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An exact semi-analytic solution for residual stresses and strains within a thin hollow disc of pressure-sensitive material subject to thermal loading

机译:一个精确的半解析解决方案,用于承受热负荷的压敏材料薄空心盘中的残余应力和应变

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摘要

There is considerable current interest in the development of constitutive equations for pressuredependent plastic materials. In particular, in contrast to classical plasticity there is no commonly accepted relation to connect stress and strain or strain rate for such materials. Analytic and semi-analytic solutions are convenient to compare qualitative features of boundary value problems solved for different models. Such comparative studies can be useful to choose this or that model for specific applications. Analytic and semianalytic solutions are also necessary to verify numerical codes. In the present paper, a new semi-analytic solution for a thin hollow disc subject to thermal loading is developed. A numerical method is only necessary to solve transcendental equations. The constitutive equations for connecting the plastic portion of the strain rate tensor and the stress tensor consist of the Drucker-Prager yield criterion and its associated flow rule. Therefore, the main distinguished feature of the solution is that the material is plastically compressible.
机译:当前,对于与压力相关的塑料材料的本构方程的开发引起了相当大的兴趣。特别地,与经典的可塑性相反,对于这种材料,没有连接应力和应变或应变率的普遍接受的关系。解析和半解析解决方案方便地比较针对不同模型求解的边值问题的定性特征。这种比较研究对于为特定应用选择该模型或该模型可能是有用的。解析和半解析解对于验证数字代码也是必需的。在本文中,开发了一种新的半解析方法,用于薄空心盘承受热负荷。数值方法仅是求解先验方程所必需的。用于连接应变率张量的塑性部分和应力张量的本构方程由Drucker-Prager屈服准则及其相关的流动规则组成。因此,该解决方案的主要显着特征是该材料是可塑性压缩的。

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