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A Novel Approach to Predict Wrinkling of Aluminum Alloy During Warm/Hot Sheet Hydroforming Based on an Improved Yoshida Buckling Test

机译:基于改进的吉田屈曲试验的铝合金热/热成形液压起皱的新方法

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摘要

In order to predict the wrinkling of sheet metal under the influence of fluid pressure and temperature during warm/hot hydroforming, a numerical simulation model for sheet wrinkling prediction was established, taking into account through-thickness normal stress induced by fluid pressure. From simulations using linear and quadratic elements, respectively, it was found that the latter gave results that were much closer to experimental data. A novel experimental method based on an improved Yoshida Buckling Test (YBT) was proposed for testing the wrinkling properties of sheets under the through-thickness normal stress. A wrinkling coefficient suitable for predicting wrinkling was also presented. Based on the numerical simulations, an experimental validation of wrinkling performance was conducted. Ridge-height curves measured along the main diagonal tensile direction of the sheet were presented and showed that the wrinkling prediction criterion provided good discrimination. Furthermore, the wrinkling properties of several different materials were simulated to evaluate the accuracy of the prediction method, and the results revealed that the improved YBT gave good predictions for wrinkling in the conventional sheet metal forming process, while the prediction results for wrinkling in warm/hot sheet hydroforming were also accurate with the fluid pressure of zero.
机译:为了预测在热/热液压成形过程中流体压力和温度影响下的金属板起皱,建立了考虑流体压力引起的全厚度法向应力的板起皱预测数值模拟模型。通过分别使用线性和二次元素进行的模拟,发现后者提供的结果与实验数据更加接近。提出了一种基于改进的吉田屈曲试验(YBT)的新颖实验方法,用于测试板在厚度方向上的正应力下的起皱性能。还提出了适合预测皱纹的皱纹系数。基于数值模拟,进行了起皱性能的实验验证。给出了沿片材主要对角线拉伸方向测得的脊高曲线,并表明皱纹预测标准提供了良好的判别力。此外,模拟了几种不同材料的起皱特性以评估预测方法的准确性,结果表明,改进的YBT对常规钣金成形过程中的起皱具有良好的预测效果,而对于温热/热轧起皱则具有良好的预测结果热板液压成形在零流体压力下也很精确。

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