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Reprocessable silane-crosslinked polyethylene: property and utilization as toughness enhancer for high-density polyethylene

机译:可再加工的硅烷交联聚乙烯:性能和用作高密度聚乙烯的韧性增强剂

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Silane-crosslinked polyethylene (Si-XLPE) has been increasingly used as a replacement of polyvinyl chloride for use as residence water pipes and hydronic heating systems. Unfortunately, good management of Si-XLPE wastes originated in the manufacturing processes or from already used products is limited. This article presents a melt-recycling (remelting and remolding) of waste Si-XLPE and its use to produce the high-density polyethylene (HDPE) composition of improved thermal endurance, along with attractive balance of stiffness and toughness. Experiments were carried out with a series of Si-XLPE of different gel fraction and crosslink structure, either loose or tight, aiming at understanding the factors which dictate the reprocessability and properties of crosslinked waste. Tensile and impact properties, crystallization, and heat stability of the HDPE and waste blends were investigated. It is found that waste Si-XLPE materials of loosely network structure can be remelting and remolding as thermoplastic PE. Interestingly, the results showed that crosslink gel in the wastes could be as high as 70 %. Both tensile modulus and impact strength of the HDPE systematically increased with increasing loading and content of gel in the crosslinked materials. The addition of 50 % crosslinked waste led to a rise of heat distortion temperature of HDPE by 20 ℃, without evitable change in the melting and crystallization temperatures.
机译:硅烷交联聚乙烯(Si-XLPE)已越来越多地用作聚氯乙烯的替代品,以用作住宅水管和水力加热系统。不幸的是,对源自制造过程或已使用过的产品的Si-XLPE废物的良好管理受到限制。本文介绍了废旧Si-XLPE的熔体再循环(重熔和重塑)及其在生产具有改善的耐热性以及刚度和韧性的吸引力平衡的高密度聚乙烯(HDPE)组合物中的用途。用一系列具有不同凝胶分数和交联结构(松散或紧密)的Si-XLPE进行实验,旨在了解决定交联废物可再加工性和性能的因素。研究了HDPE和废料混合物的拉伸和冲击性能,结晶度和热稳定性。发现具有松散网络结构的废Si-XLPE材料可以像热塑性PE一样进行重熔和重塑。有趣的是,结果表明废物中的交联凝胶可能高达70%。 HDPE的拉伸模量和冲击强度都随着交联材料中凝胶的负载和含量的增加而系统地增加。添加50%的交联废料导致HDPE的热变形温度升高20℃,而熔融和结晶温度没有必然的变化。

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