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Evaluation of DIC Based Forming Limit Curve Methods at Various Temperatures of Aluminum Alloys for Automotive Applications

机译:基于DIC的铝合金铝合金温度的成型极限曲线方法评价

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Aluminum alloys are increasingly utilized in automotive body panels and crash components to reduce weight. Accurately assessing formability of the sheet metal can reduce design iteration and tooling tryouts to obtain the desired geometry in aluminum stampings. The current ISO forming limit curve (FLC) procedure is a position dependent technique which produces the FLC based on extrapolation at the crack location. As aluminum sheet metal use increases in manufacturing, accurate determination of the forming limits of this material will be necessary prior to production. New time dependent methods using digital imaging correlation (DIC) account for variations in material behavior by continuously collecting strain data through the material necking point. This allows more accurate FLC determination that is necessary for efficient design in the automotive stamping industry. Two different time dependent FLC analysis techniques using DIC were evaluated and compared with the position dependent ISO technique. All of the techniques were tested at room and elevated temperatures with aluminum 6xxx and 7xxx alloys to show the versatility of the techniques. The resulting FLC diagrams were compared after analysis of the data. Regardless of the testing temperature both tested time dependent techniques resulted in minor variation between trials. The DIC time dependent techniques proved to be more efficient without sacrificing accuracy and consistency. Additionally, time dependent methods displayed less conservative values than the ISO method and the FLC obtained using time dependent method was generally more practical than the ISO method.
机译:铝合金越来越多地用于汽车车身板和碰撞部件以减轻重量。准确评估金属板的可成形性可以减少设计迭代和工具试验,以获得铝冲压器中所需的几何形状。目前的ISO形成限位曲线(FLC)程序是基于裂缝位置的外推的FLC产生FLC的位置依赖性技术。由于铝金属板使用制造的增加,在生产之前需要精确测定这种材料的形成限制。使用数字成像相关性(DIC)的新时间依赖方法(DIC)占材料行为的变化,通过材料缩放点连续收集应变数据。这允许在汽车冲压行业中有效设计所需的更准确的FLC确定。评估使用DIC的两个不同时间依赖性FLC分析技术,并与位置依赖性ISO技术进行比较。所有技术在室内测试并用铝6xxx和7xxx合金的温度升高,以显示技术的多功能性。在分析数据后比较了所产生的FLC图。无论测试温度如何,测试时间依赖性技术都导致试验之间的微小变化。 DIC时间依赖技术证明在不牺牲准确度和一致性的情况下更有效。另外,时间依赖方法显示的保守值较少,使用时间依赖方法获得的FLC通常比ISO方法更实用。

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