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A criterion for void closure in large ingots during hot forging

机译:热锻过程中大型铸锭空洞封闭的准则

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A quantitative investigation of the mesomechanism of void closure in large ingots during hot forging is undertaken in the present study. The constitutive relation of the void-free matrix is assumed to obey the Norton power law. A cell model which includes matrix and void is employed and a Ritz procedure is developed to study the volumetric strain-rate of the void. On the basis of a large number of numerical computations, a criterion for void closure in large ingots during hot forging is proposed. In addition, the significant effects of the Norton exponent, the remote stress triaxiality and the remote effective strain on void closure are revealed: (1) the volumetric strain-rate of the void increases monotonically as the stress triaxiality level and the Norton exponent of the material increase, (2) the remote effective strain required for void closure decreases as the stress triaxiality level and the Norton exponent increase and (3) the void becomes unstable and the collapse rate decreases at the final stages of void closure. With the criterion for void closure, process design and optimization in terms of elimination of voids in large ingots will be convenient since the criterion can be easily applied in CAE analysis.
机译:在本研究中,进行了对大锭热锻造过程中空隙封闭的介观机理的定量研究。假定无空隙矩阵的本构关系服从诺顿幂定律。使用包含基质和空隙的单元模型,并开发了一种Ritz程序来研究空隙的体积应变率。在大量数值计算的基础上,提出了热锻过程中大型铸锭空洞封闭的判据。此外,还揭示了诺顿指数,远程应力三轴性和远程有效应变对空隙封闭的显着影响:(1)空隙的体积应变率随应力三轴性水平和诺顿指数的增加而单调增加。随着材料的增加,(2)孔隙封闭所需的远距离有效应变随着应力三轴性水平和诺顿指数的增加而减小;(3)孔隙变得不稳定,并且在孔隙封闭的最后阶段坍塌率降低。利用空隙封闭的标准,就消除大锭中的空隙而言,工艺设计和优化将很方便,因为该标准可以轻松地应用于CAE分析中。

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