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Warm Hydroforming Characteristics of Stainless Steel Sheet Metals

机译:不锈钢薄板的热液压成形特性

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摘要

For numerical modeling and predictive analysis of warm hydroforming, better understanding of material properties (i.e. Flow curves) is required at elevated temperatures and high strains. Hydraulic bulge testing is a suitable method to obtain this information. However, analysis of the test data is not standardized as there are numerous approaches developed and adopted throughout the years. In this study, first, different approaches for hydraulic bulge analysis were compared with stepwise experiments to determine the best combination of approaches in obtaining accurate flow curves at different temperatures and strain rates. Then, three different grades of stainless steels (AISI 201, 301 and 304) were tested at various hydroforming conditions to determine the effect of pressure, temperature and strain rate on formability (i.e. cavity filling and thinning). These experimental findings were then used to be compared with predicted values from FEA. Results showed that material model works accurately in predicting the formability of materials in warm hydroforming.
机译:为了对温暖的液压成形进行数值建模和预测分析,需要在高温和高应变下更好地了解材料特性(即流动曲线)。液压凸起测试是获取此信息的合适方法。但是,由于多年来开发和采用了许多方法,因此测试数据的分析尚未标准化。在这项研究中,首先,将水力膨胀分析的不同方法与逐步实验进行比较,以确定在不同温度和应变速率下获得准确流量曲线的方法的最佳组合。然后,在各种液压成形条件下测试了三种不同等级的不锈钢(AISI 201、301和304),以确定压力,温度和应变率对可成形性(即型腔填充和减薄)的影响。然后将这些实验结果与来自FEA的预测值进行比较。结果表明,材料模型可以准确预测温暖液压成形中材料的可成型性。

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    Billur Eren;

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  • 年度 2008
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