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Numerical and Experimental Study of the Electrofusion Welding Process of Polyethylene Pipes

机译:聚乙烯管电熔焊接过程的数值与实验研究

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The electrofusion welding process is widely used to join polyethylene components in gas distribution networks. This article provides experimental and 3D-finite element tools capable of reproducing the major phenomena that occur during an electrofusion process. A specific version of the 3D- finite element model simulation software Forge (R) has been developed to take into account the fitting parameters such as polyethylene thermal properties (i.e., melting and crystallization kinetics, phase transition, and thermal contact resistance) and the electrical and geometrical settings (i.e., welding input parameters). From a numerical point of view, a well refined highly anisotropic mesh adaptation is applied to well capture the contact condition between the heat source and the polyethylene. The computed results (temperature, melted, and cold areas) were compared with experimental data and gave very good agreement in terms of temperature and liquid phase fraction distribution. POLYM. ENG. SCI., 55:123-131, 2015. (c) 2014 Society of Plastics Engineers
机译:电熔焊接工艺被广泛用于连接气体分配网络中的聚乙烯组件。本文提供了能够重现电融合过程中发生的主要现象的实验和3D有限元工具。已开发3D有限元模型仿真软件Forge(R)的特定版本,以考虑拟合参数,例如聚乙烯的热性能(即,熔融和结晶动力学,相变和热接触电阻)以及电学参数。和几何设置(即焊接输入参数)。从数值的角度来看,应用了一种高度精细的高度各向异性的网格自适应技术,以很好地捕获热源与聚乙烯之间的接触状态。计算结果(温度,熔化和寒冷区域)与实验数据进行了比较,并且在温度和液相分数分布方面取得了很好的一致性。 POLYM。 ENG。 SCI。,55:123-131,2015.(c)2014年塑料工程师学会

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