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Seismic design and performance of dry-assembled precast structures with adaptable joints

机译:具有可伸缩缝的干式预制结构的抗震设计和性能

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Previous research projects and post-earthquake field observation showed that dry-assembled precast frame structures with hinged beams and cantilever columns restrained at their base, if correctly designed and detailed, can attain good seismic performance, mainly due to their flexibility and robustness. Their seismic design is often conditioned by the need of reducing their flexibility by increasing the cross-section of the columns, which, due to minimum reinforcement requirements, results in their over-strengthening. High flexibility may also induce displacement compatibility issues with non-structural elements. The paper concerns the proposal of an innovative enhanced structural frame system, based on the adaptation of hinged beam-column joints into rigid through the activation of special mechanical connection devices performed after the installation of the slab. While keeping all the benefits of the dry prefabrication, the resulting moment-resisting frame is provided with enhanced redundancy and stiffness. A design comparison among three precast frames with similar geometries and different static schemes shows how the joint adaptation can be exploited to optimise the structure by modifying the distribution of bending moment. The results of dynamic non-linear analyses on a three-storey precast structure with adaptable joints tested as a part of the SAFECAST research programme show the seismic performance of this system through different static schemes, and the comparison with the experimental results provides information about the validity of the models and the effectiveness of the technological solutions employed.
机译:先前的研究项目和地震后的现场观察表明,如果将干式预制框架结构的底部约束在铰接梁和悬臂柱的基础上,则预制结构的结构如果能够得到正确设计和细化,则可以获得良好的抗震性能,这主要是由于它们的柔韧性和坚固性。他们的抗震设计通常需要通过增加立柱的横截面来降低其柔韧性,这由于最小的加固要求而导致了其过强。高柔韧性也可能引起非结构元件的位移兼容性问题。本文涉及一种创新的增强结构框架系统的建议,该系统基于在安装平板之后通过激活特殊的机械连接装置使铰接的梁柱节点变为刚性。在保留干式预制的所有优点的同时,最终的抗力矩框架具有增强的冗余度和刚度。在具有相似几何形状和不同静态方案的三个预制框架之间进行的设计比较表明,如何通过修改弯矩的分布来利用关节自适应来优化结构。在SAFECAST研究计划的一部分中对三层预制结构进行了自适应接头的动态非线性分析的结果表明,该系统通过不同的静态方案具有抗震性能,并且与实验结果的比较提供了有关该结构的信息。模型的有效性以及所采用技术解决方案的有效性。

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