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Amorphous-amorphous transition in glassy polymers subjected to cold rolling studied by means of positron annihilation lifetime spectroscopy

机译:利用正电子an没寿命光谱研究冷轧玻璃态聚合物中的非晶-非晶转变

摘要

In this study, polycarbonate (PC) and polystyrene (PS) are subjected to plastic deformation by means of cold rolling and the resulting variation of the free volume and its subsequent time evolution after rolling is investigated by means of positron annihilation lifetime spectroscopy (PALS). The value of the long lifetime component that is attributed to the decay of ortho-positronium (tau(o-Ps)) and its intensity (Io-Ps) are used to characterize, respectively, the size and the concentration of the free-volume holes. In addition to the PALS experiments, the effect of plastic deformation on the dynamic tensile modulus is investigated. The PALS results show that both for well-aged PC and PS an increase of tau(o-Ps) and a decrease of Io-Ps occur upon plastic deformation. During the subsequent aging, tau(o-Ps) tends to return to the value assumed before plastic deformation, while Io-Ps remains constant with time. These results corroborate the idea of an amorphous-amorphous transition, rather than that of a "mechanical rejuvenation" as proposed in the past to explain the ability of plastic deformation to reinitiate physical aging. Finally, a linear relation between the size of the free-volume holes and the dynamic tensile modulus is found, which suggests that the stiffness of amorphous glassy polymers is fully determined by their nanoscopic structure. (C) 2005 American Institute of Physics.
机译:在这项研究中,聚碳酸酯(PC)和聚苯乙烯(PS)通过冷轧进行塑性变形,并通过正电子an没寿命光谱(PALS)研究了自由体积的变化及其在轧制后的后续时间演变。 。长寿命成分的值归因于正电子的衰变(tau(o-Ps))及其强度(Io-Ps),分别用于表征自由体积的大小和浓度孔。除PALS实验外,还研究了塑性变形对动态拉伸模量的影响。 PALS结果表明,对于塑性良好的PC和PS,tau(o-Ps)的增加和Io-Ps的减少都会发生。在随后的时效过程中,tau(o-Ps)倾向于恢复到塑性变形之前假定的值,而Io-Ps则随时间保持恒定。这些结果证实了非晶态-非晶态转变的想法,而不是过去提出的用以解释塑性变形恢复物理老化能力的“机械复兴”的想法。最后,发现了自由体积孔的大小与动态拉伸模量之间的线性关系,这表明非晶态玻璃态聚合物的刚度完全由其纳米结构决定。 (C)2005美国物理研究所。

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