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首页> 外文期刊>Polymer engineering and science >Ultradrawing and Ultimate Tensile Properties of Ultrahigh Molecular Weight Polyethylene Composite Fibers Filled With Functionalized Nanoalumina Fillers
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Ultradrawing and Ultimate Tensile Properties of Ultrahigh Molecular Weight Polyethylene Composite Fibers Filled With Functionalized Nanoalumina Fillers

机译:功能化纳米氧化铝填料填充超高分子量聚乙烯复合纤维的超拉伸和极限拉伸性能

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Ultradrawing and ultimate tensile properties of ultrahigh molecular weight polyethylene (UHMWPE) composite fibers were successfully improved by the addition of nanoalumina (NAL), acid treated nanoalumina (ATNAL), and/or functionalized nanoalumina (FNAL). As evidenced by FTIR and TEM analyses, maleic anhydride grafted polyethylene (PEg-MAH) molecules were successfully grafted onto ATNAL fillers. The specific surface areas of FNAL fillers reached a maximal value at 516 m(2)/g, as they were modified using an optimal weight ratio of PEg-MAH to ATNAL at 8. Achievable draw ratio (D-ra) values of UHMWPE/NAL (F(100)A(y)), UHMWPE/ATNAL (F(100)A(x%-8-y)) and/or UHMWPE/FNAL (F(100)A(x%8)FPE(y)(z)) as-prepared fibers approached a maximal value as NAL, ATNAL, and/or FNAL contents reached an optimal value at 0.1, 0.1, and 0.075 phr, respectively. The maximal D-ra values of F(100)A(x%-8)FPE(0.075)(z) as-prepared fiber specimens were significantly higher than those of F(100)A(0.1) and F(100)A(x%-8)-0.1 as-prepared fiber specimens. In which, the maximal D-ra values obtained for F(100)Ax%-8FPE(0.075)(z) as-prepared fibers reached another maximal value as FNAL fillers were modified using an optimal weight ratio of PEg-MAH to ATNAL at 8. The ultimate tensile strength value of F(100)A(2%-8)FPE(0.075)(8) drawn fiber reached 6.4 GPa, which was about 2.4 times of that of the UHMWPE drawn fibers prepared at the same optimal UHMWPE concentration and drawing condition. (C) 2015 Society of Plastics Engineers
机译:通过添加纳米氧化铝(NAL),酸处理的纳米氧化铝(ATNAL)和/或功能化的纳米氧化铝(FNAL),成功地改善了超高分子量聚乙烯(UHMWPE)复合纤维的超拉伸性能和极限拉伸性能。 FTIR和TEM分析证明,马来酸酐接枝的聚乙烯(PEg-MAH)分子已成功接枝到ATNAL填料上。 FNAL填料的比表面积在516 m(2)/ g处达到最大值,因为使用PEg-MAH与ATNAL的最佳重量比在8处进行了改性,UHMWPE /的可达到拉伸比(D-ra)值NAL(F(100)A(y)),UHMWPE / ATNAL(F(100)A(x%-8-y))和/或UHMWPE / FNAL(F(100)A(x%8)FPE(y )(z))制备的纤维达到最大值,因为NAL,ATNAL和/或FNAL含量分别达到最佳值,分别为0.1、0.1和0.075 phr。 F(100)A(x%-8)FPE(0.075)(z)制备的纤维样品的最大D-ra值显着高于F(100)A(0.1)和F(100)A (x%-8)-0.1制备的纤维样品。其中,F(100)Ax%-8FPE(0.075)(z)制备的纤维获得的最大D-ra值达到另一个最大值,因为使用PEg-MAH与ATNAL的最佳重量比修改了FNAL填料8. F(100)A(2%-8)FPE(0.075)(8)拉伸纤维的极限抗拉强度值达到6.4 GPa,约为在相同最佳UHMWPE下制备的UHMWPE拉伸纤维的2.4倍浓度和绘图条件。 (C)2015年塑料工程师学会

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