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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Notched impact behaviour of polymer blends: Part 2: Dependence of critical particle size on rubber particle volume fraction
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Notched impact behaviour of polymer blends: Part 2: Dependence of critical particle size on rubber particle volume fraction

机译:聚合物共混物的缺口冲击行为:第2部分:临界粒度与橡胶颗粒体积分数的关系

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摘要

The stress-field model introduced in Part 1 is used to analyse the effects of rubber particle size D and volume fraction φ on impact behaviour. The model is refined by including energy released from the matrix during rubber particle cavitation, and interactions between cavitated rubber particles, porous shear bands, and crazes, in the later stages of energy absorption. The analysis shows that with increasing φ, critical stresses for rubber particle cavitation increase slightly, while yield stresses and craze formation stresses fall substantially, and craze stability increases. Particle morphology and particle-matrix adhesion also affect the locations of the brittle-ductile (BD) transition, which is caused by cavitation resistance in very small particles, and the ductile-brittle (DB) transition, which is due essentially to failure of crazes initiated from larger particles. Comparisons of model predictions with Izod data provide further insight into the ways in which large porous plastic zones develop ahead of notch tips.
机译:第1部分介绍的应力场模型用于分析橡胶粒径D和体积分数φ对冲击行为的影响。通过包括在橡胶颗粒空化过程中从基体释放的能量,以及在能量吸收的后期阶段,空化的橡胶颗粒,多孔剪切带和裂纹之间的相互作用来完善模型。分析表明,随着φ的增加,橡胶颗粒空化的临界应力略有增加,而屈服应力和裂纹形成应力则显着下降,裂纹稳定性增加。颗粒的形态和颗粒与基质的粘附也会影响脆性-延性(BD)转变的位置,这是由非常小的颗粒中的抗气蚀性引起的;而延性-脆性(DB)转变则主要是由裂纹的破坏引起的从较大的粒子开始。将模型预测值与艾佐德数据进行比较,可以进一步洞悉在缺口尖端之前形成大型多孔塑料区域的方式。

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