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首页> 外文期刊>Journal of Sandwich Structures and Materials >Experimental and numerical investigation of lattice core sandwich beams under low-velocity bending impact
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Experimental and numerical investigation of lattice core sandwich beams under low-velocity bending impact

机译:低速弯曲冲击下晶格芯夹层梁的实验和数值研究

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The performance of sandwich beams with expanded metal sheets as core was studied under transverse impact loading. Relationships between the force and displacement at the mid-span of the sandwich beams were obtained from the experiments. Numerical simulations were carried out using ABAQUS/EXPLICT and the results were thoroughly compared with the experimental results. Then, the influence of the core layer number, cell orientation, size of the cell, and thickness of the substrates was investigated. The results showed that the increase in the core layers up to three times increased the energy absorption (E-a) by 33.88%. Moreover, increasing the thickness by up to three times increased the E-a by 61.33%. It was found that effects of the cell size and cell orientation on the E-a were dependent on each other, governing the low-velocity impact response of the sandwich beams with lattice cores.
机译:在横向冲击载荷下研究了与膨胀金属板作为核心的夹层梁的性能。 从实验中获得了夹层梁的中间跨度的力和位移之间的关系。 使用ABAQUS /解释进行数值模拟,并将结果与实验结果进行了彻底的比较。 然后,研究了核心层数,细胞取向,细胞尺寸和基板的厚度的影响。 结果表明,核心层的增加增加了3倍的能量吸收(E-A)增加了33.88%。 此外,将厚度提高三次增加,e-a增加了61.33%。 发现电池尺寸和细胞取向对E-A的影响彼此依赖,控制夹层梁与晶格芯的低速冲击响应。

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