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Prediction of the Shape Changes and Microstructural Evolution in an Eulerian Analysis of Steady State Forming Process

机译:稳态形成过程的欧拉分析预测形状变化和微结构演变

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Main objectives of the forming processes are to form the products having the shape and mechanical properties as designed. A forming process model should be able to predict the shape changes and the mechanical properties changes of a work piece. To effectively predict the shape changes in steady state forming processes, an Eulerian analysis supplemented with a free surface correction algorithm and a stream line technique is addressed. Since the mechanical properties are related directly to the microstructures of the work piece, the prediction of microstructural changes must be included in the process model. In this work, anisotropy from deformation texture and deterioration of mechanical properties due to growth of micro voids are directly coupled into the virtual work expressions for the mass and momentum balances. Applications of the proposed model to the plate rolling, hydrostatic clad extrusion and shape rolling are given and the results are discussed in detail.
机译:成型过程的主要目标是成型具有设计和形状的机械性能的产品。成形过程模型应该能够预测工件的形状变化和机械性能变化。为了有效地预测稳态形成过程中的形状变化,提出了一种采用自由表面校正算法和流线技术的欧拉分析方法。由于机械性能与工件的微观结构直接相关,因此微观模型变化的预测必须包括在过程模型中。在这项工作中,来自变形织构的各向异性和由于微孔洞的增长而导致的机械性能下降直接耦合到了质量和动量平衡的虚拟功表达式中。给出了该模型在板轧,静液压复合挤压和型材轧制中的应用,并对结果进行了详细讨论。

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