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Mechanical and friction-wear properties of two C/C composites using pre-oxidized polyacrylonitrile fibers and carbon fibers as the reinforcements

机译:两种C / C复合材料的机械和摩擦磨损性能使用预氧化的聚丙烯腈纤维和碳纤维作为增强剂

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摘要

Two preforms based on pre-oxidized polyacrylonitrile fibers (OPFs) and a Chinese version of T-300 carbon fibers (CFs) were densified to 1.7 g/cm(3) by chemical vapor infiltration. The microstructures and mechanical and friction-wear properties of the two C/C composites were investigated. Results indicate that both composites exhibit a pseudo -plastic fracture mode with similar bending strengths of 127 MPa for the CF C/C composite and 113 MPa for the OPF C/C composite. The interlaminar shear strength of the OPF C/C composite is 13.4 MPa, which is 30.26% higher than that (10.01 MPa) of the CF C/C composite. It is easier to obtain pyrocarbon with a rough lamellar structure for the OPF reinforcement than with the CF one. The OPF C/C composite always gives a more stable COF and lower wear rate than the CF-based one, regardless of the braking conditions used. When the brake pressure is 0.65 MPa and the braking speed is 20-25 m/s, the OPF C/C composite has excellent abrasive wear resistance with a coefficient of friction near 0.35 and a linear wear rate of 1.3-1.5 pim per braking procedure.
机译:通过化学蒸汽浸润将基于预氧化的聚丙烯腈纤维(OPF)和中文版T-300碳纤维(CFS)的预制件致密于1.7g / cm(3)。研究了两种C / C复合材料的微观结构和机械和机械和摩擦磨损性能。结果表明,两种复合材料表现出伪塑性断裂模式,用于CF C / C复合材料的127MPa的伪塑性断裂模式和用于OPF C / C复合材料的113MPa。 OPF C / C复合材料的层间剪切强度为13.4MPa,比CF C / C复合材料的(10.01MPa)高30.26%。通过与CF One获得具有粗糙层状结构的粗糙层状结构更容易获得Pyrocarbon。无论使用的制动条件如何,OPF C / C复合材料总始终提供比基于CF的COF的更稳定的COF和较低的磨损率。当制动压力为0.65MPa并且制动速度为20-25M / s时,OPF C / C复合材料具有优异的磨料耐磨性,摩擦系数近0.35系数,线性磨损率为1.3-1.5 PIM,每个制动过程。

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