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Thermal and Mechanical Analysis of Polyethylene Homo-Composites Processed by Rotational Molding

机译:旋转模塑聚乙烯均质复合材料的热力学分析

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摘要

This work is aimed at studying the suitability of ultra-high molecular weight polyethylene (UHMWPE) fibers for the production of polyethylene homo-composites processed by rotational molding. Initially pre-impregnated bars were produced by co-extrusion and compression molding of UHMWPE fibers and linear low-density polyethylene (LLDPE). A preliminary screening of different processing routes for the production of homo-composite reinforcing bars was performed, highlighting the relevance of fiber impregnation and crystalline structure on the mechanical properties. A combination of co-extrusion and compression molding was found to optimize the mechanical properties of the reinforcing bars, which were incorporated in the LLDPE matrix during a standard rotational molding process. Apart from fiber placement and an increase in processing time, processing of homo-composites did not require any modification of the existing production procedures. Plate bending tests performed on rotational molded homo-composites showed a modulus increase to a value three times higher than that of neat LLDPE. This increase was obtained by the addition of 4% of UHWMPE fibers and a negligible increase of the weight of the component. Dart impact tests also showed an increased toughness compared to neat LLPDE.
机译:这项工作的目的是研究超高分子量聚乙烯(UHMWPE)纤维在通过旋转模塑加工生产聚乙烯均聚物中的适用性。最初通过UHMWPE纤维和线性低密度聚乙烯(LLDPE)的共挤塑和压塑生产预浸渍棒。对生产均复合增强棒的不同工艺路线进行了初步筛选,突出了纤维浸渍和晶体结构对机械性能的相关性。发现共挤出和压塑的组合可以优化钢筋的机械性能,这些钢筋在标准的滚塑过程中被掺入了LLDPE基体中。除了纤维放置和加工时间的增加,均复合材料的加工不需要对现有生产程序进行任何修改。在旋转模塑均质复合材料上进行的板弯曲试验显示,模量增加到比纯LLDPE高三倍的值。这种增加是通过添加4%的UHWMPE纤维和组件重量的可忽略不计的增加而实现的。与纯LLPDE相比,飞镖冲击试验还显示出更高的韧性。

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