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首页> 外文期刊>Journal of Materials Science >Effect of UV exposure on the microstructure and mechanical properties of long fiber thermoplastic (LFT) composites
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Effect of UV exposure on the microstructure and mechanical properties of long fiber thermoplastic (LFT) composites

机译:紫外线对长纤维热塑性塑料(LFT)复合材料的微观结构和力学性能的影响

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In this work, the effect of ultraviolet (UV) exposure on the microstructure and dynamic Young’s modulus of polypropylene (PP)/21 vol.% E-glass LFT and neat PP was investigated. Microscopic observations revealed that the damage due to UV was confined to the surface region only in the form of surface cracking and exposure of fibers to the surface in the case of long fiber thermoplastic (LFT) and surface cracking in the case of neat PP. Fourier transform infrared spectroscopy showed that the crystallinity of PP in the damaged layer increased, both in neat PP as well as in LFT, with exposure time. This is due to chemicrystallization, which involves rearrangement of amorphous broken polymer chains into crystalline form. Crystallinity of PP in the damaged layer in LFT increased at a higher rate as compared to that in neat PP. Results of nanoindentation showed that the Young’s modulus of the PP in the damaged layer increased, with UV exposure time; the rate of modulus increase being higher in the case of LFT than in neat PP. Although the local Young’s modulus of the degraded layer increased, the dynamic Young’s modulus of the overall composite showed a decrease with UV exposure time.
机译:在这项工作中,研究了紫外线(UV)暴露对聚丙烯(PP)/ 21体积%电子玻璃LFT和纯PP的微观结构和动态杨氏模量的影响。显微镜观察表明,由于紫外线造成的损害仅以表面开裂的形式限制在表面区域,而在长纤维热塑性塑料(LFT)的情况下,纤维暴露于表面,而在纯聚丙烯的情况下,表面开裂。傅立叶变换红外光谱显示,在纯聚丙烯和LFT中,随着暴露时间的增加,受损层中PP的结晶度均增加。这是由于化学结晶,这涉及将无定形断裂的聚合物链重新排列成结晶形式。与纯聚丙烯相比,LFT中受损层中PP的结晶度以更高的速率增加。纳米压痕的结果表明,随着紫外线暴露时间的增加,受损层中聚丙烯的杨氏模量增加。 LFT的模量增加率比纯PP高。尽管降解层的局部杨氏模量增加了,但是整个复合材料的动态杨氏模量却随着紫外线暴露时间的减少而降低。

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