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Induction heating of carbon fiber composites: Investigation of electrical and thermal properties

机译:碳纤维复合材料的感应加热:电气和热性能的研究

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摘要

Carbon fiber reinforced plastics, CFRP, are attractive materials not only because of their strength and stiffness but also because of their electrical conductivity and high thermal conductivity and diffusivity. One application where induction heating of CFRP is particularly interesting is tools for fast thermal cycling, beneficial in many industrial processes, for example in composite manufacturing. The electrical properties make it possible to heat with induction and the high thermal conductivity allows fast heat equalization. In order to control inducting heating of CFRP it is desirable to know the electrical and thermal properties of the composite. This work presents developed experimental methods that are used in an investigation of how the thermal and electrical properties of CFRP structures are affected by the fiber properties and composite structure. The experiments and simulations show that fiber type and fiber volume fraction are of great importance for the electrical and thermal properties. The relation between fiber volume fraction and equivalent resistivity is nonlinear and the experiments indicate that a fiber volume fraction exceeding 60% is necessary to achieve a fairly isotropic resistivity and uniform induction heating pattern.
机译:碳纤维增强塑料CFRP不仅是有吸引力的材料,不仅是因为它们的强度和刚度,而且因为它们的电导率和高导热性和扩散性。一种应用CFRP的感应加热特别有趣的是用于快速热循环的工具,在许多工业过程中有益,例如复合制造。电性能使得可以用诱导和高导热率加热,允许快速加热均衡。为了控制CFRP的电感加热,希望了解复合材料的电气和热性质。该工作提出了开发的实验方法,用于研究CFRP结构的热和电性能如何受纤维性能和复合结构的影响。实验和模拟表明,纤维型和纤维体积分数对于电气和热性能非常重要。纤维体积分数和等效电阻率之间的关系是非线性的,并且实验表明,超过60%的纤维体积分数是达到相当各向同性电阻率和均匀的感应加热模式所必需的。

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