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Recent advances in the technologies of connection for panel structures: Design and cost analysis of different solutions with X-shaped dissipative connectors

机译:面板结构连接技术的最新进展:X形耗散连接器的不同解决方案的设计和成本分析

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摘要

In this work, a recently patented seismic damper to be applied to structures composed by systems of panels is presented. In particular, the article is devoted to characterize the behaviour of the proposed connector by means of an experimental and numerical analysis and to provide some information about the cost of the elements needed to realize the damper, accounting for the manufacturing process. The experimental analysis has regarded five specimens tested under different loading conditions, and it has been used as a term of comparison with the classical systems of connection currently employed in these structures. Afterwards, in the article, a design criterion able to control the capacity and ductility of the device by simply varying the shape of the damper is presented and its accuracy is evaluated by performing finite element analyses. The results of the experimental and finite element analyses are very promising in terms of cyclic behaviour and energy dissipation capacity and reveal that the design of the element can be accurately controlled by means of the proposed approach. Furthermore, the cost estimate has revealed that the proposed damper is also cheaper than the classical solutions with a cost reduction of about 40%.
机译:在这项工作中,提出了一种最新专利的减震器,该减震器将应用于由面板系统组成的结构。特别地,该文章致力于通过实验和数值分析来表征所提出的连接器的性能,并考虑制造过程,提供有关实现减震器所需的元件成本的一些信息。实验分析考虑了在不同载荷条件下测试的五个样本,并且已被用作与当前在这些结构中使用的经典连接系统的比较术语。然后,在本文中,提出了一种能够通过简单地改变阻尼器的形状来控制设备的容量和延展性的设计标准,并通过进行有限元分析来评估其准确性。实验和有限元分析的结果在循环行为和能量耗散能力方面非常有前途,并表明可以通过所提出的方法精确地控制元素的设计。此外,成本估算表明,所提出的阻尼器也比经典解决方案便宜,成本降低了约40%。

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