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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. I. Untreated fibers
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Melt rheological behavior of intimately mixed short sisal-glass hybrid fiber-reinforced low-density polyethylene composites. I. Untreated fibers

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。一,未经处理的纤维

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The melt rheological behavior of intimately mixed short sisal-glass hybrid fiber-reinforced low-density polyethylene composites was studied with an Instron capillary rheometer. The variation of melt viscosity with shear rate and shear stress at different temperatures was studied. The effect of relative composition of component fibers on the overall rheological behavior also was examined. A temperature range of 130 to 150degreesC and shear rate of 16.4 to 5470 s(-1) were chosen for the analysis. The melt viscosity of the hybrid composite increased with increase in the volume fraction of glass fibers and reached a maximum for the composite containing glass fiber alone. Also, experimental viscosity values of hybrid composites were in good agreement with the theoretical values calculated using the additive rule of hybrid mixtures, except at low volume fractions of glass fibers. Master curves were plotted by superpositioning shear stress and temperature results. The breakage of fibers during the extrusion process, estimated by optical microscopy, was higher for glass fiber than sisal fiber. The surface morphology of the extrudates was analyzed by optical and scanning electron microscopy. (C) 2003 Wiley Periodicals, Inc. [References: 25]
机译:用Instron毛细管流变仪研究了短剑麻玻璃短纤维混合低密度聚乙烯复合材料的紧密熔体流变行为。研究了不同温度下熔体粘度随剪切速率和剪切应力的变化。还检查了组分纤维的相对组成对整体流变行为的影响。选择温度范围为130至150摄氏度,剪切速率为16.4至5470 s(-1)进行分析。杂化复合材料的熔体粘度随着玻璃纤维体积分数的增加而增加,并且对于仅包含玻璃纤维的复合材料达到最高。另外,杂化复合材料的实验粘度值与使用杂化混合物的加和法则计算出的理论值非常吻合,只是在玻璃纤维的体积分数较低时除外。通过叠加剪切应力和温度结果绘制主曲线。通过光学显微镜估计,在挤压过程中纤维的断裂比剑麻纤维高。通过光学和扫描电子显微镜分析挤出物的表面形态。 (C)2003 Wiley Periodicals,Inc. [参考:25]

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