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首页> 外文期刊>Journal of Composite Materials >Onsager's reciprocal relation and effective coefficients of transverse coupled hygrothermal diffusion in fiber reinforced composites
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Onsager's reciprocal relation and effective coefficients of transverse coupled hygrothermal diffusion in fiber reinforced composites

机译:纤维增强复合材料中Onsager的倒数关系和横向耦合湿热扩散的有效系数

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摘要

A method for the determination of the effective constant coefficients of the transverse coupled hygrothermal diffusion is presented. Onsager's reciprocal relation [2] is utilized to reduce the number of the diffusivity coefficients of constitutive materials from four to two. The so called cross coupling diffusivities are expressed in terms of the thermal conductivity and the coefficient of diffusion. The representative volume element of the composite is analyzed by applying a two-dimensional finite element model. It is assumed that the composite is undamaged and there is no resistance in diffusion and heat conduction at the interface of the fiber and the matrix. The method is tested numerically with a set of different cases. The coupling affects most clearly to the heat flux in the tests. The average coupled heat flux is significantly greater than the uncoupled heat flux.
机译:提出了一种确定横向耦合湿热扩散有效常数系数的方法。利用Onsager的倒数关系[2]将本构材料的扩散系数从4个减少到2个。所谓的交叉耦合扩散率用热导率和扩散系数表示。通过应用二维有限元模型分析复合材料的代表性体积元素。假定该复合材料没有损坏,并且在纤维和基体的界面处没有扩散和热传导阻力。在一组不同的情况下对该方法进行了数值测试。在测试中,耦合对热通量的影响最为明显。平均耦合热通量显着大于非耦合热通量。

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