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Modeling of density evolution of PLA under ultra-high pressure/temperature histories

机译:超高压/高温历史下PLA密度演化模型

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The density evolution of a semi-crystalline Poly(lactic acid) under ultra/high pressure histories in the region of alpha relaxation has been studied. It was found that the degree of crystallinity does not change in the temperature and pressure ranges under concern and consequently it is assumed that the volume relaxation kinetics involves only the amorphous part of the polymer. The scaling law for relaxation times, recently proposed by Casalini and Roland, has been utilized in the framework of KAHR (Kovacs Aklonis Hutchinson and Ramos) phenomenological theory in order to model the volume relaxation behavior. With this approach the model contains only two fitting parameters, (namely the relaxation time in the reference state, τ_g, and the fractional exponent, β, that describes the dispersion of the alpha relaxation) instead of the five parameters of the classical KAHR theory. The model predicts accurately both the density evolution of the PLA during the sterilization and Pasteurization treatments simulated in a pressure dilatometer and the density changes occurring in the PLA films utilized as packaging material in the HP industrial processes.
机译:研究了在α/α弛豫区超高压历史下半结晶聚乳酸的密度演化。已经发现,在所关注的温度和压力范围内,结晶度没有变化,因此,可以认为体积松弛动力学仅涉及聚合物的无定形部分。卡萨利尼和罗兰德最近提出的弛豫时间的缩放定律已被用于KAHR(Kovacs Aklonis Hutchinson和Ramos)现象学理论的框架中,以对体积弛豫行为进行建模。通过这种方法,模型仅包含两个拟合参数(即参考状态下的弛豫时间τ_g和描述α弛豫的离散度的分数指数β),而不是经典KAHR理论的五个参数。该模型可以准确预测压力膨胀计中模拟的灭菌和巴氏灭菌处理期间PLA的密度演变,以及HP工业流程中用作包装材料的PLA膜中发生的密度变化。

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