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Thermal properties of autoclave and out-of-autoclave carbon fiber-epoxy composites with different fiber weave configurations

机译:具有不同纤维编织配置的高压釜和高压釜外碳纤维 - 环氧复合材料的热性能

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摘要

Thermal expansion, specific heat, diffusivity, and conductivity of carbon fiber-epoxy composites were studied using autoclave and out-of-autoclave prepregs with three different fabric weaves including unidirectional, eight-harness satin, and plain weave. For this purpose, light flash analysis was utilized where the implications of using anisotropic materials were studied. Results indicated that density, thermal expansion, conductivity, and diffusivity were strongly influenced by the fiber configuration of the sample. This phenomenon was attributed to the difference in fiber volume fraction induced by the different weaves of the fabric. Nevertheless, specific heat was similar for all the samples regardless of fabric type or resin formulation. Finally, thermal properties of tetrafluoroethylene release film were presented to analyze the tool-part heat transfer during manufacturing. This release film showed thermal conductivity three times lower than carbon fiber-epoxy samples indicating that the film could be an important contributor to thermal lag between tool and part.
机译:使用高压釜和含有三种不同织物编织的高压釜和外釜预浸料,包括单向,八线缎和普通编织,研究了碳纤维 - 环氧复合材料的热膨胀,碳纤维 - 环氧复合材料的导电性。为此目的,利用了光闪频分析,其中研究了使用各向异性材料的影响。结果表明,密度,热膨胀,导电性和扩散性受到样品的纤维构型的强烈影响。这种现象归因于织物的不同编织诱导的纤维体积分数的差异。然而,无论织物类型还是树脂配方,所有样品都是相似的。最后,提出了四氟乙烯剥离膜的热性质以分析制造过程中的工具部件传热。该释放膜显示出比碳纤维 - 环氧样品低三倍的导热率,表明该薄膜可以是工具和部分之间的热滞后的重要贡献者。

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