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Effect of the unidirectional drawing on the thermal and mechanical properties of PLA films with different L -isomer content

机译:单向拉伸对不同L-异构体pLa薄膜热性能和力学性能的影响

摘要

This work simulates the thermoforming process of two different L-isomer content PLA grades (95.6 and 98%), studyingudthe influence on the induced morphology and the variation in the thermal and tensile properties. The thermoforming process wasudsimulated with uniaxial tensile tests performed at different temperatures and strain rates, reporting the tensile behavior before, dur-ing, and after the test. The resulting structural changes were analyzed by wide-angle X-ray scattering and Fourier transformed infrared spectroscopy. Thermal characterization was carried out with differential scanning calorimetry and dynamomechanical thermal analy-sis. The results showed that, regardless theudL-isomer content, drawing at 70udC produced a stable mesomorphic phase that showed greater tensile properties than the original films. This mesomorphic phase, indeed, could be reordered into a crystalline structure under mild annealing conditions (5 min/75C), if compared with those needed for similar amorphous PLA specimens (60 min/120C), thus providing a processing opportunity for obtaining thermally stable PLA products at temperatures above 100C.
机译:这项工作模拟了两种不同的L-异构体含量的PLA级(95.6和98%)的热成型过程,研究了对诱导形貌的影响以及热和拉伸性能的变化。用在不同温度和应变速率下进行的单轴拉伸试验模拟了热成型过程,报告了试验前后,期间和之后的拉伸行为。通过广角X射线散射和傅立叶变换红外光谱分析了由此产生的结构变化。用差示扫描量热法和动力机械热分析进行热表征。结果表明,无论 udL-异构体含量如何,在70 udC下拉伸都产生了稳定的介晶相,该相显示出比原始薄膜更大的拉伸性能。实际上,如果与类似的非晶质PLA样品所需的相变(60分钟/ 120°C)相比,该中等晶相确实可以在温和的退火条件(5分钟/ 75°C)下重新排列成晶体结构,从而提供了获得热稳定性的加工机会温度超过100C的PLA产品。

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