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首页> 外文期刊>Materials Forum >MATERIAL BEHAVIOR AND FORMABILITY OF MAGNESIUM AZ31 SHEET ALLOY UNDER WARM HYDROFORMING CONDITIONS
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MATERIAL BEHAVIOR AND FORMABILITY OF MAGNESIUM AZ31 SHEET ALLOY UNDER WARM HYDROFORMING CONDITIONS

机译:高温热变形条件下AZ31镁合金板材的材料性能和成形性

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摘要

In this study, a hydraulic bulge test setup was developed to conduct biaxial material tests with continuous and in-line pressure and non-contact dome height measurement capabilities. Several hydraulic bulge tests were performed to investigate the material behavior of Mg AZ31B-O sheet alloy at elevated temperature levels of 100, 200, and 300°C, and at two different strain rate levels of 0.0013 and 0.013 s-1. Based on the bulge test results, flow curves as a function of strain, strain rate and temperature were then established. The flow curves were found to decrease significantly with increasing temperature and decreasing strain rate. In the second stage of this study, closed-die warm hydroforming experiments were conducted to determine the forming limits in terms of achievable smallest corner radii, highest strain, and part height without failure. The 2D and 3D profiles of the hydroformed parts were measured using stereoscopic CCD cameras. The formability (i.e., die filling, part height, and corner radii) of the magnesium sheet was found to be significantly increased with increasing temperature.
机译:在这项研究中,开发了一种液压凸起测试装置,以进行具有连续和在线压力以及非接触式球顶高度测量功能的双轴材料测试。进行了几次水力膨胀试验,以研究Mg AZ31B-O薄板合金在100、200和300°C的高温水平以及两种不同的应变率水平分别为0.0013和0.013 s-1时的材料性能。根据膨胀测试结果,建立了随应变,应变速率和温度变化的流动曲线。发现流动曲线随温度升高和应变率降低而显着降低。在这项研究的第二阶段,进行了闭模温热成型实验,以确定可达到的最小拐角半径,最高应变和零件高度而无破坏的成型极限。液压成型零件的2D和3D轮廓使用立体CCD相机测量。发现镁片的可成形性(即,模头填充,零件高度和角半径)随温度升高而显着增加。

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