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首页> 外文期刊>Journal of Applied Polymer Science >Influence of mixing cycle on the degree of mixing of calcite-filled polyethylene upon stretching
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Influence of mixing cycle on the degree of mixing of calcite-filled polyethylene upon stretching

机译:混合周期对拉伸时方解石填充聚乙烯混合度的影响

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摘要

The mixing cycle-dependent degree of dispersion and degree of mixing of a calcite (calcium carbonate) agglomerate in high-density polyethylene (HDPE), low-density polyethylene (LDPE), and linear low-density polyethylene (LLDPE) matrices upon stretching was investigated using three different techniques: mechanical property, morphological behavior, and image analyzer analyses. The mechanical properties analyzed in terms of the tensile strength and maximum elongation resulted in that the second mixing was the best for giving a better property for all systems except the LDPE system, which exhibited no significant difference between the second and third mixings. The morphological behavior of the three compounds were different, but no distinctive difference was observed to differentiate the degree of mixing from system to system. The number-, weight-, and z + 1-average diameters of the air hole and the aspect ratio upon the stretching and mixing cycle were calculated to analyze the degree of mixing of the calcite-filled composites. As a consequence, no difference in the average diameter of the air hole was obtained among the three systems, but the aspect ratios of the air hole varied significantly. Thus, the degree of dispersion and the degree of mixing may be influenced by the average calcite agglomerate size, the average diameter of the air hole, and the aspect ratio upon stretching and mixing cycles. Those factors would be formed by the difference in chemical characteristics upon various microstructures of polyethylene and its molecular weight and molecular weight distribution. (C) 2003 Wiley Periodicals, Inc. [References: 24]
机译:拉伸时取决于混合循环的分散度和方解石(碳酸钙)附聚物在高密度聚乙烯(HDPE),低密度聚乙烯(LDPE)和线性低密度聚乙烯(LLDPE)基质中的混合程度我们使用三种不同的技术进行了研究:机械性能,形态行为和图像分析仪分析。根据抗张强度和最大伸长率分析的机械性能导致第二次混合是最佳的,除LDPE体系外,所有体系均表现出更好的性能,而LDPE体系在第二次和第三次混合之间没有显着差异。三种化合物的形态学行为是不同的,但是没有观察到明显的差异来区分体系之间的混合程度。计算气孔的数,重和z + 1的平均直径以及拉伸和混合循环时的纵横比,以分析方解石填充复合材料的混合程度。结果,在三个系统之间没有获得气孔的平均直径的差异,但是气孔的纵横比显着变化。因此,分散度和混合度可能受方解石平均附聚物尺寸,气孔的平均直径以及拉伸和混合循环时的长径比的影响。这些因素将由聚乙烯的各种微观结构上的化学特性差异及其分子量和分子量分布形成。 (C)2003 Wiley Periodicals,Inc. [参考:24]

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