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Optimisation of spiral forging process design for ensuring uniform quality of forged round billet by three-dimensional rigid-plastic finite element analysis

机译:通过三维刚塑性有限元分析优化螺旋锻造工艺设计,确保锻造圆坯的均匀质量

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摘要

Focusing on the spiral forging stage of the hot open die forging process, which is the final stage of finishing round billets from ingots, the influence of operational conditions on the distribution of equivalent plastic strain has been numerically analysed using a three-dimensional rigid-plastic finite element method. The mechanism via which equivalent plastic strain is accumulated at the surface of the workpiece during spiral forging is clarified. The independent influence of each major operational parameter, i.e. rotational angle and feed, is revealed, and the optimum combination of these two parameters is clarified. The influence of the coefficient of friction is also discussed, and, as a result, a fundamental scheme to optimise spiral forging process design is suggested, taking account of not only uniformity of quality but also dimensional precision of the forged round billet.
机译:着重于热开模锻造的螺旋锻造阶段,这是从锭精加工圆坯的最后阶段,使用三维刚性塑料对工作条件对等效塑性应变分布的影响进行了数值分析。有限元法。阐明了在螺旋锻造过程中在工件表面累积等效塑性应变的机理。揭示了每个主要操作参数(即旋转角度和进给)的独立影响,并阐明了这两个参数的最佳组合。还讨论了摩擦系数的影响,结果,提出了一种优化螺旋锻造工艺设计的基本方案,不仅要考虑质量的均匀性,还要考虑锻造圆坯的尺寸精度。

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