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通过熔融共混随后压缩成型制备的立构复合聚乳酸/共聚酯共混薄膜的机械性能和耐热性

Mechanical properties and heat resistance of stereocomplex polylactide/copolyester blend films prepared by melt blending followed with compression molding.

作者信息

Srisuwan Yaowalak, Baimark Yodthong

机构信息

Biodegradable Polymers Research Unit, Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Mahasarakham, 44150, Thailand.

出版信息

Heliyon. 2018 Dec 24;4(12):e01082. doi: 10.1016/j.heliyon.2018.e01082. eCollection 2018 Dec.

Abstract

This work focuses on the process to obtain high heat-resistant stereocomplex polylactide (scPLA)/copolyester blend films by melt blending of high molecular-weight poly(L-lactide) (PLLA), low molecular-weight poly(D-lactide) (PDLA) and copolyester followed with compression molding. A copolyester of poly(ε-caprolactone--L-lactide) was used as a film former. Stereocomplexation, mechanical properties and heat resistance of the scPLA/copolyester blend films were investigated by differential scanning calorimetry (DSC), tensile testing and dynamic mechanical analysis (DMA), respectively. The PDLA fractions enhanced stereocomplexation and heat resistance of the blend films while the copolyester fraction reduced film brittleness. Dimensional stability to heat of blend films was also determined and was accorded to their DMA results. It was concluded that the high heat-resistant and less brittle scPLA films could be prepared using 70/30 (w/w) PLLA/PDLA with 20 wt% copolyester through melt blending before compression molding. This film showed similar stress at break and heat resistance to those of polypropylene film but with lower strain at break.

摘要

本工作聚焦于通过将高分子量聚(L-丙交酯)(PLLA)、低分子量聚(D-丙交酯)(PDLA)与共聚酯熔融共混,随后进行压缩模塑来制备高耐热性立构复合聚乳酸(scPLA)/共聚酯共混薄膜的过程。使用聚(ε-己内酯-L-丙交酯)共聚酯作为成膜剂。分别通过差示扫描量热法(DSC)、拉伸试验和动态力学分析(DMA)研究了scPLA/共聚酯共混薄膜的立构复合化、力学性能和耐热性。PDLA组分增强了共混薄膜的立构复合化和耐热性,而共聚酯组分降低了薄膜的脆性。还测定了共混薄膜的热尺寸稳定性,并与它们的DMA结果相符。得出结论,通过在压缩模塑前进行熔融共混,使用70/30(w/w)的PLLA/PDLA与20 wt%的共聚酯可制备出高耐热性且脆性较小的scPLA薄膜。该薄膜的断裂应力和耐热性与聚丙烯薄膜相似,但断裂应变较低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9cc/6307044/b746014e6703/gr1.jpg

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