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Rheological and mechanical properties of poly(methyl methacrylate) doped with lithium salts

机译:流变学和力学性能聚(甲基丙烯酸甲酯)掺杂锂盐

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摘要

In this study, we compared the effects of adding two salts with different carbon chain lengths-LiCF3SO3 (lithium trifluoromethanesulfonate; LFMS) and LiC4F9SO3 (lithium nonafluorobutanesulfonate; LFBS)-on the uniaxial tensile properties of poly(methyl methacrylate) (PMMA). The samples were broken in a brittle fashion according to the salt concentration. The decrease in the entanglement density estimated from the viscoelastic properties and the longer average relaxation times in the flow region in the PMMA-salt systems indicate that the salts have a "pinning" effect on PMMA chains, causing them to be brittle, and the PMMA chains tend to be disentangled. This pinning effect was more pronounced for the LFMS sample with a shorter carbon chain length. The tensile toughness of the LFMS sample (with a shorter carbon chain length) was slightly reduced. Doping with LFMS enhanced ductility, indicating that the stronger pinning effect between the PMMA chains effectively modified brittle fracture. We found that the rheological behavior at the compression-molding temperature affects the brittle fracture behavior in tension.
机译:在这项研究中,我们比较增加的影响两个盐与不同的碳链lengths-LiCF3SO3(锂trifluoromethanesulfonate;(nonafluorobutanesulfonate锂;单轴拉伸性能的聚(甲基丙烯酸甲酯)(PMMA)。脆弱的方式根据盐浓度。从粘弹性密度估计属性和平均弛豫时间越长次流地区PMMA-salt系统表明,盐有“锁住”效应对PMMA链,导致它们是脆弱的,连锁体系往往是分。将线性调频效果更加明显样本与短碳链的长度。拉伸韧性的中频采样样本(短碳链长度)略减少了。表明固定效应越强之间的PMMA链有效地修改脆性断裂。行为在压缩模塑法的温度影响张力的脆性断裂行为。

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