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Effects of Process Factors and the Cladding Die Structure on the Productivity and Quality of ACS Wire

机译:过程因素与包层模具结构对ACS线生产率和质量的影响

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In recent years, there has been a growing need for productivity improvement of ACS wire (Aluminum clad Steel wire) m optical communication market. So, it is necessary to improve the production speed and following quality of ACS wire to reduce the unit cost of the products. In this study, the pre-heating temperature and cladding speed is chosen as the factors can influence the mechanical and metallurgical properties during cladding, and the changing behavior of mechanical property and microstructure by controlling above two factors are investigated. And the bearing length and approach angle in cladding die are selected as the important elements for designing optimum die enabling high speed cladding. So we carried out FE(Finite Element) analysis using the above two elements as variables. This paper aims to understand the change of mechanical properties and microstructure according to the change of each factor during cladding and suggest the optimized cladding condition to get the best quality of OPGW. And also we would like to introduce the optimum die structure that enables highspeed cladding.
机译:近年来,对ACS线(铝包钢丝)M光通信市场的生产率提高越来越大。因此,有必要提高ACS线的生产速度和以下质量,以降低产品的单位成本。在该研究中,选择预热温度和包层速度作为因素可以影响包层期间的机械和冶金特性,并研究了通过控制超出两个因素来改变机械性能和微观结构的变化。选择包层模具中的轴承长度和接近角度作为设计最佳模具的重要元件,从而实现高速包层。因此,我们使用上述两个元素作为变量进行FE(有限元)分析。本文旨在了解根据包层内每种因素的变化的机械性能和微观结构的变化,并提出了优化的包层条件,以获得最佳opgw的质量。而且我们也想介绍最佳的模具结构,可实现高速包层。

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