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首页> 外文期刊>American Journal of Chemical Engineering >Effect of Starch on the Mechanical and Rheological Properties of Polypropylene
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Effect of Starch on the Mechanical and Rheological Properties of Polypropylene

机译:淀粉对聚丙烯力学和流变性能的影响

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Blends of starch (tapioca) and polypropylene were prepared in various wt/wt concentrations ranging from 100% polypropylene resins to 5:95, 10:90, 20:80, 30:70, 40:60, and 50:50 wt% starch to wt% polypropylene blends. Then the rheological and mechanical properties of the resulting blends were determined using Plastometer and Universal Testing Machine respectively. Tensile strength, percentage elongation, flexural modulus, Izod impact, vicat softening temperature and melt flow index tests were carried out according to American standard for testing and materials procedure. The melt flow index was found to decrease linearly with increasing starch concentrations up to 30 wt% starch to wt% plastic, beyond which no flow was observed. The presence of starch in polypropylene was found to have positive effect on some of the mechanical properties like flexural modulus and Izod impact strength, whereas a negative impact was obtained on the tensile strength and percentage elongation. It was observed that higher starch loadings above 30% reduced the mechanical properties while lower starch loadings below 30% improved some mechanical properties. In addition, higher starch loadings above 30% does not favor the melt flow index and the Izod impact strength since there was no flow due to lower vicat softening temperature. Thus, with the aid of controlled incorporation of the starch additive, several properties of the modified polypropylene specimen could be enhanced.
机译:淀粉(木薯淀粉)和聚丙烯的共混物以100%聚丙烯树脂至5:95、10:90、20:80、30:70、40:60和50:50 wt%淀粉的各种wt / wt浓度制备重量百分比为聚丙烯共混物。然后分别使用Plastometer和Universal Testing Machine测定所得共混物的流变学和机械性能。拉伸强度,百分伸长率,挠曲模量,悬臂梁式冲击,维卡软化温度和熔体流动指数测试均根据美国测试标准和材料程序进行。发现熔体流动指数随着淀粉浓度的增加而线性地降低,直到淀粉对塑料的重量百分比为30重量%,超过该重量百分比则未观察到流动。发现聚丙烯中淀粉的存在对某些机械性能(如挠曲模量和悬臂梁式冲击强度)有积极影响,而对拉伸强度和伸长率百分数则产生负面影响。观察到高于30%的较高淀粉负载量降低了机械性能,而低于30%的较低淀粉负载量则改善了一些机械性能。另外,高于30%的较高的淀粉负载量不利于熔体流动指数和艾佐德冲击强度,因为由于较低的维卡软化温度而没有流动。因此,借助于淀粉添加剂的可控掺入,可以提高改性聚丙烯样品的一些性能。

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