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Segmental orientation in plastically deformed glassy PMMA

机译:塑性变形玻璃状PMMA的分段取向

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In this study, spatial orientational distribution functions of labeled chain segments of cross-linked and linear PMMA were obtained by solid-state NMR as a function of finite deformation (far) below and (far) above the glass transition temperature T_g. The applied data analysis allows comparison of theoretical predictions and experimental data, both in terms of the orientational probability distributions as a function of two polar angles, as well as in terms of moments of the distribution. Orientation-strain relationships of chain segments agreed above and below T_g with predictions from the rubber-elastic affine network model, but suggests a much denser network below T_g than given by the cross-link density or the entanglement density in the melt. This suggested network structure is believed to be the generator of segmental orientation during plastic deformation in the glassy state, independent of the range of applied cross-link densities and deformation rates used in this study.
机译:在这项研究中,通过固态NMR获得了玻璃化转变温度T_g以下(远)和上方(远)的有限变形函数的交联和线性PMMA的标记链段的空间取向分布函数。所应用的数据分析允许在根据作为两个极角的函数的定向概率分布以及在分布的矩方面进行理论预测和实验数据的比较。链段的取向-应变关系在T_g之上和之下都与橡胶-弹性仿射网络模型的预测一致,但表明在T_g之下比在熔体中的交联密度或缠结密度所给出的网络更为紧密。该建议的网络结构被认为是玻璃态塑性变形过程中分段取向的产生者,与本研究中使用的交联密度范围和变形速率无关。

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