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Modelling of microstracture evolution In hot forming using unified constitutive equations

机译:使用统一本构方程对热成形中的微观组织演化进行建模

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In hot metal forming processes, materials deform viscoplastically and the microstracture of materials changes dynamically (during the forming deformation) and statically (in the interval of operations or after forming processes). Techniques are required to enable the microstracture of a formed part to be predicted. In this paper, various models, developed by material scientists, are reviewed. They are used to model individual physical parameters of microstracture, such as grain size evolution in static and dynamic conditions, dislocation density accumulation and recovery, recrystallisation, dissolving rate of precipitates. Techniques have been introduced to incorporate mechanism-based microstracture parameters into a viscoplastic flow model to form a set of unified viscoplastic constitutive equations, which are implemented into FE solvers, through user defined subroutines, to simulate microstructure evolution in hot forming processes. Three examples are detailed in this paper. They are modelling of grain growth in superplastic forming, modelling of microstructure evolution in hot rolling and dissolving of precipitates in solution heat treatment (SHT) and their effects on viscoplastic flow of an Al-alloy.
机译:在热金属成形过程中,材料发生粘塑性变形,并且材料的微观结构动态地(在成形变形期间)和静态地(在操作间隔内或在成形过程之后)变化。需要技术来预测成形零件的微观结构。在本文中,回顾了材料科学家开发的各种模型。它们用于模拟微观结构的各个物理参数,例如静态和动态条件下的晶粒尺寸演变,位错密度的积累和恢复,重结晶,沉淀物的溶解速率。引入了将基于机制的微结构参数合并到粘塑性流动模型中以形成一组统一的粘塑性本构方程的技术,这些方程通过用户定义的子例程在有限元求解器中实现,以模拟热成型过程中的微观结构演化。本文详细介绍了三个示例。他们正在对超塑性成形过程中的晶粒长大进行建模,对热轧过程中的微观组织演化进行建模,并在固溶热处理(SHT)中对析出物进行溶解建模,以及它们对铝合金的粘塑性流动的影响。

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