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A fully coupled thermal-electrical-mechanical micromodel for multi-phase periodic thermoelectrical composite materials and devices

机译:多相周期性热电复合材料和器件的全耦合热电机械微观模型

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This paper introduces a new fully coupled micro thermal-electrical-mechanical (TEM) formulation for periodic multi-phase thermoelectric (TE) material systems and devices. The high fidelity generalized method of cells (HFGMC) micromechanical method is extended to account for the fully (three-way) coupled TEM effects including Seebeck, Peltier, and Joule heat. A special attention is directed towards the induced mechanical field which has often neglected in the literature. The three-dimensional HFGMC formulation is performed by analyzing an isolated periodic volume or a repeated unit-cell (RUC) and by subdividing it into sub-volumes (subcells). Interfacial continuity between adjacent subcells along with periodicity conditions are expressed in terms of average TEM fields and fluxes. The three TEM conservation laws are also expressed in a volume average over the subcell. A three-way coupled set of constitutive equations are used to express the thermoelectric, thermomechanical and electro-mechanical relations for each subcell. Applications are presented for the steady state solutions of the TEM field distributions in two cases. The first for a TE generator device that consists of an array of repeating RUC. The second is for multi-layered laminated composite with a repeating stack of layers including two layers reinforced with p-type and n-type inclusions. The steady-state stress distribution is shown to be a nonlinear solution to the system of coupled TEM governing equations. The new HFGMC-TEM micromodel is effective in establishing the overall (average) TEM constitutive laws for the equivalent homogenized medium along with the spatial distributions of different local fields within the RUC. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种用于周期性多相热电(TE)材料系统和设备的新型全耦合微热电机械(TEM)公式。扩展了高保真广义细胞方法(HFGMC)的微机械方法,以说明完全(三向)耦合的TEM效应,包括Seebeck,Peltier和Joule热。特别要注意的是感应力学领域,在文献中常常忽略了这一点。三维HFGMC公式是通过分析孤立的周期性体积或重复的单位细胞(RUC)并将其细分为子体积(子细胞)来执行的。相邻子电池之间的界面连续性以及周期性条件用平均TEM场和通量表示。三种TEM守恒定律还以子电池的体积平均值表示。三向耦合的本构方程组用于表示每个子电池的热电,热机械和机电关系。介绍了两种情况下TEM场分布的稳态解的应用。 TE生成器设备的第一个,它由重复的RUC数组组成。第二种是用于多层层压复合材料,其具有重复的层堆叠,包括两层用p型和n型夹杂物增强的层。稳态应力分布显示为耦合TEM控制方程组的非线性解决方案。新的HFGMC-TEM微观模型可有效地建立等效均质介质的总体(平均)TEM本构定律以及RUC中不同局部场的空间分布。 (C)2015 Elsevier Ltd.保留所有权利。

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