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Effects of PA6,6/PP ratio on the mechanical properties of short glass fiber reinforced and rubber-toughened polyamide 6,6/polypropylene blends

机译:PA6,6 / PP比对短玻璃纤维增​​强和橡胶增韧聚酰胺6,6 /聚丙烯共混物力学性能的影响

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摘要

The tensile properties and notched Charpy impact energy of injection-molded rubber-toughened polyamide 6,6/polypropylene (PA6,6/PP) blends reinforced with short glass fibers (SGF) were studied. The glass fiber content was fixed at 40 wt%. The polymer blends containing various PA6,6/PP ratios, plus a mixture of 10 wt% styrene-ethylene-butylene-styrene (SEBS) and 10 wt% maleic anhydride (MA) grafted SEBS (SEBS-g-MA), were formulated. Two types (123D and 146B) of E-glass fibers were used to examine the influences of PA6,6/PP ratio on mean fiber length and critical fiber length (or fiber-matrix interfacial adhesion) and in turn on the mechanical properties. The PA6,6/PP ratio was found to have significant effects on both the mean fiber length and the critical fiber length in the final samples, and then on the mechanical properties. It was shown that the composite strength increased while the elastic modulus decreased with increasing PA6,6/PP ratio. This observation has been explained using the variance of interfacial adhesion and fiber length with the PA 6,6/PP ratio. The tensile failure strains were higher for the glass fiber-reinforced SEBS/SEBS-g-MA toughened blends than for glass fiber-reinforced toughened PA6, 6 or PP composites. The notched Charpy impact energy of the reinforced blends at a medium (75/25) PA6,6/PP ratio was exhibited to be higher than for the reinforced rubber-toughened PA6,6 or PP composites. Consequently, it was concluded that control of the PA6,6/PP ratio would be an effective way to produce composites with optimal combination of superior overall mechanical properties.
机译:研究了用短玻璃纤维(SGF)增强的注塑橡胶增韧聚酰胺6,6 /聚丙烯(PA6,6 / PP)共混物的拉伸性能和缺口夏比冲击能。玻璃纤维含量固定为40重量%。配制了包含各种PA6,6 / PP比的聚合物共混物,再加上10 wt%的苯乙烯-乙烯-丁烯-苯乙烯(SEBS)和10 wt%的马来酸酐(MA)接枝的SEBS(SEBS-g-MA)的混合物。两种类型的电子玻璃纤维(123D和146B)用于检查PA6,6 / PP比对平均纤维长度和临界纤维长度(或纤维-基质界面粘合力)的影响,以及对机械性能的影响。发现PA6,6 / PP比对最终样品中的平均纤维长度和临界纤维长度均具有显着影响,进而对机械性能也有显着影响。结果表明,随着PA6,6 / PP比的增加,复合材料强度增加,而弹性模量下降。使用界面附着力和纤维长度随PA 6,6 / PP比的变化解释了该观察结果。玻璃纤维增​​强的SEBS / SEBS-g-MA增韧混合物的拉伸破坏应变高于玻璃纤维增​​强的PA6、6或PP复合材料。在中等(75/25)PA6,6 / PP比下,增强共混物的缺口夏比冲击能显示出比增强橡胶增韧PA6,6或PP复合材料高的缺口夏比冲击能。因此,可以得出结论,控制PA6,6 / PP比率将是生产具有优异整体机械性能的最佳组合的复合材料的有效方法。

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