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首页> 外文期刊>Journal of Materials Processing Technology >Improvement of forging process of a 3D complex part with respect to damage occurrence
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Improvement of forging process of a 3D complex part with respect to damage occurrence

机译:改进3D复杂零件的锻造工艺以防止损坏

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摘要

This work is devoted to the study of a numerical (FE-based) methodology developed in order to improve the cold 3D forging process with respect to the ductile damage occurrence. This methodology is based on advanced constitutive equations accounting for the "strong" coupling between the elastoplastic behavior, the mixed isotropic and kinematic hardening and the isotropic ductile damage. Both the mechanical and numerical aspects related to the associated initial and boundary values problem (IBVP) are briefly outlined. Application is made to be the cold forging of a 3D part (spider) by studying the influence of the material ductility as well as the friction nature between the part and the die on the damage occurrence. The proposed methodology is shown to be very useful and helpful when dealing with a "virtual" improvement of any forging processes with respect to damage occurrence.
机译:这项工作致力于研究数值模型(基于有限元分析)的方法,该方法旨在针对延性损伤的发生改善冷3D锻造过程。该方法基于高级本构方程,解释了弹塑性行为,各向同性和运动学混合硬化以及各向同性延性损伤之间的“强”耦合。简要概述了与相关的初始值和边界值问题(IBVP)相关的机械和数值方面。通过研究材料的延展性以及零件与模具之间的摩擦特性对损坏的发生的影响,将其应用于3D零件(蜘蛛)的冷锻。所显示的方法论在处理任何关于损坏发生的锻造过程的“虚拟”改进时非常有用。

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