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Effects of UV Light on Mechanical Properties of Carbon Fiber Reinforced PPS Thermoplastic Composites

机译:UV光对碳纤维增强PPS热塑性复合材料力学性能的影响

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The recent attention in the applications of the fiber reinforced thermoplastic composite have raised some concerns because of the ability and performance of the fiber reinforced thermoplastic composite after long-term exposures to environmental weathering (e.g., UV radiation, moisture, and oxygen). This weathering can be very destructive to the thermoplastic polymers; hence, a systematic study of the UV radiation effects on the properties of fiber-reinforced thermoplastic composite is crucial for industrial applications. The major objective of the project was to study the correlation between thermoplastic fabrication parameters and the final properties of composites. In this study, carbon fiber (CF) reinforced polyphenylene sulfide (PPS) thermoplastic composites were manufac- tured using high temperature press after optimizing the parameters. Subsequently, the effects of long-term UV exposures on the thermal and mechanical properties of CF/PPS thermoplastic composites were investigated in detail. The test results showed that the correlation between the processing parameters and the physical properties of the laminate composites were in all good agreements. The test results also revealed a significant decrease in the glass transition temperature, as well as storage modulus, and tensile strengths. Furthermore, short (200 hrs) and long (300 hrs) term UV exposures changed various thermal and mechanical properties of the thermoplastic PPS composites. This study can provide some preliminary knowledge to engineers and scientists in the field and develop new set of structural composites.
机译:最近在纤维增强热塑性复合材料的应用中的关注提出了一些担忧,因为纤维增强热塑性复合材料的长期暴露于环境风化(例如,紫外线辐射,水分和氧气)的能力和性能。这种风化可以非常破坏于热塑性聚合物;因此,对紫外线辐射效应对纤维增强热塑性复合材料性能的系统研究对于工业应用至关重要。该项目的主要目标是研究热塑性制造参数与复合材料的最终性质之间的相关性。在本研究中,在优化参数之后,使用高温压力制造碳纤维(CF)增强聚苯硫醚(PPS)热塑性复合材料。随后,详细研究了长期UV暴露对CF / PPS热塑性复合材料的热和力学性能的影响。测试结果表明,加工参数与层压复合材料的物理性质之间的相关性在所有良好的协议中。测试结果还显示玻璃化转变温度以及储存模量和拉伸强度显着降低。此外,短(200小时)和长(300小时)术语紫外线暴露改变了热塑性PPS复合材料的各种热和机械性能。本研究可以向场工程师和科学家提供一些初步知识,并开发新的结构复合材料。

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