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- W2185025071 abstract "In this article, the resistance based unit cell models are developed to estimate the effective thermal conductivity of the two-phase materials including the effect of various inclusions. The algebraic equations are derived using unit cell based isotherm approach for two dimensional spatially periodic medium. The geometry of the medium is considered as a matrix of touching and non-touching in-line square, octagon and hexagon cylinders. The models are used to predict the thermal conductivity of numerous two-phase materials including the influence of primary and secondary parameters (maximum conductivity ratio of 1000, concentration ranging between 0 and 1 and contact ratio varying from 0 to 1). The contact ratio is deterministic parameter when conductivity ratio is high. The concentration is deterministic parameter when conductivity ratio approaching to one. For lower conductivity ratios (α 1)." @default.
- W2185025071 created "2016-06-24" @default.
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- W2185025071 date "2010-01-01" @default.
- W2185025071 modified "2023-09-27" @default.
- W2185025071 title "INFLUENCE OF PRIMARY AND SECONDARY PARAMETERS ON THERMAL CONDUCTIVITY MODELING FOR TWO PHASE MATERIALS" @default.
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