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Ultra high strength steel sandwich for lightweight applications

机译:超高强度钢三明治结构,适用于轻量化应用

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Methods for reducing weight of structural elements are important for a sustainable society. Over the recent years ultra high strength steel (UHSS) has been a successful material for designing light and strong components. Sandwich panels are interesting structural components to further explore areas where the benefits of UHSS can be utilized. The specific properties of sandwich panels make them suitable for stiffness applications and various cores have been studied extensively. In the present work, bidirectionally corrugated UHSS cores are studied experimentally and numerically. A UHSS core is manufactured by cold rolling and bonded to the skins by welding. Stiffness is evaluated experimentally in three-point bending. The tests are virtually reproduced using the finite element method. Precise discretization of the core requires large amounts of computational power, prolonging lead times for sandwich component development, which in the present work is addressed by homogenization, using an equivalent material formulation. Input data for the equivalent models is obtained by characterizing representative volume elements of the periodic cores under periodic boundary conditions. The homogenized panel reduces the number of finite elements and thus the computational time while maintaining accuracy. Numerical results are validated and agree well with experimental testing. Important findings from experimental and simulation results show that the suggested panels provide superior specific bending stiffness as compared to solid panels. This work shows that lightweight UHSS sandwiches with excellent stiffness properties can be manufactured and modeled efficiently. The concept of manufacturing a UHSS sandwich panel expands the usability of UHSS to new areas.
机译:减轻结构元素重量的方法对于可持续发展的社会很重要。近年来,超高强度钢(UHSS)已成为设计轻便和坚固部件的成功材料。夹心板是有趣的结构部件,可进一步探索可利用UHSS优势的领域。夹芯板的特殊性能使其适合于刚度应用,并且对各种型芯进行了广泛的研究。在目前的工作中,对双向波纹UHSS型芯进行了实验和数值研究。 UHSS芯通过冷轧制造,并通过焊接粘合到皮肤上。通过三点弯曲实验评估刚度。这些测试实际上是使用有限元方法进行复制的。核心的精确离散化需要大量的计算能力,从而延长了三明治组件开发的交货时间,在本工作中,使用等效的材料配方通过均质化解决了这一问题。等效模型的输入数据是通过表征周期性边界条件下周期性核的代表性体积元素而获得的。均匀化的面板减少了有限元的数量,从而减少了计算时间,同时保持了准确性。数值结果经过验证,与实验测试吻合良好。实验和模拟结果的重要发现表明,与实心板相比,建议的板提供了更高的比弯曲刚度。这项工作表明,可以有效地制造和建模具有优异刚度特性的轻质UHSS三明治。制造UHSS夹心板的概念将UHSS的可用性扩展到了新的领域。

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