首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Novel U-bending designed setups for investigating the spring-back/spring-go of two-layer aluminum/copper sheets through experimental tests and finite element simulations
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Novel U-bending designed setups for investigating the spring-back/spring-go of two-layer aluminum/copper sheets through experimental tests and finite element simulations

机译:通过实验测试和有限元模拟来研究用于研究两层铝/铜板的弹簧背/弹簧的新型U型弯曲设计的设置

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This paper presents novel U-bending setups in order to investigate the effects of the curvatures created on the punch, die, or both on the spring-back/spring-go of the two-layer aluminum/copper sheets. Comparison of the new U-bending setups with the regular ones showed that the curvatures had important roles in reducing the spring-back/spring-go in the U-bending process. The results further indicated the good agreement between spring-back/spring-go and finite element simulations. Moreover, through finite element simulations, the effects of three effective parameters on reducing the spring-back/spring-go, including the curvature radius (r) of the punch, the distance between curvature center and the fillet center (d) in the punch, and the curvature radius at the end of the die (R) were investigated. In achieving the desired state (90 degrees), the results showed that the distance of curvature center from the fillet center (d) was a more important parameter compared with the curvature radius at the end of the punch (r) and the curvature radius at the end of the die (R). This paper also focuses on the thicknesses of copper and aluminum as well as the stacking sequence of layers. Concerning the thicknesses of the implemented copper and aluminum change, the minimum angle of the spring-back/spring-go relative to the desired state was 75% Al/25% Cu thickness. Furthermore, the spring-back of aluminum/copper was lower than the copper/aluminum layer sheet. The effects of both thickness changing and stacking sequence of aluminum/copper layers on the spring-back/spring-go amounts of different sheets were due to the relocation of the neutral axis.
机译:本文介绍了新型U型弯曲设置,以研究在两个层铝/铜板的弹簧/弹簧转动上产生的曲率的曲率的影响。使用常规组的新U型弯曲设置的比较显示曲率在减少U弯曲过程中的回弹/弹簧转移方面具有重要作用。结果进一步表明了回弹/弹簧转移和有限元模拟之间的良好一致性。此外,通过有限元模拟,三个有效参数对减少回弹/弹簧去的影响,包括冲头的曲率半径(R),曲率中心与冲头的圆角中心(d)之间的距离研究了模具(R)末端的曲率半径。在实现所需的状态(90度)时,结果表明,与卷(R)末端的曲率半径和曲率半径相比,曲率中心(D)与曲率半径相比的参数更重要的参数模具的末端(r)。本文还专注于铜和铝的厚度以及层叠层的堆叠序列。关于所实施的铜和铝的厚度,相对于所需状态的弹簧背/弹簧转移的最小角度为75%Al / 25%Cu厚度。此外,铝/铜的弹簧低于铜/铝层片。铝/铜层厚度和堆叠序列对不同薄片的弹簧/弹簧去量的铝/铜层堆叠序列的影响是由于中性轴的重置。

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