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首页> 外文期刊>Journal of Composite Materials >A response surface study on microstructure and mechanical properties of poly(lactic acid)/thermoplastic starchanoclay nanocomposites
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A response surface study on microstructure and mechanical properties of poly(lactic acid)/thermoplastic starchanoclay nanocomposites

机译:聚乳酸/热塑性淀粉/纳米粘土纳米复合材料微观结构和力学性能的响应面研究

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摘要

Poly(lactic acid) was modified with thermoplastic starch and nanoclay in order to reduce its brittleness and enhance its mechanical properties, respectively. First, two mixing protocols were used to compound poly(lactic acid), 36wt% sorbitol-plasticized starch, and nanoclay as screening runs. Afterwards, nine experimentally designed - using response surface method - samples were produced via the best protocol with different thermoplastic starch and nanoclay contents. Blend morphology and mechanical properties of poly(lactic acid), poly(lactic acid)/thermoplastic starch samples, and poly(lactic acid)/ thermoplastic starchanoclay nanocomposites were investigated via X-ray diffraction, field emission scanning electron microscopy, and transmission electron microscopy, as well as tensile and impact testings. Incorporation of sorbitol as plasticizer resulted in well-dispersed thermoplastic starch in poly(lactic acid) matrix even in the absence of any compatabilizer, as witnessed by field emission scanning electron microscopy, and consequently increased the melt strength of the nanocomposites. X-ray diffraction patterns and transmission electron microscopy micrographs showed intercalated microstructure for the prepared nanocomposites. In the end, response surface methodology was applied to study the mechanical behavior of the nanocomposites in terms of thermoplastic starch and nanoclay contents.
机译:聚乳酸分别用热塑性淀粉和纳米粘土改性,以降低其脆性并增强其机械性能。首先,在筛选过程中,使用了两种混合方案来混合聚乳酸,36wt%山梨醇增塑的淀粉和纳米粘土。之后,通过响应表面法,通过最佳实验,通过不同的热塑性淀粉和纳米粘土含量,通过最佳实验生产了九种实验设计的样品。通过X射线衍射,场发射扫描电子显微镜和透射电镜研究了聚乳酸,聚乳酸/热塑性淀粉样品和聚乳酸/热塑性淀粉/纳米粘土纳米复合材料的共混物形态和力学性能。电子显微镜以及拉伸和冲击测试。如场发射扫描电子显微镜所观察到的,甚至在不存在任何相容剂的情况下,山梨糖醇作为增塑剂的引入也导致热塑性淀粉在聚乳酸基质中分散良好,从而提高了纳米复合材料的熔体强度。 X射线衍射图和透射电子显微镜显微照片显示了所制备的纳米复合材料的插入微观结构。最后,应用响应面方法从热塑性淀粉和纳米粘土含量的角度研究了纳米复合材料的力学行为。

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