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首页> 外文期刊>JOM >Strength and Formability Improvement of Al-Cu-Mn Aluminum Alloy Complex Parts by Thermomechanical Treatment with Sheet Hydroforming
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Strength and Formability Improvement of Al-Cu-Mn Aluminum Alloy Complex Parts by Thermomechanical Treatment with Sheet Hydroforming

机译:片材液压成形热机械处理提高Al-Cu-Mn铝合金复合零件的强度和成形性

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摘要

Normally, the strength and formability of aluminum alloys can be increased largely by severe plastic deformation and heat treatment. However, many plastic deformation processes are more suitable for making raw material, not for formed parts. In this article, an experimental study of the thermomechanical treatment by using the sheet hydroforming process was developed to improve both mechanical strength and formability for aluminum alloys in forming complex parts. The limiting drawing ratio, thickness, and strain distribution of complex parts formed by sheet hydroforming were investigated to study the formability and sheet-deformation behavior. Based on the optimal formed parts, the tensile strength, microhardness, grain structure, and strengthening precipitates were analyzed to identify the strengthening effect of thermomechanical treatment. The results show that in the solution state, the limiting drawing ratio of cylindrical parts could be increased for 10.9% compared with traditional deep drawing process. The peak values of tensile stress and microhardness of formed parts are 18.0% and 12.5% higher than that in T6 state. This investigation shows that the thermomechanical treatment by sheet hydroforming is a potential method for the products manufacturing of aluminum alloy with high strength and good formability.
机译:通常,严重的塑性变形和热处理可以大大提高铝合金的强度和可成形性。但是,许多塑性变形过程更适合于制造原材料,而不适合于成型零件。在本文中,进行了通过板材液压成形工艺进行热机械处理的实验研究,以提高铝合金在形成复杂零件时的机械强度和可成形性。研究了片材液压成形形成的复杂零件的极限拉伸比,厚度和应变分布,以研究其成形性和片材变形行为。根据最佳成形零件,分析了抗拉强度,显微硬度,晶粒结构和强化析出物,以确定热机械处理的强化效果。结果表明,在固溶状态下,与传统的深冲工艺相比,圆柱零件的极限拉拔率可提高10.9%。成形零件的拉伸应力和显微硬度的峰值分别比T6状态高18.0%和12.5%。研究表明,通过片材液压成形进行热机械处理是一种具有高强度和良好成形性的铝合金产品制造的潜在方法。

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