首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Filler-induced heterogeneous distribution of stretch-induced crystallization in natural rubber: An in-situ synchrotron-radiation micro-focused scanning X-ray diffraction study
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Filler-induced heterogeneous distribution of stretch-induced crystallization in natural rubber: An in-situ synchrotron-radiation micro-focused scanning X-ray diffraction study

机译:填充诱导的天然橡胶诱导结晶的异构分布:原位同步辐射微聚焦扫描X射线衍射研究

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摘要

Crystallinity distribution of natural rubber around filled micrometer-size glass beads under different strains are studied with in-situ micro-focused scanning X-ray diffraction (m-SXRD), where the glass beads are taken to serve as a model of filler. The experimental results suggest, due to the gradient stress field around the glass bead, the oscillatory distribution of crystallinities around the glass bead tends to form soft-hard double network with multi-scale hierarchical structures and spontaneously responds to external strains. The double network spreads stress in larger region and avoids stress concentration, in which the hard domains with high crystallinities effectively sustain the external stress while the soft domains with low crystallinity store elastic energy. According to the equal strain and equal stress conditions, the quantitative calculation on enhancement factor indicates that the soft-hard double network structure can increase the fracture energy to about three orders of magnitude as comparing to that of structure with homogeneous distribution of crystallinity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:用原位微聚焦扫描X射线衍射(M-SXRD)研究了不同菌株下填充微米尺寸玻璃珠的天然橡胶的结晶性分布,其中玻璃珠作为填料的模型。实验结果表明,由于玻璃珠围绕梯度应力场,玻璃珠周围的晶体振荡分布倾向于形成具有多尺度分层结构的软硬双网络,并自发地应对外部菌株。双网络在较大区域中扩散应力,避免应力浓度,其中具有高晶体的硬结构域有效地维持外部应力,而具有低结晶度储存弹性能量的软域。根据相等的应变和等压力条件,对增强因子的定量计算表明,软硬双网络结构可以将裂缝能量增加到大约三个数量级,与结晶度均匀分布的结构相比。 (c)2017 Elsevier Ltd.保留所有权利。

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