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Investigation of in-situ poly(lactic acid)/soy protein concentrate composites: Composite preparation, properties and foam application development.

机译:原位聚乳酸/大豆蛋白浓缩复合材料的研究:复合材料的制备,性能和泡沫应用的发展。

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摘要

In this study, soy protein (SP), the residue of oil crushing, was used for preparation of value-added thermoplastics. Novel poly(lactic acid) (PLA)/soy protein concentrate (SPC) blends were investigated and foaming of the resulting blends was developed. PLA/SPC blends were prepared by twin-screw extrusion and test specimens by injection molding. Unlike the practice elsewhere SP was used as a filler in mixing with other polymers, SPC was processed as a plastic component in blending process in this work. Processing SPC as plastic component, water played an important role in terms of the deformability and the morphology of SP thus the properties of the blends. Plasticization of SP, compatibilization of the blends and structure-property relationship of the PLA/SPC blends were studied.;In the literature water and glycerol were often used together in preparing SP plastics or plastic blends, but this study found that this traditional combination did not provide the best results in terms of morphology and mechanical properties. Water is only recommended in plasticizing SP in the blends. This study showed water as a plasticizer was a domain factor on control of morphology and properties of PLA/SPC blends. The due to the evaporation of water after extrusion, SP domain lost its deformability thus resulted in in-situ composites. Interconnected SPC phase structure was achieved by control water content in the pre-formulated SPC and SPC content in the blends. A novel dual compatibilization method was developed to improve the properties of PLA/SPC blends. Poly(2-ethyl-2-oxazoline) was used to improve the dispersion of SPC in the blending stage, and polymeric methylene diphenyl diisocyanate was used to improve the interfacial adhesion between SPC and PLA in the subsequent processing. The result showed excellent mechanical properties and improved thermal properties of PLA/SPC blends. Using processing aids is an effective way to decrease processing temperature and thermal degradation of PLA/SPC blends. Interfacial adhesion and chemical blowing agent (CBA) played important roles in extrusion foaming PLA/SPC blends. The interconnected SPC particles provided a convenient passage for gas escape due to the weak adhesion between PLA melt and SPC, especially when CBA content was high. Strong interfacial adhesion is necessary to prevent gas escape and get low density foam at low CBA content.;The new findings in this work contribute to the knowledgebase of polymer blends and composites. The findings in this work and implementation of the investigation of preparation and properties of PLA/SP blends set up a framework for future research and development of similar natural polymer blends and will contribute to the commercialization of natural polymer based polymer blends such as starch and sugar beet pulp.
机译:在这项研究中,大豆蛋白(SP)是油压碎的残余物,用于制备增值热塑性塑料。研究了新型聚乳酸(PLA)/大豆蛋白浓缩物(SPC)混合物,并开发了所得混合物的发泡剂。通过双螺杆挤出制备PLA / SPC共混物,并通过注塑成型测试样品。与其他地方的做法不同,SP被用作与其他聚合物混合的填充剂,而SPC在这项工作中被作为塑料成分在共混过程中进行处理。将SPC加工为塑料组分时,水在SP的可变形性和形态方面起着重要作用,因此在共混物的性能方面也起着重要的作用。研究了SP的增塑,共混物的相容性以及PLA / SPC共混物的结构性质关系。在文献中,水和甘油经常一起用于制备SP塑料或塑料共混物,但这项研究发现这种传统组合确实可以在形态和机械性能方面无法提供最佳结果。仅建议在共混物中增塑SP时使用水。这项研究表明,水作为增塑剂是控制PLA / SPC共混物形态和性能的一个主要因素。由于挤出后水的蒸发,SP域失去了可变形性,从而形成了原位复合材料。通过控制预配制的SPC中的水含量和共混物中的SPC含量,可以实现互连的SPC相结构。开发了一种新颖的双重相容化方法来改善PLA / SPC共混物的性能。在共混阶段,使用聚(2-乙基-2-恶唑啉)改善SPC的分散性,并在后续工艺中使用聚合的亚甲基二苯基二异氰酸二甲酯提高SPC与PLA之间的界面粘合力。结果表明,PLA / SPC共混物具有出色的机械性能和改善的热性能。使用加工助剂是降低加工温度和PLA / SPC共混物热降解的有效方法。界面粘合和化学发泡剂(CBA)在挤出发泡PLA / SPC共混物中起着重要作用。相互连接的SPC颗粒由于PLA熔体和SPC之间的附着力弱,特别是当CBA含量高时,为气体逸出提供了方便的通道。为了防止气体逸出并在低CBA含量下获得低密度泡沫,必须具有强大的界面粘附力。;这项工作的新发现为聚合物共混物和复合材料的知识库奠定了基础。这项工作的发现以及对PLA / SP共混物的制备和性能研究的实施为未来类似天然聚合物共混物的研究和开发建立了框架,并将为基于天然聚合物的聚合物共混物(如淀粉和糖)的商业化做出贡献。甜菜浆。

著录项

  • 作者

    Liu, Bo.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Engineering Materials Science.;Plastics Technology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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