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Rheological properties of nanocomposite-forming solutions and film based on montmorillonite and corn starch with different amylose content

机译:基于蒙脱石和玉米淀粉的纳米复合材料形成溶液的流变性质,不同的直链淀粉含量

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Nanoparticles (montmorillonite, MMT) can enhance biopolymer-based film properties. The structure-property relationship between polymers and nanoparticles may be explained by the rheological tests of nanocomposite forming solutions (NFS). The aim of this work was to study the effect of MMT concentration and amylose content on the rheological properties of NFS based on corn starch and glycerol following two preparation methods, through steady shear and dynamic tests. The organization level of NFS was influenced by the addition order of the components. Decreasing in flow index behavior when increasing amylose content was attributed to interactions between the starch components. In all NFS, G' was higher than G ''. indicating a gel-like behavior and suggesting that the MMT reinforced the starch matrix as observed by the increase in the storage modulus of films with MMT. Films obtained from method 2 have better mechanical properties probably due to the starch-MMT interactions.
机译:纳米颗粒(Montmorillonite,MMT)可以增强基于生物聚合物的薄膜性质。 聚合物和纳米颗粒之间的结构性质关系可以通过纳米复合材料形成溶液(NFS)的流变试验来解释。 这项工作的目的是研究MMT浓度和直链甘油含量对两种制备方法后基于玉米淀粉和甘油的NFS流变性能的影响。通过稳定的剪切和动态试验。 NFS的组织水平受到组件的添加顺序的影响。 随着淀粉组分之间的相互作用,当增加直链淀粉含量时,在流动指数行为中减小。 在所有NFS中,G'高于G''。 表示凝胶状的行为,并表明MMT加强了通过薄膜储存模量的增加而增强的淀粉基质。 从方法2中获得的薄膜可能由于淀粉-MMT相互作用而具有更好的机械性能。

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