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Quantification of aluminum Increase Factors for curtain wall design using finite element methods

机译:幕墙设计中铝增加因子的有限元分析

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In this paper we present structural analysis of an aluminum-backed curtain wall system to inform blast-resistant structural design practice. This analysis focuses on the expected material response of an aluminum curtain wall support to a set of typical blast loadings used in U.S. government criteria for domestic projects. Dynamic experiment test results of aluminum samples are used with a three-dimensional finite element hydrocode to account for over-strength, dynamic strengthening, and post-failure response of aluminum. The analysis shows that a curtain wall member under high-rate (blast) loading that is prescribed to fail using the recommended values of yield strength in the criteria documents, actually has very little evolved plastic strain. Further analysis shows that the combination of both the measured quasi-static yield over-strength and dynamic yield strength of specific aluminum evaluated exceeds the design recommendations prescribed in government design criteria in excess of 30% for the 6063 aluminum evaluated. The additional fidelity provided by the more accurate material properties improved the calculated performance of the structural member to the point that a member upgrade would not be required.
机译:在本文中,我们介绍了铝背幕墙系统的结构分析,以为抗爆结构设计实践提供参考。该分析的重点是铝幕墙支座对美国政府针对国内项目的标准中使用的一组典型爆炸载荷的预期材料响应。铝样品的动态实验测试结果与三维有限元水力代码一起使用,以说明铝的超强度,动态强化和失效后响应。分析表明,使用标准文档中的屈服强度建议值规定的高速率(爆炸)载荷下的幕墙构件实际上几乎没有塑性应变。进一步的分析表明,所评估的特定铝的准静态屈服强度过大和动态屈服强度的组合超出了政府设计标准中规定的6063铝的30%以上的设计建议。更精确的材料特性所提供的附加保真度将结构构件的计算性能提高到不需要构件升级的程度。

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