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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Fracture toughness of nylon-6 blends with maleated rubbers
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Fracture toughness of nylon-6 blends with maleated rubbers

机译:尼龙6与马来酸化橡胶共混物的断裂韧性

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The fracture toughness of blends of nylon-6 with maleated ethylene-propylene rubber and maleated styrene/hydrogenated butadiene/styrene triblock copolymer was investigated with a single-edge-notched three-point-bending instrumented Dynatup test. The blends for which the rubber particle size was less than 0.7 mum fractured in a ductile manner over the whole range of ligament lengths, whereas the blends with particles larger than 0.7 mum showed a ductile-to-brittle transition with the ligament length. In this regime, ductile fracture was observed for specimens with short ligaments, whereas brittle fracture was seen for those with long ligaments. The ductile fracture behavior was analyzed with the essential-work-of-fracture model, whereas linear elastic fracture mechanics techniques were used to analyze the brittle fracture behavior. The fact that the ductile fracture energy was larger for the blends with the styrene/hydrogenated butadiene/styrene triblock copolymer than for those with ethylene-propylene rubber was due to the larger dissipative energy density of the blends based on the styrene/hydrogenated butadiene/styrene triblock copolymer. Both the critical strain energy release rate (G(IC)) and the plane-strain critical stress intensity factor (K-IC) increased as the rubber particle size decreased for both blend systems. The G(IC) and K-IC parameters had similar values, regardless of the rubber type, when the rubber particle size was fixed. The transition ligament length was near the size criterion for plane-strain conditions for both blend systems. (C) 2004 Wiley Periodicals, Inc.
机译:用单边缘缺口三点弯曲的Dynatup试验研究了尼龙-6与马来酸乙烯-丙烯橡胶和马来酸苯乙烯/氢化丁二烯/苯乙烯三嵌段共聚物的共混物的断裂韧性。橡胶粒度小于0.7微米的共混物在整个韧带长度范围内以延性方式断裂,而橡胶颗粒大于0.7微米的共混物则随着韧带长度发生延展性至脆性转变。在这种情况下,观察到韧带短的标本为韧性断裂,而韧带长的标本为脆性断裂。用基本断裂功模型分析了韧性断裂行为,而采用线性弹性断裂力学技术分析了脆性断裂行为。苯乙烯/氢化丁二烯/苯乙烯三嵌段共聚物的共混物的延性断裂能比乙烯-丙烯橡胶共混物的延性断裂能大的原因是由于基于苯乙烯/氢化丁二烯/苯乙烯的共混物的耗散能量密度更大三嵌段共聚物。随着两种混合体系橡胶颗粒尺寸的减小,临界应变能释放速率(G(IC))和平面应变临界应力强度因子(K-IC)均增加。固定橡胶粒度时,无论橡胶类型如何,G(IC)和K-IC参数都具有相似的值。对于两个共混体系,过渡韧带长度接近平面应变条件的尺寸标准。 (C)2004年Wiley Periodicals,Inc.

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