Phase Transition and Mechanical Properties of Elastomer

S. Kawahara
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Abstract

Mechanical properties of elastomers and their mixtures were investigated with respect to phase transition, that is, strain-induced crystallization of natural rubber. On crystallization of unstretched natural rubber, effect of fatty acids present in the rubber was investigated by polarized light microscopy. The fatty acids were proved to be nucleating agent on the crystallization. The strain-induced crystallization and its effect on the mechanical properties were investigated by measuring tear strength of blend of SBR with natural rubber dispersoid. Despite superposition of tear energy of SBR, the natural rubber/SBR blend showed abrupt increase in tear energy at melting temperature of natural rubber. Since, after removing fatty acids with acetone, the acetone-extracted natural rubber/SBR blend was superposed with temperature shift factor of SBR, fatty acids were suggested to play an important role in not only tear energy but also strain-induced crystallization.
弹性体的相变与力学性能
研究了弹性体及其混合物在相变方面的力学性能,即天然橡胶的应变诱导结晶。利用偏光显微镜研究了脂肪酸对未拉伸天然橡胶结晶的影响。脂肪酸在结晶过程中起成核作用。通过测定SBR与天然橡胶分散体共混物的撕裂强度,研究了应变诱导结晶及其对力学性能的影响。尽管有SBR撕裂能的叠加,但在天然橡胶的熔融温度下,天然橡胶/SBR共混物的撕裂能急剧增加。用丙酮去除脂肪酸后,将丙酮提取的天然橡胶/SBR共混物与SBR的温移因子叠加,表明脂肪酸不仅在撕裂能中起重要作用,而且在应变诱导结晶中也起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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