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An efficient method of analysis of heat transfer during plane strain upsetting of a viscoplastic strip

机译:一种高效分析粘性条带镦粗镦粗的传热分析方法

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摘要

A solution for the transient heat transfer during plane strain upsetting of a viscoplastic strip has been developed using a Lagrangian coordinate system and the Green's function available in the literature. A general approximate solution for stress and velocity found elsewhere has been used. In contrast to conventional viscoplastic models adopted in theoretical analyses of metal forming processes, the model considered in the present paper includes a saturation stress. This model used in the conjunction with the maximum friction law predicts the localization of plastic deformation in the vicinity of the friction surface. In turn, localized plastic deformation and temperature are responsible for the generation of a very narrow layer with drastically modified microstructure near the friction surface. The appearance of such layers is reported in numerous experimental works.
机译:使用Lagrangian坐标系和文献中的绿色功能,开发了用于粘液条带镦粗期间的瞬态传热期间的瞬态传热。 已经使用了其他地方发现的压力和速度的一般近似解。 与金属成形过程中的理论分析中采用的常规粘胶模型相反,本文中考虑的模型包括饱和应力。 该模型用于最大摩擦法的结合预测摩擦表面附近的塑性变形定位。 反过来,局部塑性变形和温度负责产生非常窄的层,在摩擦表面附近具有众所周置的修饰的微观结构。 这些层的外观报告在许多实验工程中。

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