Foaming behavior of poly(lactic acid) with different D-isomer content based on supercritical CO2-induced crystallization

IF 3.2 4区 工程技术 Q2 CHEMISTRY, APPLIED
Jinwei Chen, Ling Yang, Qunshan Mai, Mei Li, Lixuan Wu, Ping Kong
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引用次数: 4

Abstract

Using supercritical carbon dioxide (sc-CO2) as a physical foaming agent, the effect of sc-CO2 on the formation of crystalline domains and subsequently on the foaming behaviors of the two grades of PLA with different D-isomer content were investigated in a wide foaming temperature range. The PLA’s final crystallinity is significantly increased with decreasing annealing temperature and by reducing the D-isomer content. Cellular structure results show that not only the crystallinity but also the crystalline morphology play an important role in cellular structure. A novel spherulite morphology including ringless and ring-banded morphology in the same spherulite was formed at lower foaming temperature, as a result, some entities were nonuniformly distributed in the PLA foams. Uniform and closed cellular structure were obtained when only the ring-banded spherulites were formed. An opened and interconnected cellular structure is tended to be formed because of the synergistic effect of high temperature and plasticization of CO2. Based on the crystallinity and morphology, a suitable foaming window as a function of temperature is proposed. It is found that PLA with 4.1% D-isomer content had much broader suitable foaming window range to produce homogeneous cellular structure.
基于超临界co2诱导结晶的不同d -异构体含量聚乳酸的发泡行为
以超临界二氧化碳(sc-CO2)为物理发泡剂,在较宽的发泡温度范围内,研究了sc-CO2对两种不同d -异构体含量的聚乳酸结晶区形成及随后发泡行为的影响。随着退火温度的降低和d -异构体含量的降低,PLA的最终结晶度显著提高。细胞结构的结果表明,结晶度和晶体形态对细胞结构都起着重要的作用。在较低的发泡温度下,形成了一种新的球晶形态,在同一球晶中形成了环状和带状的球晶形态,从而导致一些实体在PLA泡沫中不均匀分布。当只形成环状球晶时,得到均匀封闭的胞状结构。由于高温和CO2的增塑化的协同作用,往往形成一个开放的、相互连接的细胞结构。基于结晶度和形貌,提出了合适的发泡窗口作为温度的函数。结果表明,d -异构体含量为4.1%的聚乳酸具有更宽的发泡窗范围,可产生均匀的泡沫结构。
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来源期刊
Journal of Cellular Plastics
Journal of Cellular Plastics 工程技术-高分子科学
CiteScore
5.00
自引率
16.00%
发文量
19
审稿时长
3 months
期刊介绍: The Journal of Cellular Plastics is a fully peer reviewed international journal that publishes original research and review articles covering the latest advances in foamed plastics technology.
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