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The Out-of-Plane Compression Response of Woven Thermoplastic Composites: Effects of Strain Rates and Temperature

机译:编织热塑性复合材料的平面外压缩响应:应变率和温度的影响

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摘要

The dynamic mechanical response of high-performance thermoplastic composites over a wide range of strain rates is a challenging research topic for extreme environmental survivability in the field of aerospace engineering. This paper investigates the evolution of the dynamic properties of woven thermoplastic composites with strain rate and damage process at elevated temperatures. Out-of-plane dynamic-compression tests of glass-fiber (GF)- and carbon-fiber (CF)-reinforced polyphenylene sulfide (PPS) composites were performed using a split Hopkinson pressure bar (SHPB). Results showed that thermoplastic composites possess strain-rate strengthening effects and high-temperature weakening dependence. GF/PPS and CF/PPS composites had the same strain-rate sensitivity (SRS) below the threshold strain rate. The softening of the matrix at elevated temperatures decreased the modulus but had little effect on strength. Some empirical formulations, including strain-rate and temperature effects, are proposed for more accurately predicting the out-of-plane dynamic-compression behavior of thermoplastic composites. Lastly, the final failure of the specimens was examined by scanning electron microscopy (SEM) to explore potential failure mechanisms, such as fiber-bundle shear fracture at high strain rates and stretch break at elevated temperatures.
机译:高性能热塑性复合材料在广泛的应变率上的动态机械响应是航空航天工程领域的极端环境生存性的一个具有挑战性的研究课题。本文研究了升高温度下纺织热塑性复合材料的动态性能和损伤过程的演变。使用分裂的Hopkinson压力棒(SHPB)进行玻璃纤维(GF)和碳纤维(CF) - 和碳纤维(CF) - 碳纤维(CF)复合材料的平面外动态压缩试验。结果表明,热塑性复合材料具有应变率强化效应和高温弱化依赖性。 GF / PPS和CF / PPS复合材料具有低于阈值应变率的应变率灵敏度(SRS)。在升高的温度下,基质的软化降低了模量,但对强度几乎没有影响。提出了一些经验制剂,包括应变率和温度效应,用于更准确地预测热塑性复合材料的平面外动态压缩行为。最后,通过扫描电子显微镜(SEM)来检查标本的最终失效,以探讨潜在的失效机制,例如高应变速率下的纤维束剪切断裂,并在升高的温度下拉伸断裂。

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