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On the Lateral Compressive Behavior of Empty and Ex-Situ Aluminum Foam-Filled Tubes at High Temperature

机译:空和异位填充泡沫铝管在高温下的横向压缩行为

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摘要

In this research work, the effect of lateral loading (LL) on the crushing performance of empty tubes (ETs) and ex situ aluminum foam-filled tubes (FFTs) was investigated at 300 °C. The cylindrical thin-walled steel tube was filled with the closed-cell aluminum alloy foam that compressed under quasi-static loading conditions. During the compression test, the main mechanical properties of the ETs improved due to the interaction effect between the cellular structure of the foam and the inner wall of the empty tube. In addition, the initial propagated cracks on the steel tubes reduced considerably as a result of such interaction. Furthermore, the obtained results of the LL loading were compared with the axial loading (AL) results for both ETs and FFTs at the same temperature. The findings indicated that the application of loading on the lateral surface of the composite causes the lower mechanical properties of both ETs and FFTs in comparison with the axial loading conditions.
机译:在这项研究工作中,在300°C下研究了横向载荷(LL)对空管(ETs)和非原位泡沫铝填充管(FFTs)的破碎性能的影响。圆柱形薄壁钢管中充满了在准静态载荷条件下压缩的闭孔铝合金泡沫。在压缩试验期间,由于泡沫的孔结构与空管内壁之间的相互作用,改善了ET的主要机械性能。另外,由于这种相互作用,钢管上的初始裂纹扩展了很多。此外,将获得的LL载荷结果与在相同温度下ET和FFT的轴向载荷(AL)结果进行了比较。研究结果表明,与轴向载荷条件相比,在复合材料侧面施加载荷会导致ET和FFT的机械性能降低。

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