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Experimental and Numerical Analysis of Springback and Bending Behavior of a Composite Sandwich Metal-Polymer Material

机译:复合三明治金属 - 聚合物材料的回弹和弯曲行为的实验性和数值分析

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Lightweight design, lower fuel consumption and easier recyclability are the current concerns of the automotive industry as a response to the increasing demand for energy saving and better environmental impact of the transportation section. This framework was the opportunity to develop multi-layer materials, as an alternative to the high-density homogeneous metal sheets, maintaining the structural properties of the component. The multi-layer materials, known as composite sandwich or hybrid materials, are composed of outer metal sheets with reduced thickness and a polymeric matrix core (low density), in which high specific strengths are achieved. However, the lack of studies and information about the behavior of these non-homogeneous materials posed new challenges, either with regard to their use in the sheet metal forming processes, but also when performing material mechanical characterization. This paper presents the problems faced with bending test and springback analysis of a sandwich metal polymer sheet, compared with a high strength low alloy steel (HSLA420). Experimental tests and corresponding numerical simulations were performed using the press brake air bending process and a Numisheet benchmark test, unconstrained bending test, at room temperature, using the same experimental conditions for both materials. The numerical simulations were performed using finite element modeling. The results show that the sandwich material have problems on the structural integrity for a lower punch radius, on the outer surface (tension side). Additionally, the comparison of springback behavior showed that there is no significant difference between the materials in the study, although the non-homogeneous sandwich material presented a lower springback.
机译:轻量级设计,较低的燃料消耗和更容易的可回收性是汽车行业的目前对节能需求日益增长的需求和更好的运输部分环境影响的响应。该框架是开发多层材料的机会,作为高密度均质金属板的替代方案,保持组分的结构性。多层材料,被称为复合夹层或混合材料,是由具有减小的厚度和聚合物基质芯(低密度),其中高比强度得以实现外的金属片。然而,关于这些非均质材料的行为的研究和信息缺乏对新的挑战构成了新的挑战,无论是在金属板形成过程中的用途,还在进行材料机械表征时。本文介绍了夹层金属聚合物板弯曲试验和回弹分析面临的问题,与高强度低合金钢(HSLA420)相比。使用压力制动空气弯曲工艺和Numisheet基准测试,室温,使用相同的两种材料的实验条件进行实验测试和相应的数值模拟。使用有限元建模进行数值模拟。结果表明,夹心材料在外表面(张力侧)上具有下冲头半径的结构完整性问题。另外,回弹行为的比较表明,研究中的材料之间没有显着差异,尽管非均匀的夹心材料呈现了较低的回弹。

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