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Microstructure and mechanical properties of orientated thermoplastic starches

机译:定向热塑性淀粉的微观结构和力学性能

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摘要

Effect of orientation on microstructure and mechanical properties of thermoplastic starches with different amylose/amylopectin ratios was studied to understand the relationship between structure and properties in starch-based materials. Hydrogen bonds and the highly branched microstructure in amylopectin resist the orientation of the polymer chains. The unique microstructures of amylopectin form gel-balls and super-globes after gelatinization. A gel-ball contains mainly the chains from same sub-main chain in amylopectin, and remains in regular pattern and keeps a certain “memory”. The gel-balls and super-globes can be deformed under shear stress. However, the deformation does not alter the orientation ofthe polymer chains inside the gel-balls significantly. Orientation increases both modulus and yield stress but decreases the elongation, which is mainly contributed to by the orientation of amorphous phase. The oriented super-globe has large interior stress after retrogradation (crystallization) that results in micro-cracks and poor mechanical properties.
机译:研究了取向对不同直链淀粉/支链淀粉比率的热塑性淀粉的微观结构和力学性能的影响,以了解淀粉基材料的结构与性能之间的关系。支链淀粉中的氢键和高度支化的微观结构阻止了聚合物链的取向。支链淀粉的独特微结构在糊化后形成凝胶球和超球。凝胶球主要包含支链淀粉中来自同一主链的链,并保持规则的模式并保持一定的“记忆”。凝胶球和超球在剪切应力作用下会变形。然而,该变形不会明显改变凝胶球内部的聚合物链的取向。取向会增加模量和屈服应力,但会降低伸长率,这主要是由非晶相的取向引起的。定向超级球在回生(结晶)后具有较大的内部应力,这会导致微裂纹和较差的机械性能。

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  • 来源
    《Journal of Materials Science 》 |2005年第1期| 111-116| 共6页
  • 作者

    Long Yu; G. Christie;

  • 作者单位

    CSIRO CMIT Clayton CRC for International Food Manufacture and Packaging Science;

    CSIRO CMIT Clayton CRC for International Food Manufacture and Packaging Science;

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  • 原文格式 PDF
  • 正文语种 eng
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