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Morphology–property relationship in oriented PET films: Microstructural reorganization during heat treatment

机译:取向PET薄膜的形貌-性能关系:热处理过程中的微观结构重组

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AbstractMorphology–property relationships for simultaneously biaxially stretched films and heatset with fixed dimensions in the temperature range of 100–240°C have been studied. The observed transition in various properties at 180°C can be explained on the basis of microstructural changes caused by competition among several processes, such as crystallization, solid‐state thickening, melting, and molecular relaxation as well as by melting and recrystallization. The resulting structures and, thereby, the properties are different in temperature Regime‐II (TgtoTmax) and Regime‐III (TmaxtoTm). In Regime‐II, the high rate of crystallization compared to the rate of molecular relaxation develops a constrained amorphous phase, whereas the predominant melting and recrystallization process in Regime‐III generates the relaxed amorphous phase. The structural reorganization during heat treatment is almost the same for uniaxially oriented film, fibers, and biaxially oriented films prepared under similar processing conditions. © 1994 John
机译:摘要研究了在100–240°C温度范围内同时双向拉伸薄膜和固定尺寸热固性物的形貌-性能关系。在180°C下观察到的各种性质的转变可以解释为由结晶、固相增稠、熔融和分子弛豫以及熔融和再结晶等几种过程之间的竞争引起的微观结构变化。由此产生的结构以及因此而产生的特性在温度 Regime-II (TgtoTmax) 和 Regime-III (TmaxtoTm) 中是不同的。在Regime-II中,与分子弛豫速率相比,高结晶速率会产生受约束的无定形相,而Regime-III中占主导地位的熔化和再结晶过程会产生松弛的无定形相。在类似加工条件下制备的单向取向薄膜、纤维和双向取向薄膜在热处理过程中的结构重组几乎相同。© 1994 约翰

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