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Electrical and mechanical properties of granular-fibrous carbon-carbon composites with recycled carbon fibres

机译:颗粒纤维碳 - 碳复合材料的电气和力学性能与再生碳纤维

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In the following study, the electrical and mechanical properties of granular-fibrous carbon-carbon composites with short recycled carbon fibres have been investigated. The examined composites contained from 0 to 12 wt% of three types of recycled carbon fibres that differ in length. The conducted study has proven that it is not the type of applied fibre, but rather the resultant porosity of composites that exerts the predominant influence on the electrical resistivity and mechanical properties of the tested materials. The curve fitting revealed mathematical formulas correlating the studied properties with the apparent density of the composite samples. Owing to the addition of the shortest carbon fibres, the mechanical and electrical properties were significantly improved (50.14% and 24.06% increase in modulus of elasticity and flexural strength respectively for the sample with 12 wt% of the shortest fibres). A 21.39% decline in the resistivity (rho = 161.26 mu Omega.m) of the composite containing 4% of shortest fibres was noted in comparison with the reference sample. Unlike powdered fibres, the addition of longer fibres caused an increase in porosity and deterioration of microstructure, which resulted in a significant decline in the key properties of the investigated composites.
机译:在以下研究中,研究了具有短再生碳纤维的粒状纤维碳 - 碳复合材料的电气和力学性能。所检查的复合材料含有0至12wt%的三种类型的再循环碳纤维,其长度不同。所进行的研究证明,它不是所施加纤维的类型,而是施加对测试材料的电阻率和机械性能的主要影响的复合材料的所得孔隙率。曲线拟合揭示了与复合样品的表观密度相关的数学公式。由于添加最短的碳纤维,分别为具有12wt%最短纤维的样品的机械和电性能显着提高(50.14%和24.06%,弹性模量和弯曲强度增加)。与参考样品相比,注意到含有4%最短纤维的复合材料的电阻率(Rho =161.26μm)的21.39%下降。与粉末纤维不同,添加更长的纤维导致微观结构的孔隙率和劣化增加,导致研究复合材料的关键特性显着下降。

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