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Inorganic Nanoparticle-Modified Poly(Phenylene Sulphide)/ Carbon Fiber Laminates: Thermomechanical Behaviour

机译:无机纳米粒子改性的聚苯硫醚/碳纤维层压板:热力学行为

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摘要

Carbon fiber (CF)-reinforced high-temperature thermoplastics such as poly(phenylene sulphide) (PPS) are widely used in structural composites for aerospace and automotive applications. The porosity of CF-reinforced polymers is a very important topic for practical applications since there is a direct correlation between void content and mechanical properties. In this study, inorganic fullerene-like tungsten disulphide (IF-WS) lubricant nanoparticles were used to manufacture PPS/IF-WS/CF laminates via melt-blending and hot-press processing, and the effect of IF-WS loading on the quality, thermal and mechanical behaviour of the hybrid composites was investigated. The addition of IF-WS improved fiber impregnation, resulting in lower degree of porosityandincreased delamination resistance, compression and flexural properties; their reinforcement effect was greater at temperatures above the glass transition (T). IF-WS contents higher than 0.5 wt % increased T and the heat deflection temperature while reduced the coefficient of thermal expansion. The multiscale laminates exhibited higher ignition point and notably reduced peak heat release rate compared to PPS/CF. The coexistence of micro- and nano-scale fillers resulted in synergistic effects that enhanced the stiffness, strength, thermal conductivity and flame retardancy of the matrix. The results presented herein demonstrate that the IF-WS are very promising nanofillers to improve the thermomechanical properties of conventional thermoplastic/CF composites.
机译:碳纤维(CF)增强的高温热塑性塑料,例如聚苯硫醚(PPS),广泛用于航空航天和汽车应用的结构复合材料。 CF增强聚合物的孔隙率是实际应用中非常重要的主题,因为空隙含量和机械性能之间存在直接的关系。在这项研究中,使用无机富勒烯样二硫化钨(IF-WS)润滑剂纳米颗粒通过熔融共混和热压工艺来制造PPS / IF-WS / CF层压板,以及IF-WS负载量对质量的影响,研究了杂化复合材料的热力学性能。 IF-WS的添加改善了纤维的浸渍性,从而降低了孔隙度,并提高了抗分层性,抗压和抗弯性能;在高于玻璃化转变温度(T)的温度下,它们的增强作用更大。 IF-WS含量高于0.5重量%时,T和热变形温度增加,同时热膨胀系数降低。与PPS / CF相比,该多尺度层压板表现出更高的着火点并显着降低了峰值放热速率。微米级和纳米级填料的共存导致协同效应,增强了基质的刚度,强度,导热性和阻燃性。本文呈现的结果表明,IF-WS是非常有前途的纳米填料,可以改善常规热塑性/ CF复合材料的热机械性能。

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