Polymers Composites and Hybrids (PCH), IMT Mines Ales, 30100 Ales, France.
Centre RAPSODEE, IMT Mines Albi, CNRS, Université de Toulouse, 81013 Albi, France.
Molecules. 2020 Jul 28;25(15):3408. doi: 10.3390/molecules25153408.
Polylactic acid (PLA) is a well-known and commercially available biopolymer that can be produced from different sources. Its different characteristics generated a great deal of interest in various industrial fields. Besides, its use as a polymer matrix for foam production has increased in recent years. With the rise of technologies that seek to reduce the negative environmental impact of processes, chemical foaming agents are being substituted by physical agents, primarily supercritical fluids (SCFs). Currently, the mass production of low-density PLA foams with a uniform cell morphology using SCFs as blowing agents is a challenge. This is mainly due to the low melt strength of PLA and its slow crystallization kinetics. Among the different options to improve the PLA characteristics, compounding it with different types of fillers has great potential. This strategy does not only have foaming advantages, but can also improve the performances of the final composites, regardless of the implemented foaming process, i.e., batch, injection molding, and extrusion. In addition, the operating conditions and the characteristics of the fillers, such as their size, shape factor, and surface chemistry, play an important role in the final foam morphology. This article proposes a critical review on the different SCF-assisted processes and effects of operating conditions and fillers on foaming of PLA composites.
聚乳酸(PLA)是一种众所周知且可商购的生物聚合物,可由不同的来源生产。其不同的特性在各个工业领域引起了极大的兴趣。此外,近年来,它作为泡沫生产的聚合物基质的使用有所增加。随着寻求减少工艺对环境负面影响的技术的兴起,化学发泡剂正在被物理发泡剂替代,主要是超临界流体(SCF)。目前,使用 SCF 作为发泡剂大规模生产具有均匀细胞形态的低密度 PLA 泡沫仍然是一个挑战。这主要是由于 PLA 的熔体强度低和结晶动力学缓慢。在改善 PLA 特性的不同选择中,用不同类型的填料对其进行复合具有很大的潜力。这种策略不仅具有发泡优势,而且无论实施哪种发泡工艺,即间歇式、注塑和挤出,都可以提高最终复合材料的性能。此外,操作条件和填料的特性,如尺寸、形状因子和表面化学,对最终泡沫形态起着重要作用。本文对不同的 SCF 辅助工艺以及操作条件和填料对 PLA 复合材料发泡的影响进行了批判性的综述。