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首页> 外文期刊>ZAMP: Zeitschrift fur Angewandte Mathematik und Physik: = Journal of Applied Mathematics and Physics: = Journal de Mathematiques et de Physique Appliquees >The microscopic conduction fields in the multi-coated sphere composites under the imposed macroscopic gradient and flux fields
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The microscopic conduction fields in the multi-coated sphere composites under the imposed macroscopic gradient and flux fields

机译:施加的宏观梯度和助焊场下的多涂层球复合材料中的微观传导场

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摘要

Explicit analytical expressions of the microscopic conduction (gradient or flux) fields in the d-dimensional (d=2,3) multi-coated sphere assemblages under the imposed macroscopic gradient and flux fields are presented. Limiting procedures are developed to derive the results for most important specific composites, which include the inclusion composites with highly conducting imperfect interface, lowly conducting (with Kapitza resistance) imperfect interface, general imperfect interface, and those with anisotropic coatings. When the volume proportion of the outermost shells of the assemblages approaches 1, the simplified results for the dilute suspensions of the complex spherically symmetric inclusions in a major matrix are deduced.
机译:提出了D维(D = 2,3)在施加的宏观梯度和通量场下的D维(D = 2,3)多涂层球组件中的微观传导(梯度或通量)场的显式分析表达。 开发限制程序以导出最重要的特定复合材料的结果,其包括具有高度导通不完全界面的包含复合材料,差分(随着Kapitza电阻)不完美界面,一般不完全界面以及具有各向异性涂层的界面。 当组件的最外壳的体积比例接近1时,推导出主要基质中复合球对称夹杂物的稀释悬浮液的简化结果。

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