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Isothermal Crystallization Behaviour and Mechanical Properties of Poly(L-lactic Acid)/Talc/Ethylene bis-Stearamide Composites

机译:聚(L-乳酸)/滑石粉/乙烯-双硬脂酰胺复合材料的等温结晶行为和力学性能

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摘要

Talc is very effective on the enhancement of crystallization of poly(L-lactic acid) (PLLA) and can retain fine mechanical properties with addition of ethylene bis-stearamide (EBS), thus, PLLAAalc/EBS composites were prepared to improve the crystallization rate and retain fine mechanical properties of material. Compared to the neat PLLA at 110 °C, upon the addition of 10 % talc and 3 % EBS, the induction period of poly(L-lactic acid) decreased from 4.0-0.4 min and half time of overall crystallization decreased from 10-1.8 min at 101 °C. The Avrami theory was used to describe the kinetic of isothermal crystallization of PLLA/talc/EBS composites. PLLA/talc/EBS composites not only take a heterogeneous nucleation process followed by a three-dimensional crystal growth but also have other complicated nucleation mechanism. Scanning electron microscopy showed that addition of talc enhanced compatibility between poly(L-lactic acid) and ethylene bis-stearamide. The mechanical results showed that addition of high content of talc significantly weakened the mechanical properties of biodegradable poly(L-lactic acid). However, Adding ethylene bis-stearamide to poly(L-lactic acid)/talc composites can retain fine mechanical properties of biodegradable poly(L-lactic acid).
机译:滑石粉对增强聚(L-乳酸)(PLLA)的结晶非常有效,并且通过添加亚乙基双硬脂酰胺(EBS)可以保持良好的机械性能,因此制备了PLLAAalc / EBS复合材料以提高结晶速率并保持材料的优良机械性能。与110°C时的纯PLLA相比,添加10%滑石粉和3%EBS时,聚(L-乳酸)的诱导期从4.0-0.4分钟减少,总结晶时间从10-1.8减少分钟在101°C。用Avrami理论描述了PLLA /滑石/ EBS复合材料的等温结晶动力学。 PLLA /滑石/ EBS复合材料不仅经历了异质成核过程,然后进行三维晶体生长,而且还具有其他复杂的成核机理。扫描电子显微镜显示,滑石粉的添加增强了聚(L-乳酸)和亚乙基双硬脂酰胺之间的相容性。力学结果表明,添加高含量的滑石粉显着削弱了可生物降解的聚(L-乳酸)的力学性能。然而,在聚(L-乳酸)/滑石复合物中添加亚乙基双硬脂酰胺可以保留可生物降解的聚(L-乳酸)的优良机械性能。

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