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Strain function analysis method for void closure in the forging process of the large-sized steel ingot

机译:大型钢锭锻造过程中闭孔的应变函数分析方法

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摘要

A mathematical methodology for analyzing void closure in the forging process of steel ingot with a large size was proposed from the view of strain function. A numerical simulation of the forging process was established to describe the distribution field of compressive strain within deformed steel ingot. Then the analytic function of compressive strain distribution was given by mathematical fitting on the basis of Gaussian function (including the models without and with void). And finally the quantitative relationship between void closure and compressive strain, namely mathematical expressions of the criterion for central and non-central void closure, was presented by derivation and calculation of this function. The criterion for central and non-central void closure was verified by finite element simulation for a typical steel ingot. This new methodology gives an acute prediction in terms of elimination of void defects, where the deviation is less than 7%.
机译:从应变函数的角度出发,提出了一种分析大尺寸钢锭锻造过程中空洞封闭的数学方法。建立了锻造过程的数值模拟,以描述变形钢锭内压缩应变的分布场。然后在高斯函数的基础上,通过数学拟合给出了压应变分布的解析函数(包括有无模型和有模型的模型)。最后,通过对该函数的推导和计算,给出了孔隙封闭与压缩应变之间的定量关系,即中心孔隙封闭准则和非中心孔隙封闭准则的数学表达式。通过对典型钢锭的有限元模拟,验证了中央和非中央空隙封闭的标准。这种新方法就消除空隙缺陷(偏差小于7%)给出了敏锐的预测。

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