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Poly (lactic acid) foaming

机译:聚乳酸发泡

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摘要

Poly (lactic acid) or polylactide (PLA) is an aliphatic thermoplastic polyester produced from renewable resources and is compostable in the environment. Because of the massive use of foamed products of petroleum-based polymers, PLA foams have been considered as substitutes for some of these products. Specifically, because of PLA's competitive material and processing costs, and its comparable mechanical properties, PLA foams could potentially replace polystyrene (PS) foam products in a wide array of applications such as packaging, cushioning, construction, thermal and sound insulation, and plastic utensils. Due to their biocompatibility, PLA foams can also be used in such biomedical applications as scaffolding and tissue engineering. But PLA has several inherent drawbacks, which inhibit the production of low-density foams with uniform cell morphology. These drawbacks are mainly the PLA's low melt strength and its slow crystallization kinetics. During the last two decades, researchers have investigated the fundamentals of PLA/gas mixtures, PLA foaming mechanisms, and the effects of material modification on PLA's foaming behavior through various manufacturing technologies. This article reviews these investigations and compares the developments made thus far in PLA foaming.
机译:聚乳酸或聚丙交酯(PLA)是由可再生资源生产的脂肪族热塑性聚酯,可在环境中堆肥。由于大量使用石油基聚合物的泡沫产品,因此人们认为PLA泡沫可以替代其中一些产品。特别是,由于PLA具有竞争力的材料和加工成本以及可比的机械性能,PLA泡沫有可能在包装,缓冲,建筑,隔热和隔音以及塑料器皿等广泛应用中取代聚苯乙烯(PS)泡沫产品。 。由于其生物相容性,PLA泡沫还可用于诸如脚手架和组织工程等生物医学应用。但是,PLA具有一些固有的缺点,它们会抑制具有均匀泡孔形态的低密度泡沫的产生。这些缺点主要是PLA的低熔体强度和缓慢的结晶动力学。在过去的二十年中,研究人员研究了PLA /气体混合物的基本原理,PLA发泡机理,以及通过各种制造技术进行的材料改性对PLA发泡行为的影响。本文回顾了这些研究,并比较了迄今为止在PLA发泡方面取得的进展。

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