in machining of Inconel 718 superalloy using a constitutive model considering the state of stress

机译:考虑到应力状态

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The need for developing new products that meet high functional requirements,such as high fatigue strength,superior thermal and corrosion resistance,have permitted to focus on the development of enhanced materials and seek solutions that also promote better surface integrity.It is the case of the Inconel 718 nickel superalloy,where the combination of its mechanical and thermal properties provides a full industrial application,especially in hot engine components in the aerospace industry.However,there is still a big challenge to obtain suitable surface integrity for this kind of application after machining this alloy.This work aims to predict the surface integrity in the machining of the Inconel 718 alloy using an orthogonal cutting model implemented in Abaqus FEA software.This model includes a constitutive model considering the most relevant factors affecting the mechanical behavior of Inconel 718 in machining,including the strain rate and the state of stress.The machining model is validated by comparing the measured and predicted results.Then,it is used to evaluate the influence of the cutting regime parameters and tool geometry on the residual stresses.
机译:需要开发满足高功能性要求的新产品,例如高疲劳强度,卓越的热和耐腐蚀性,允许专注于增强材料的开发,并寻求促进更好的表面完整性的解决方案。它是如此Inconel 718镍高温合金,其机械和热性能的组合提供了完整的工业应用,特别是在航空航天行业的热力发动机部件中。然而,在加工后获得这种应用的合适表面完整性仍然存在很大的挑战这种合金旨在使用ABAQUS FEA软件中实现的正交切割模型来预测Inconel 718合金的加工的表面完整性。本模型包括考虑到影响Inconel 718在加工中的机械行为的最相关因素的组成模型,包括应变率和压力状态。加工模型是vali通过比较测量和预测结果来进行日期。然后,它用于评估切割方案参数和工具几何形状对残余应力的影响。

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