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Structural Recovery of a Single Polystyrene Thin Film Using Nanocalorimetry to Extend the Aging Time and Temperature Range

机译:使用纳米摩洛锰法的单个聚苯乙烯薄膜的结构回收,延长老化时间和温度范围

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The structural recovery of a single polystyrene thin film is investigated using nanocalorimetry at aging times as short as 0.01 s, as well as aging at temperatures as high as T_g + 15 K for high fictive-temperature glasses obtained at high cooling rates. The results indicate that structural recovery progresses as expected when the aging temperature is low compared to the initial fictive temperature; in this case, the fictive temperature evolves towards the aging temperature at a rate that depends on the aging temperature and initial fictive temperature (i.e., on the cooling rate prior to aging), and at equilibrium, the fictive temperature T_f = T_a. For the case when the aging temperature is much higher than the initial fictive temperature, no relaxation occurs during isothermal aging. For the intermediate case when the aging temperature is in the vicinity of the initial fictive temperature, relaxation occurs both during isothermal aging and during cooling after aging, with the result that the equilibrium fictive temperature is lower than the aging temperature. The use of a new equation for the relaxation time in the framework of the Tool-Narayanaswany-Moynihan (TNM) model allows description of the data with a single set of model parameters.
机译:在短至0.01秒的老化时间下使用纳米细胞分段研究单个聚苯乙烯薄膜的结构恢复,以及在高冷却速率下获得的高虚拟温度玻璃的高度为T_G + 15k的温度时老化。结果表明,与初始虚拟温度相比,当老化温度低时,结构恢复随着预期的进展;在这种情况下,虚拟温度以取决于老化温度和初始虚拟温度(即,在老化前的冷却速率上的初始虚拟温度(即,在平衡上)以速度发展,并且在平衡中,虚拟温度T_F = T_A。对于老化温度远高于初始虚拟温度的情况,在等温老化期间不会出现弛豫。对于中间情况,当老化温度在初始虚拟温度附近时,在等温老化期间和老化后冷却期间,弛豫发生松弛,结果是,平衡虚拟温度低于老化温度。在工具 - Narayanaswany-Moynihan(TNM)模型的框架中使用新方程式的放松时间允许用一组模型参数描述数据。

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