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Seismic performance of RC beam-column joints retrofitted with steel dissipation jackets

机译:钢筋耗散护套加固的RC梁柱节点的抗震性能

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This article presents an experimental campaign on full scale RC beam-column joints subjected to cyclic loading. A joint specimen, belonging to a 4-storey RC framed building designed to only withstand gravity loads, was firstly tested without retrofitting elements. It was then damaged and re-tested after the application of a retrofitting system named DIS-CAM. The main objective of the intervention was to increase the seismic performance of the joint in such a way as to achieve the same response as that of a joint which has been seismically designed in accordance with the Italian code for a peak ground acceleration equal to 0.25 g. A companion seismic specimen was purposely designed and tested to facilitate a direct comparison in the analysis of the effectiveness of the retrofitting technique. The paper describes the design and the execution of the retrofitting intervention which does not require particular technologies being essentially made up of steel L-profiles placed at the corners of the involved structural members, confined by stainless steel ribbons and connected at the beam-column intersection by steel dissipation elements. After the application of the retrofitting system the non-seismic specimen was tested again and its behaviour was compared with that of the seismically designed specimen. The strengthened joint shows remarkable increments in strength and deformation capacity, despite the previous damaging test, with respect to the as-built non seismic joint. Furthermore, its capacity is almost equal to that of the seismically designed joint and it does not manifest the unfavourable performance found in the latter.
机译:本文介绍了在承受循环荷载的全尺寸RC梁柱节点上进行的实验活动。属于4层RC框架建筑且仅承受重力载荷的联合标本首先进行了测试,未进行任何改装。然后使用名为DIS-CAM的改装系统将其损坏并重新测试。干预的主要目的是提高接头的抗震性能,以达到与根据意大利法规进行抗震设计的等效于0.25 g峰值地面加速度的接头相同的响应。 。专门设计和测试了一个伴生地震标本,以利于对翻新技术的有效性进行直接比较。本文描述了改造干预措施的设计和执行过程,该改造措施不需要特定的技术,该技术基本上由放置在相关结构构件的拐角处的钢制L型材制成,并由不锈钢带限制并在梁柱交点处连接通过钢耗散元素。改型系统应用后,再次测试了非地震标本,并将其性能与地震设计标本进行了比较。尽管已进行了破坏性试验,但对于已建成的非地震接头,加固接头在强度和变形能力方面显示出显着的增加。此外,它的承载能力几乎与抗震设计的接缝相同,并且没有表现出后者所表现出的不利性能。

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