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Influence of beta nucleation on the mechanical properties of isotactic polypropylene and rubber modified isotactic polypropylene

机译:β成核对等规聚丙烯和橡胶改性等规聚丙烯力学性能的影响

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The tensile and fracture behaviour of neat alpha and beta nucleated isotactic polypropylene and rubber-modified alpha and beta nucleated isotactic polypropylene has been investigated at test speeds of 0.0001-10 ms(-1) in the temperature range -30 to +60degreesC. The presence of the beta phase had little effect at low temperature. However, at +25 and +60degreesC, it increased the speeds corresponding to the ductile-brittle transition in the neat polymer by more than three decades. This behaviour has been linked to changes in microdeformation mechanisms observed at the lamellar and spherulitic level, an increase in cavitational deformation in tensile tests and an increase in the strength of the beta relaxation in dynamic mechanical spectra. In the blends, the presence of the beta phase led to somewhat higher energy dissipation in regimes of ductile fracture. However, the ductile-brittle transitions were not significantly affected. The modifier phase was therefore infer-red to control the initiation and propagation of the plastic zone ahead of the crack tip during fracture. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 62]
机译:在温度范围-30至+ 60°C的测试速度为0.0001-10 ms(-1)的情况下,研究了纯净的α和β核化等规聚丙烯以及橡胶改性的α和β核化等规聚丙烯的拉伸和断裂行为。 β相的存在在低温下几乎没有影响。但是,在+25和+60℃时,与纯聚合物中的韧性-脆性转变相对应的速度增加了三十多年。此行为与在层状和球状水平上观察到的微变形机制的变化,拉伸试验中的空化变形增加以及动态机械谱中β弛豫强度的增加有关。在共混物中,β相的存在导致在韧性断裂状态下能量消耗更高。但是,韧性-脆性转变没有受到明显影响。因此推断改性剂相在断裂过程中控制了裂纹尖端之前塑性区的萌生和扩展。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:62]

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