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Experimental investigation and parametric analysis on overall buckling behavior of large-section aluminum alloy columns under axial compression

机译:大截面铝合金柱轴向受压整体屈曲性能的试验研究与参数分析

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摘要

Experimental investigation was conducted on large-section extruded aluminum alloy columns of I-section and rectangular hollow section (RHS). Altogether seven columns with different slenderness ratios were comprised. The failure modes and stability resistance as well as load-displacement responses were identified. It was found that all tested specimens failed in flexural buckling. An extensive parametric analysis on 180 specimens was carried out with general FEA software ANSYS to evaluate the reliability level of the current design specifications including American aluminum design manual, Eurocode 9 and Chinese code GB 50429. The design stability resistance advised by Eurocode 9 and Chinese code GB 50429 is conservative, while that of American aluminum design manual slightly overestimates the practical stability resistance. Based on the parametric analysis results, a new design method was proposed to improve the design accuracy.
机译:对I型截面和矩形空心截面(RHS)的大截面挤压铝合金柱进行了实验研究。总共包括七个具有不同细长比的柱。确定了失效模式和稳定阻力以及载荷-位移响应。发现所有测试样品的弯曲屈曲均失败。使用通用FEA软件ANSYS对180个样品进行了广泛的参数分析,以评估当前设计规范的可靠性水平,包括美国铝设计手册,欧洲规范9和中国规范GB50429。欧洲规范9和中国规范建议耐设计稳定性GB 50429是保守的,而美国铝的设计手册则稍微高估了实用的稳定性。基于参数分析结果,提出了一种新的设计方法,以提高设计精度。

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