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首页> 外文期刊>Fibers and Polymers >Improvement of Interlaminar Fracture Toughness in Glass Fiber Reinforced Plastic Laminates with Inorganic Nanofiber Sheet Interleaf
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Improvement of Interlaminar Fracture Toughness in Glass Fiber Reinforced Plastic Laminates with Inorganic Nanofiber Sheet Interleaf

机译:玻璃纤维增强塑料层压板中的层间骨折韧性的改进 - 无机纳米纤维片

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The present study developed a new type of nanofibrous structure-TiO2 nanofiber sheets (TNFS) to increase the interlaminar fracture toughness of glass fiber reinforced polymer (GFRP) laminates. SEM was employed to characterize the nanofibers before and after calcination. In order to quantify TNFS, the thickness and the crevice area of TNFS were analyzed, the results showed that the thickness and the proportion of crevice area were increased with the increase of TNFS contents. Mode I and Mode II interlaminar fracture toughness were investigated for GFRP laminates toughened by different mass fraction of TNFS. The highest Mode I fracture toughness value achieved by inserting 5 wt.% TNFS in the interleaf. G(Ic) value was 74.35 % higher than those of base GFRP laminates. Meanwhile, with 6 wt.% addition of TNFS, the GFRP laminates showed the highest Mode II fracture toughness, which is 60.76 % higher than those of base GFRP laminates. The improvement mechanism of toughness was illustrated by the fracture surface analysis of TNFS interlayered laminates.
机译:本研究开发了一种新型纳米纤维结构-TiO2纳米纤维片(TNF),以增加玻璃纤维增​​强聚合物(GFRP)层压板的层间骨折韧性。使用SEM在煅烧之前和之后表征纳米纤维。为了定量TNFS,分析TNF的厚度和缝隙区域,结果表明,随着TNFS含量的增加,缝隙区域的厚度和比例增加。通过不同的TNF质量分数对GFRP层压材料研究了模式I和模式II层间断裂韧性。最高模式I通过插入5重量%TNF来实现的最高模式I断裂韧性值。 G(IC)值高于基础GFRP层压板的74.35%。同时,6重量%。%添加TNFS,GFRP层压板显示出最高模式II断裂韧性,比碱GFRP层压板高60.76%。通过TNFS层间层叠层的断裂表面分析说明了韧性的改善机理。

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