Abstract The results of physical modeling of plastic forming using a torsional plastometer are used to analyze the effect of the t'/> Simulation and prediction of the development of dynamic recrystallization during the deformation of low-alloy low-carbon steel blanks
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Simulation and prediction of the development of dynamic recrystallization during the deformation of low-alloy low-carbon steel blanks

机译:低合金低碳钢坯变形动态再结晶发展的仿真与预测

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Abstract The results of physical modeling of plastic forming using a torsional plastometer are used to analyze the effect of the temperature–deformation parameters on the development of dynamic recrystallization in a low-alloy low-carbon steel. A technique is proposed to predict the structure formation in zones with a heterogeneous state of stress, and it is based on the results of numerical simulation and physical modeling. This technique can be applied to optimize the process of plastic forming and the subsequent finishing treatment of complex-shape parts. ]]>
机译:<![CDATA [<摘要ID =“ABS1”语言=“EN”> <标题>抽象 ara>使用扭转尺寸塑料塑料形成的物理建模结果分析温度的效果 - 低合金低碳钢动态再结晶发展的形式参数。 提出了一种技术来预测具有异质应力状态的区域中的结构形成,并且基于数值模拟和物理建模的结果。 该技术可用于优化塑性成型和随后的复杂形状零件的整理处理。 ]]>

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