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首页> 外文期刊>Journal of Applied Polymer Science >Melt rheological behavior of intimately mixed short sisal-glass hybrid fiber-reinforced low-density polyethylene composites. II. Chemical modification
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Melt rheological behavior of intimately mixed short sisal-glass hybrid fiber-reinforced low-density polyethylene composites. II. Chemical modification

机译:短剑麻玻璃混合纤维增强的低密度聚乙烯复合材料的紧密混合的流变行为。二。化学修饰

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摘要

The effect of chemical modification of both fiber and matrix on melt rheological behavior of intimately mixed short sisal-glass hybrid fiber-reinforced low-density polyethylene composites was studied with an Instron capillary rheometer. The variations of melt viscosity with different shear rate and shear stress values for different temperatures were studied. A temperature 1 range of 130 to 150degreesC and shear rates of 16.4 to 5468 s(-1) were chosen for the analysis. Chemical modifications with stearic acid, maleic anhydride, silane, and peroxides were tested for their ability to improve the interaction between the matrix and fiber. The viscosity of the hybrid composites increases with every chemical modification. In the case of peroxide-treated composites, the increase can be attributed to the peroxide-induced grafting of the polyethylene matrix to the fiber surface and to the crosslinking of the polyethylene matrix. These phenomena are both activated by temperature, whereas temperature causes a reverse effect for all other chemical modifications. (C) 2003 Wiley Periodicals, Inc. [References: 14]
机译:用Instron毛细管流变仪研究了纤维和基质的化学改性对短剑麻玻璃混合纤维增强的低密度聚乙烯复合材料的熔融流变行为的影响。研究了不同温度下熔体粘度随剪切速率和剪切应力值的变化。选择1的温度范围为130至150摄氏度,剪切速率为16.4至5468 s(-1)进行分析。测试了用硬脂酸,马来酸酐,硅烷和过氧化物进行的化学改性,以改善其与基质和纤维之间相互作用的能力。杂化复合材料的粘度随每次化学改性而增加。在用过氧化物处理的复合材料的情况下,这种增加可以归因于过氧化物诱导的聚乙烯基体接枝到纤维表面以及聚乙烯基体的交联。这些现象均由温度激活,而温度对所有其他化学修饰产生相反的影响。 (C)2003 Wiley Periodicals,Inc. [参考:14]

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