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Influence of Fiber Volume Content on Thermal Conductivity in Transverse and Fiber Direction of Carbon Fiber-Reinforced Epoxy Laminates

机译:纤维体积含量对碳纤维增强环氧层合板横向和纤维方向导热系数的影响

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摘要

Thermal conductivity is an important material property for thermo-mechanical calculations, as mechanical properties strongly depend on the temperature and heat distribution in the manufactured parts. Although several suggestions for approximation formulae have been made, existing experimental data are rare and are not comparable due to different measurement methods. In addition, scarcely has the thermal conductivity in both the fiber direction and transverse direction been studied. The aim of the current research is to show the influence of carbon fiber volume content on the thermal conductivity of laminates. The values are then used to verify the micromechanical models used in the literature. A strong influence on the thermal conductivity could be determined. For the transverse thermal conductivity, the correlation was exponential; for the conductivity in the fiber direction, a linear correlation was found.
机译:导热系数是热机械计算的重要材料属性,因为机械属性强烈取决于制造零件中的温度和热分布。尽管已经提出了一些有关近似公式的建议,但是由于不同的测量方法,现有的实验数据很少,而且不可比。另外,几乎没有研究纤维方向和横向的热导率。当前研究的目的是显示碳纤维体积含量对层压板导热率的影响。然后将这些值用于验证文献中使用的微机械模型。可以确定对热导率的强烈影响。对于横向热导率,相关系数是指数关系。对于纤维方向的电导率,发现线性相关。

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