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首页> 外文期刊>Journal of Applied Polymer Science >SHORT PINEAPPLE-LEAF-FIBER-REINFORCED LOW-DENSITY POLYETHYLENE COMPOSITES
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SHORT PINEAPPLE-LEAF-FIBER-REINFORCED LOW-DENSITY POLYETHYLENE COMPOSITES

机译:短菠萝叶纤维增强的低密度聚乙烯复合材料

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摘要

Short pineapple-leaf-fiber- (PALF)-reinforced low-density polyethylene (LDPE) composites were prepared by melt-mixing and solution-mixing methods. In the melt-mixing technique, a mixing time of 6 min, rotor speed of 60 rpm, and mixing temperature of 130 degrees C were found to be the optimum conditions. Tensile properties of melt-mixed and solution-mixed composites were compared. Solution-mixed composites showed better properties than melt-mixed composites. The influence of fiber length, fiber loading, and orientation on the mechanical properties has also been evaluated. Fiber breakage and damage during processing were analyzed from fiber distribution curve and optical and scanning electron micrographs. Considering the overall mechanical properties and processability characteristics, fiber length of 6 mm was found to be the optimum length of pineapple leaf fiber for the reinforcement in LDPE. The mechanical properties were found to be enhanced and elongation at break reduced with increasing fiber loading. Longitudinally oriented composites showed better properties than randomly and transversely oriented composites. Recyclability of the composite was found to be very good. A comparison of the properties of the PALF-reinforced LDPE composites with those of other cellulose-fiber-reinforced LDPE systems indicated superior performance of the PALF-LDPE composites. (C) 1995 John Wiley and Sons, Inc. [References: 51]
机译:通过熔融混合和溶液混合方法制备了短菠萝叶纤维(PALF)增强的低密度聚乙烯(LDPE)复合材料。在熔融混合技术中,发现最佳混合条件为:混合时间为6分钟,转子速度为60 rpm,混合温度为130摄氏度。比较了熔融混合和溶液混合复合材料的拉伸性能。溶液混合的复合材料显示出比熔融混合的复合材料更好的性能。还评估了纤维长度,纤维负载和取向对机械性能的影响。从纤维分布曲线以及光学和扫描电子显微照片分析了加工过程中的纤维断裂和损坏。考虑到总体机械性能和加工性能,发现6 mm的纤维长度是用于LDPE加固的菠萝叶纤维的最佳长度。发现随着纤维负载的增加,机械性能得到增强,断裂伸长率降低。纵向取向的复合材料显示出比随机和横向取向的复合材料更好的性能。发现该复合材料的可回收性非常好。 PALF增强的LDPE复合材料的性能与其他纤维素纤维增强的LDPE系统的性能比较表明,PALF-LDPE复合材料具有优越的性能。 (C)1995 John Wiley and Sons,Inc. [参考:51]

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