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Finite Element Modelling of the Axial Crushing of AA6061 T4 and T6 and AA6063 T5 Structural Square Tubes With Circular Discontinuities

机译:AA6061 T4和T6和AA6063 T5结构方向管轴压制的有限元建模,具有圆形不连续性

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This research focused on the energy absorption capabilities of axially loaded structures fabricated from aluminum alloy extruded tubing with a square cross section. Quasi-static compressive testing was used to examine the effects of dual centrally located circular hole discontinuities on the energy absorption characteristics of the extrusion test specimens. In addition to previously characterized progressive buckling and global bending modes, collapse modes involving cracking and splitting were observed in several experimental tests. For this reason, finite element models of each test specimen were developed using a material model incorporating damage mechanics. The suitability of using shell elements versus solid elements to model these relatively thick-walled structures was investigated. A good correlation was observed between the results of the experimental quasi-static compressive tests and the results of the finite element simulations conducted using LS-DYNA.
机译:该研究专注于用方形横截面从铝合金挤出管制成的轴向加载结构的能量吸收能力。准静态压缩试验用于检查双中心定位的圆孔不连续性对挤出试样的能量吸收特性的影响。除了以前表征的渐进屈曲和全球弯曲模式外,在几种实验测试中观察到涉及开裂和分裂的折叠模式。因此,使用包含损坏力学的材料模型开发每个测试样品的有限元模型。研究了使用壳元素与模拟这些相对厚壁结构的固体元素的适用性。在实验准静态压缩试验结果和使用LS-DYNA进行的有限元模拟的结果之间观察到良好的相关性。

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