Thermal conductive behavior of zirconium boride coated by nanoalumina
with different mass proportions in epoxy composites |
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Authors: | Yicheng Wu Yannan He Zhiqiang Yu and Xiaoyan Liu |
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Institution: | Department of Materials Science, Fudan University, 200433 Shanghai, China |
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Abstract: | The thermal conductive behavior of Zirconium diboride(Zr B_2)coated with different proportions nanoalumina(Al_2O_3)in epoxy composites was investigated by the laser flash experimental and finite element analysis(FEA)methods.The coated Zr B_2composite particles were categorized into the 3-1,3-2,3-3 and 3-4 systems,which corresponded to four different mass ratios of Zr B_2particles to Al_2O_3particles,respectively.It could be found that the coated Zr B_2composite particles were effective for increasing the thermal conductivity of the filled epoxy composites due to more effective formation of the conductive chain structure in the composites compared to the single-phase particles.In comparison,the system of 3-3 showed the most positive effect on improving the thermal conductive performance of epoxy composites.For composites with a 7 vol%of Zr B_2/Al_2O_3composite particles of 3-3 system,its thermal conductivity was 0.65 W m~(-1)K~(-1),increased by 20%and 79%relative to single-filled composites of Zr B_2and Al_2O_3with same filled content,respectively.The predicted thermal conductive results of Al_2O_3coated Zr B_2particles in epoxy matrix obtained by finite element analysis were in reasonable agreement with the experimental results. |
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Keywords: | Alumina ceramic coating Epoxy resin composites Zirconium diboride Thermal conductivity Finite element analysis (FEA) |
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