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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Evaluation of elastic constants of A3003 honeycomb core with varying hexagonal cell geometries through finite element approach
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Evaluation of elastic constants of A3003 honeycomb core with varying hexagonal cell geometries through finite element approach

机译:通过有限元方法评估具有六边形单元格几何形状的A3003蜂窝芯的弹性常数

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摘要

Aluminum honeycomb core is one of the most sought after material for the sandwich panel for light weight applications. While the aluminum face sheet is isotropic, the honeycomb core assumes orthotropic characteristics due to its configuration and strenuous load transfer paths. It is now well established that stiffness, dynamic, and low velocity impact response of the honeycomb core sandwich panel are critically dependent on the elastic constants of the core. An attempt is made to determine the elastic constants of orthotropic core through finite element approach simulating the load transfer and fixity boundary conditions likely to be prevalent in the unit cell of the honeycomb core. The cell wall thickness and the cell shape dictated by plastic bending limitations have also been simulated to determine their influence on the elastic constants. Further, the cell wall thickness and the bend radius have been varied and their influence on orthotropic elastic constants has been determined. The results of the study have been compared with analytical solutions proposed by researchers. The finite element procedure evolved is a simple, efficient, and quick solution methodology to accurately predict elastic constants of honeycomb core depicting the exact cell size and shape.
机译:铝蜂窝芯是用于轻型应用的夹芯板最受欢迎的材料之一。尽管铝面板是各向同性的,但蜂窝状芯材由于其构型和费力的载荷传递路径而具有正交各向异性的特性。现在已经很好地确定,蜂窝芯夹心板的刚度,动态和低速冲击响应主要取决于芯的弹性常数。尝试通过有限元方法确定正交异性芯的弹性常数,该方法模拟了可能在蜂窝芯的单元中普遍存在的载荷传递和固定边界条件。还已经模拟了由塑性弯曲限制所决定的孔壁厚度和孔形状,以确定它们对弹性常数的影响。此外,已经改变了单元壁的厚度和弯曲半径,并且已经确定了它们对正交各向异性弹性常数的影响。研究结果已与研究人员提出的分析解决方案进行了比较。演化出的有限元程序是一种简单,高效且快速的求解方法,可准确预测蜂窝芯的弹性常数,从而描述出精确的孔尺寸和形状。

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