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Shear Modulus Determination of Cuboid Metallic Open-Lattice Cellular Structures by Analytical, Numerical and Homogenisation Methods

机译:通过分析,数值和均质化方法确定长方体金属格子细胞结构的剪切模量

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摘要

The shear response of irregular open-lattice cellular cores made of interconnected metallic struts is analysed, and the core shear modulus in the three material principal directions is derived. The analytical approach is based on the technical beam theory, which is used for the determination of the unit-cell response under complex loading. The influence of the strut geometrical parameters and unit-cell shape and size on the cellular core shear stiffness is determined. The analytical determination of the unit-cell properties is successfully validated by a reference numerical model of the unit cell, which is developed for comparison purposes. Furthermore, the homogenisation principles are applied to the prediction of the shear response of a core block structure comprising a high number of unit cells, for which experimental results were available; the comparison revealed that the experimental results coincide well with the results obtained from the homogenised model.
机译:分析了由相互连接的金属支柱制成的不规则开孔蜂窝状芯的剪切响应,并推导了三个材料主方向上的芯剪切模量。该分析方法基于技术束理论,该理论用于确定复杂载荷下的晶胞响应。确定了支杆的几何参数,单元格形状和大小对蜂窝芯抗剪刚度的影响。晶胞特性的分析确定已通过为比较目的而开发的晶胞参考数值模型成功验证。此外,均质化原理可用于预测包含大量晶胞的核心块结构的剪切响应,对此可获得实验结果。比较结果表明,实验结果与均质模型的结果吻合良好。

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