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USE OF HIGH-STRENGTH STEEL FOR MULTI-CRITERIA OPTIMIZATION OF DISSIPATIVE DEVICES

机译:使用高强度钢进行多标准优化耗散装置

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Among the various strategies for the seismic protection of buildings, the use of passive devices based on energy dissipation through the development of plastic deformations represents a valid, simple and economic solution. During seismic events, damage is concentrated in correspondence of the dissipative elements which are thought to be replaced in the post-seismic phase in order to fully recover the initial capacity of the device and, therefore, to restore the original building behaviour. In this context, the adoption of steel devices has relevant impact and advantages on the overall building performance. In the present study, the implementation of a steel dissipative and replaceable device using High-Strength Steels (HSS) for the non-dissipative components was deeply analyzed, and results are briefly presented. The improvement due to HSS adoption accounted for the direct/short-term economic aspects (i.e. cost of the device, weight) and the indirect/long-term ones (i.e. seismic risk performance) within a multi-criterial optimization procedure.
机译:在建筑物的地震保护的各种策略中,通过通过塑性变形的发展的基于能量耗散的无源器件代表了有效,简单,经济的解决方案。在地震事件期间,损伤集中在被认为在后地震阶段被替换的耗散元素的对应,以便充分恢复设备的初始容量,因此,恢复原始建筑行为。在这种情况下,采用钢材设备对整体建筑绩效具有相关的影响和优势。在本研究中,深入分析了使用用于非耗散组分的高强度钢(HSS)的钢耗散和可更换装置的实施,并简要介绍了结果。 HSS采用的改进占了在多标准优化程序中的直接/短期经济方面(即设备,重量的成本)和间接/长期(即地震风险绩效)。

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