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Thermo-chemo-mechanical effective properties for homogeneous and heterogeneous n-phase mixtures with application to curing

机译:热化疗机械有效性能,用于均匀和非均相的N相混合物用施用来固化

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Our work presents an extension of a composite sphere model to temperature-dependent elastic effects accompanied by curing. Homogenization of a representative unit cell (micro-RVE) on the heterogeneous microscale which accounts for thermo-chemo-mechanical coupling with linear elasticity yields volumetric effective properties. Two conceptions are considered: Firstly, a homogeneous mixture with n-phases is assumed. Secondly, a geometric arrangement on the microscale is represented by the n-layered composite sphere model. In a numerical study for a 3-phase matrix it is demonstrated that the effective properties lie within certain bounds.
机译:我们的作品展示了复合球模型的延伸,伴随着固化的温度依赖的弹性效果。代表性单位细胞(微rve)对非均相微尺度的均质化,其考虑了与线性弹性的热化学机械耦合产生的容积有效性。考虑了两个概念:首先,假设具有n相的均匀混合物。其次,微尺度上的几何布置由n层复合球模型表示。在三相矩阵的数值研究中,证明了有效性质位于某些范围内。

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