材料科学
热塑性聚氨酯
聚乳酸
复合材料
应力松弛
玻璃化转变
阿累尼乌斯方程
放松(心理学)
热塑性塑料
韧性
粘度
活化能
压力(语言学)
动态力学分析
聚合物
弹性体
蠕动
有机化学
化学
心理学
社会心理学
语言学
哲学
作者
Yi‐Sheng Jhao,Hao Ouyang,Chien-Chao Huang,Fuqian Yang,Sanboh Lee
摘要
Polylactic acid (PLA) is considered a promising biodegradable polymer alternative. Due to its high brittleness, composite materials made by melt blending thermoplastic polyurethane (TPU) with PLA can enhance the toughness of PLA. To understand the forced aging caused by stress relaxation in polymer materials, this study explains the stress relaxation experiments of PLA/TPU blends with different mass ratios under applied strain through mechanical model simulations. The Kelvin representation of the standard linear solid model (SLSM) is used to analyze the stress relaxation data of TPU/PLA blends, successfully explaining that the Young’s moduli (E1 and E2) of springs decrease with increasing temperature and TPU content. The viscosity coefficient of the PLA/TPU blends decreases with increasing temperature, and its reciprocal follows the Arrhenius law. For TPU/PLA blends with increased concentration of TPU, the activation energy for stress relaxation shows a linear decrease, confirmed by the glass transition point measured by DMA, indicating that it does not involve chemical reactions.
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