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Nanostructurization and thermal properties of polyethylenes’ welds

机译:聚乙烯焊缝的纳米结构和热性能

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摘要

As it is known, polyethylene (PE) is one of the common materials in the modern world, and PE products take the major share on industrial and trade markets. For example, various types of technical PE like PE-63, PE-80, and PE-100 have wide industrial applications, i.e., in construction, for pipeline systems etc. A rapid development of plastics industry outstrips detailed investigation of welding processes and welds’ formation mechanism, so they remain unexplored. There is still no final answer to the question how weld’s microstructure forms. Such conditions limit our way to the understanding of the problem and, respectively, prevent scientific approaches to the welding of more complicated (from chemical point of view) types of polymers than PE. Taking into account state-of-the-art, the article presents results of complex studies of PE weld, its structure, thermophysical and operational characteristics, analysis of these results, and basing on that some hypotheses of welded joint and weld structure formation. It is shown that welding of dissimilar types of polyethylene, like PE-80 and PE-100, leads to the formation of better-ordered crystallites, restructuring the crystalline phase, and amorphous areas with internal stresses in the welding zone.
机译:众所周知,聚乙烯(PE)是现代世界中常见的材料之一,并且PE产品在工业和贸易市场上占有主要份额。例如,各种类型的技术PE,例如PE-63,PE-80和PE-100具有广泛的工业应用,即在建筑,管道系统等方面。塑料工业的飞速发展超过了对焊接工艺和焊缝的详细研究的形成机制,因此它们仍待探索。对于焊缝的微观结构如何形成的问题,仍没有最终答案。这种条件限制了我们对问题的理解,并分别阻止了科学方法来焊接比PE更复杂(从化学观点出发)类型的聚合物。考虑到最新技术,本文介绍了对PE焊缝,其结构,热物理和操作特性进行复杂研究的结果,并对这些结果进行了分析,并基于对焊接接头和焊缝结构形成的一些假设。结果表明,焊接不同种类的聚乙烯(例如PE-80和PE-100)会导致形成更好的微晶,重组晶体相,并在焊接区域内产生带有内应力的非晶区域。

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