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首页> 外文期刊>The Physics of Metals and Metallography >Theoretical Investigation of Calculating Temperatures in the Combining Zone of Cu/Fe Composite Plate Jointed by Explosive Welding
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Theoretical Investigation of Calculating Temperatures in the Combining Zone of Cu/Fe Composite Plate Jointed by Explosive Welding

机译:爆炸焊接连接的铜铁复合板结合区温度计算的理论研究

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摘要

The heat-transfer behavior of the interface of Flyer plate (or Base Plate) has great influence on the microcosmic structures, stress distributions, and interface distortion of the welded interface of composite plates by explosive welding. In this paper, the temperature distributions in the combing zone are studied for the case of Cu/Fe composite plate jointed by explosive welding near the lower limit of explosive welding. The results show that Flyer plate (Cu plate) and Base Plate (Fe plate) firstly almost have the same melting rate in the explosive welding process. Then, the melting rate of Cu plate becomes higher than that of Fe plate. Finally, the melt thicknesses of Cu plate and Fe plate trend to be different constants, respectively. Meanwhile, the melting layer of Cu plate is thicker than that of Fe plate. The research could supply some theoretical foundations for calculating the temperature distribution and optimizing the explosive welding parameters of Cu/Fe composite plate to some extent.
机译:飞板(或底板)界面的传热行为对爆炸焊接复合板焊接界面的微观结构,应力分布和界面变形有很大影响。本文以爆炸焊接下限附近的爆炸焊接为例,研究了Cu / Fe复合板在精梳区的温度分布。结果表明,在爆炸焊接过程中,飞板(Cu板)和底板(Fe板)首先具有相同的熔化速率。然后,Cu板的熔化速率变得高于Fe板的熔化速率。最后,Cu板和Fe板的熔体厚度分别具有不同的常数。同时,Cu板的熔化层比Fe板的熔化层厚。该研究可为铜/铁复合板的温度分布计算和优化爆炸焊接参数提供一定的理论基础。

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