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首页> 外文期刊>Journal of Constructional Steel Research >On the topological optimization of horizontal links in eccentrically braced frames
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On the topological optimization of horizontal links in eccentrically braced frames

机译:偏心支撑框架中水平环节的拓扑优化

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This paper presents an implementation of structural optimization algorithms for the design of horizontal links of Eccentrically Braced Frames (EBFs) when subjected to monotonic shear loading. The objective is to study optimized geometries that open new design paths for these types of elements. With the advent of new additive manufacturing techniques such as WAAM (wire and arc additive manufacturing), energy dissipators may become one of the strategic applications for 3D printing of steel structures. For this purpose, an optimization procedure based on a displacement-controlled lateral load (push-over) applied to a single-storey EBF has been created using Abaqus FEA and Abaqus Optimization Module (ATOM). The performance of the optimized links has been compared with the performance of original links in terms of initial stiffness, yield strength, maximum strength and energy dissipation. The results show a set of promising geometrical configurations for horizontal links. Further research lines related to cyclic loading, anisotropic behaviour and advanced loading protocols are suggested.
机译:本文介绍了在经受单调剪切载荷时设计了用于设计偏心支撑帧(EBFS)的水平环节的结构优化算法的实现。目标是研究优化的几何形状,为这些类型的元素打开新的设计路径。随着新添加剂制造技术的出现,如WAAM(电弧添加剂制造),能量散热器可能成为钢结构3D打印的战略应用之一。为此目的,已经使用ABAQUS FEA和ABAQUS优化模块(ATOM)创建了基于施加到单层EBF的位移控制横向负载(推置)的优化过程。在初始刚度,屈服强度,最大强度和能量耗散方面,已经将优化链路的性能与原始链路的性能进行了比较。结果显示了一组用于水平链路的有希望的几何配置。提出了与循环加载,各向异性行为和高级加载协议相关的进一步研究线。

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