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Capacity design of traditional and innovative ductile connections for earthquake-resistant CLT structures

机译:用于地震抗性CLT结构的传统和创新韧性连接的能力设计

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摘要

Traditional connections in earthquake-resistant cross-laminated timber buildings are susceptible of brittle failures, even when buildings are designed and supposed to be ductile. This is mainly due to the large underestimation of the actual strength of the ductile components, with consequent increased strength demand for the brittle parts, which may fail if designed with insufficient overstrength. Recent studies demonstrate that the use of steel connections characterized by a well-defined mechanical behaviour can improve significantly ductility and dissipative capacity of cross-laminated timber structures and the reliability of the capacity design. In this paper, the conceptual model of capacity design is discussed, proposing some modifications to improve its reliability for traditional and high-ductility connections for CLT structures. Results from quasi-static cyclic-loading tests of an innovative ductile bracket are presented and the corresponding overstrength factors are computed using the proposed conceptual method and compared with values available in the literature for traditional connections. Finally, a comparative application of the capacity criteria to the design of the innovative bracket and of a traditional nailed connection is presented and discussed.
机译:即使建筑物的设计且应该是球墨掌,也易受脆性故障的传统联系易受脆性故障的影响。这主要是由于延展性延展性部件的实际强度的大幅度较大,因此如果设计不足的过度长度,可能会增加脆性部件的强度需求。最近的研究表明,使用具有明确定义的机械行为的钢连接可以提高交叉层压木结构的显着延展性和耗散能力和容量设计的可靠性。在本文中,讨论了容量设计的概念模型,提出了一些改进其对CLT结构的传统和高延展连接的可靠性。提出了一种创新的延展性支架的准静态循环加载试验的结果,并使用所提出的概念方法计算相应的过度监控因子,并与文献中可用的传统连接的值相比。最后,提出并讨论了对创新支架和传统的钉连接设计的能力标准的比较应用。

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