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首页> 外文期刊>International Journal of Polymeric Materials >Physical and Mechanical Behavior of Polymer Glasses. VI. the Role of Free Volume
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Physical and Mechanical Behavior of Polymer Glasses. VI. the Role of Free Volume

机译:聚合物玻璃的物理和机械行为。 VI。自由交易量的作用

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摘要

For various polymer glasses, the temperature-induced recovery of residual deformation was studied. The ratio between the low-temperature and high-temperature recovery components is controlled by the difference between deformation temperature and glass transition temperature T_g of olymer samples independently of their chemical structure. This ratio correlates with polymer macroscopic mechanical characteristics such as elastic modulus and yield stress. Experimental results were treated in terms of the dynamics of segmental mobility within different structural sublevels with different packing densities. To correlate this mechanical response with the structural state of glassy polymers,positron annihilation lifetiime spectroscopy (PALS) was used. For different polymer glasses, the microscopic segmental mobility and resultant macroscopic mechanical properties wee shown to be controlled only by the development of the adequate free volume content which depends on the difference between testing temperature and T_g. These results allowed us to propose the general correlation between microstructure, microscopic molecular mobility, and macroscopic mechanical behavior of polymer glasses.
机译:对于各种聚合物玻璃,研究了温度引起的残余变形的恢复。低温和高温恢复组分之间的比率由聚合物样品的变形温度和玻璃化转变温度T_g之间的差异控制,而与它们的化学结构无关。该比率与聚合物的宏观机械特性如弹性模量和屈服应力相关。根据具有不同堆积密度的不同结构子层中的节段迁移率的动力学,对实验结果进行了处理。为了使这种机械响应与玻璃状聚合物的结构状态相关联,使用了正电子an没寿命光谱法(PALS)。对于不同的聚合物玻璃,微观分段迁移率和所产生的宏观机械性能仅通过形成足够的自由体积含量来控制,该自由体积含量取决于测试温度和T_g之间的差异。这些结果使我们能够提出聚合物玻璃的微观结构,微观分子迁移率和宏观力学行为之间的一般相关性。

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