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OPTIMUM ANALYSIS OF CAST ALUMINUM JOINTS IN ALUMINUM ALLOY LATTICE SHELL STRUCTURES

机译:铝合金格架结构中铸铝接头的优化分析

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摘要

The finite element analysis software ANSYS was used for the analysis. The optimum analysis of cast aluminum joints in the aluminum lattice shell structures was introduced. In the process of optimum analysis, the size of cast aluminum joint in the lattice shell structures were taken as the design variable. The restraint conditions such as strength, rigidity, stability, cross section dimensions and the connections with other members were considered at the same time. A greenhouse consisting of a large-span space structure of aluminum alloy lattice shell structure at the Shanghai Chenshan botanical garden exhibition was used as a practical example. On the basis of the ANSYS software, after establishing a finite element model of cast aluminum joint, a simulative analysis was carried out for selected typical working conditions. After advancing structural optimization design, the bending rigidity and tensile stiffness of the cast aluminum joints were increased. By comparing the results of the analysis before and after optimization, material was saved while cast aluminum joints had the same carrying performance. The suitability of cast aluminum joint optimization design was proven.
机译:使用有限元分析软件ANSYS进行分析。介绍了铝格壳结构中铸铝接头的优化分析。在优化分析过程中,将格构结构中铸铝接头的尺寸作为设计变量。同时考虑了约束条件,例如强度,刚度,稳定性,横截面尺寸以及与其他构件的连接。以上海陈山植物园展览会上由大跨度空间结构的铝合金格壳结构组成的温室为例。在ANSYS软件的基础上,建立了铸铝接头的有限元模型后,对选定的典型工作条件进行了仿真分析。进行结构优化设计后,增加了铸铝接头的抗弯刚度和抗拉刚度。通过比较优化前后的分析结果,节省了材料,而铸铝接头具有相同的承载性能。证明了铸铝接头优化设计的适用性。

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