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Effect of Thermal Cycling on Carbon Fiber-Reinforced PPS Composites

机译:热循环对碳纤维增强PPS复合材料的影响

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Calorimetry,coefficient of thermal expansion(CTE),and tensile modulus were recorded to investigate the effect of thermal cycling on polyphenylene sulfides(PPS)carbon fiber composites.Thermal cycling at higher temperatures increased the degree of crystallinity of PPS,as indicated by increasing heat of melting.CTE measurements during thermal cycling were used to study the anisotropy of the composites in directions parallel and transverse to the fiber orientation.It was noted that increasing crystallinity enhanced the tensile modulus of unidirectional composites,while reducing the tensile modulus of quasi-isotropic composites.The latter reduction may be due to internal damage or interlaminar slippage associated with the residual thermal stresses caused by thermal mismatch between multiply oriented plies.
机译:记录了量热法,热膨胀系数(CTE)和拉伸模量,以研究热循环对聚苯硫醚(PPS)碳纤维复合材料的影响。高温下的热循环增加了PPS的结晶度,如增加的热量所示使用热循环过程中的CTE测量来研究复合材料在平行于和横向于纤维取向的方向上的各向异性。注意到结晶度的增加增强了单向复合材料的拉伸模量,同时降低了准各向同性的拉伸模量后一种减少可能是由于内部损坏或层间滑移,以及与多层定向层之间热失配所引起的残余热应力有关。

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