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Modelling Semi-Solid Behaviour and Brittle Temperature Range

机译:模拟半固态行为和脆性温度范围

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In this paper, a new elastic viscoplastic micromechanical modelling is proposed to represent the semi-solid behaviour and predict the ductile-brittle transition of the C38LTT near the solidus. It is based on a viscoplastic modelling previously presented in [1]. The originality of the new model comes from three main enhancements: the transition between the solid state and the semi-solid state was included meaning that the material properties were taken temperature-dependent, the elastic properties was taken into account similarly as [2] and the evolution of the internal variable describing the degree of agglomeration of the solid phase was enhanced. The model was implemented in the commercial software FORGE©. Tensile tests representing the experimental thermal conditions and obtained using a GLEEBLE© machine were simulated. The comparison of the predicted and experimental results shows that, for the first time to our knowledge, the three steps of the load-displacement response and ductile-brittle transition were successfully described.
机译:在本文中,提出了一种新的弹性粘塑性微力学模型来表示半固态行为,并预测C38LTT在固相线附近的延性-脆性转变。它基于先前在[1]中提出的粘塑性模型。新模型的独创性来自三个主要方面:包括固态和半固态之间的过渡,这意味着材料特性取决于温度,弹性特性的考虑与[2]相似。描述固相团聚程度的内部变量的演化得到了增强。该模型是在商业软件FORGE©中实现的。模拟了代表实验热条件的拉伸试验,并使用GLEEBLE©机器进行了拉伸试验。预测结果与实验结果的比较表明,就我们所知,这是首次成功地描述了载荷-位移响应和延性-脆性转变的三个步骤。

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