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Crystalline morphology of thermoplastic starch/talc nanocomposites induced by thermal processing

机译:热处理诱导热塑性淀粉/滑石粉纳米复合材料的结晶形态

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摘要

A structural study about the changes induced by plasticization of native corn starch was carried out in this work. The influence of talc nanoparticles presence during starch thermal processing was also evaluated. Macroscopic observation of the granules appearance evolution during melt-mixing and thermo-compression was supported by a theoretical description related to these processing methods. Melt-mixing induced a polymorphic transformation from A- to Vh-type and a reduction in the degree of crystallinity. Homogenous appearance of the plasticized starch was in accordance to the disruption of granules integrity, evidenced by SEM. This observation agreed to the distinctive XRD pattern of plasticized starch from unprocessed granules. Talc incorporation did not require the adjustment of processing parameters in order to obtain a homogenous thermoplastic material, with an adequate particles distribution within the matrix. Regardless talc presence, plasticized starch presented a Vh-type crystalline structure. Thermo-compression led to particles alignment promoted by talc laminar morphology.
机译:这项工作进行了有关由天然玉米淀粉增塑引起的变化的结构研究。还评估了淀粉热处理过程中滑石纳米颗粒存在的影响。与这些加工方法有关的理论描述支持了在熔融混合和热压过程中颗粒外观演变的宏观观察。熔融混合引起从A-型到Vh-型的多晶型转变并降低了结晶度。 SEM表明,增塑淀粉的均质外观与颗粒完整性的破坏有关。该观察结果与未加工颗粒中增塑淀粉的独特XRD图案一致。滑石粉的掺入不需要为了获得均质的热塑性材料而在基质内具有足够的颗粒分布的加工参数的调整。无论滑石粉的存在如何,增塑淀粉均呈现Vh型晶体结构。热压导致滑石层流形态促进颗粒排列。

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