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Analysis of laminated crack defect in the upsetting process of heavy disk-shaped forgings

机译:盘状锻件the锻过程中层状裂纹缺陷的分析

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摘要

Using nonlinear finite element method, a thermo-mechanical coupled simulation model for the formation mechanism of the laminated crack defect has been established in the upsetting of heavy disk-shaped forgings. Through numerical simulation, the distributions of stress, equivalent strain and strain rate were analysed. Meanwhile the distribution diagram of stress state evolution was obtained, and the uncoordinated deformation, under tri-lateral compression, is determined as the main reason leading to laminated crack defect. To reveal the characteristics of the uncoordinated deformation, the variations of each variable and its gradient in numerical simulation were presented, and a combined prediction model of laminated crack defect were proposed based on degree of deformation and gradient of deformation speed. Subsequently, the morphology and distribution of laminated crack were obtained in the centre of forging using the prediction model. Comparison of calculation results and experimental data indicates that both of them match well. In addition, the effect of friction coefficient on the deformation is also presented. The results show that the decreasing of friction coefficient is an effective measure to restrain the laminated crack defect. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用非线性有限元方法,建立了厚圆盘形锻件setting锻过程中层状裂纹缺陷形成机理的热力耦合模拟模型。通过数值模拟,分析了应力,等效应变和应变率的分布。同时获得了应力状态演化的分布图,并确定了三边压缩下的不协调变形是导致叠层裂纹缺陷的主要原因。为了揭示不协调变形的特征,在数值模拟中给出了每个变量的变化及其梯度,并基于变形程度和变形速度的梯度,提出了层状裂纹缺陷的组合预测模型。随后,使用预测模型获得了在锻造中心的层状裂纹的形态和分布。计算结果和实验数据的比较表明,两者匹配良好。此外,还提出了摩擦系数对变形的影响。结果表明,减小摩擦系数是抑制叠层裂纹缺陷的有效措施。 (C)2015 Elsevier Ltd.保留所有权利。

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