Liu Yufei, Jiang Siyuan, Yan Wei, He Min, Qin Jun, Qin Shuhao, Yu Jie
Department of Polymer Material and Engineering, College of Materials and Metallurgy, Guizhou University, Guiyang 550025, China.
National Engineering Research Center for Compounding and Modification of Polymeric Materials, Guiyang 550014, China.
Polymers (Basel). 2020 Jul 15;12(7):1563. doi: 10.3390/polym12071563.
To expand the use of polylactic acid (PLA) in high-temperature environments, crystallization morphology regulation was studied to enhance the heat resistance of PLA. PLA crystallinity was controlled using heat treatment and nucleating agent (zinc phenylphosphonate, brand TMC). The heat deflection temperatures of PLAs with same crystallinities considerably varied using different treatments. The crystallization morphology of PLA (4032D) and PLA/TMC composites was studied using X-ray diffraction (XRD) and polarized optical microscopy. XRD test results show that TMC can improve the crystallization rate and heat treatment can enhance the crystallinity and thickness of PLA, suggesting that the crystallization morphology improved after heat treatment. Nucleating agents can increase the crystallinity of PLA but cannot improve its crystallization morphology. The findings indicate that at the same crystallinity, PLAs exhibit improved crystallization morphology and high heat resistance; these results can provide guidance for improving the heat resistance of PLAs and facilitate the design of new nucleating agents.
为了扩大聚乳酸(PLA)在高温环境中的应用,研究了结晶形态调控以提高PLA的耐热性。通过热处理和成核剂(苯基膦酸锌,商品名TMC)来控制PLA的结晶度。使用不同处理方法时,具有相同结晶度的PLA的热变形温度有很大差异。利用X射线衍射(XRD)和偏光显微镜研究了PLA(4032D)和PLA/TMC复合材料的结晶形态。XRD测试结果表明,TMC可以提高结晶速率,热处理可以提高PLA的结晶度和厚度,这表明热处理后结晶形态得到改善。成核剂可以提高PLA的结晶度,但不能改善其结晶形态。研究结果表明,在相同结晶度下,PLA表现出改善的结晶形态和高耐热性;这些结果可为提高PLA的耐热性提供指导,并有助于新型成核剂的设计。