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Formability of Explosive Welded Mg/Al Bimetallic Bar

机译:爆炸式焊接Mg / Al双金属棒的可成形性

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The paper presents the results of physical modelling of the plastic deformation of the Mg/Al bimetallic specimens using the Gleeble 3800 simulator. The plastic deformation of Mg/Al bimetal specimens characterized by the diameter to thickness ratio equal to 1 was tested in compression tests. The aim of this work was determination of the range of parameters as temperature and strain rate that mainly influence on the plastic deformation of Mg/Al bars during metal forming processes. The tests were carried out for temperature range from 300 to 400°C for different strain rate values. The stock was round 22.5 mm-diameter with an Al layer share of 28% Mg/Al bars that had been produced using the explosive welding method. Based on the analysis of the obtained testing results it has been found that one of the main process parameters influencing the plastic deformation the bimetal components is the initial stock temperature and strain rate values.
机译:本文介绍了使用GLEEBLE 3800模拟器的Mg / Al双金属样品的塑性变形物理建模结果。在压缩试验中测试了以等于1的直径到1的直径为厚度比的Mg / Al双金属标本的塑性变形。该作品的目的是测定作为温度和应变速率的参数范围,主要对金属形成过程中Mg / Al棒的塑性变形影响。对于不同的应变率值,将测试进行300至400℃的温度范围。该股是圆形的22.5毫米直径,使用爆炸焊接方法生产的28%Mg / Al条的Al层份额。基于对所获得的测试结果的分析,已经发现影响塑性变形的主要过程参数之一Bimetal组分是初始股票温度和应变率值。

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