既有混凝土结构砌体充填体面外倒塌加固策略试验评价

M. Risi, A. Furtado, H. Rodrigues, J. Melo, G. Verderame, A. Arêde, H. Varum, G. Manfredi
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引用次数: 1

摘要

世界各地过去和最近发生的地震事件清楚地表明,现有钢筋混凝土(RC)建筑的生命安全和减少地震造成的损失的关键问题与填充砌体墙的面外倒塌有关。在文献中,很少有研究涉及这一最重要的主题,首先是关于加强策略以防止填充物坍塌的建议。本文提出了一项关于评估可能的加强方案的实验工作,旨在减轻或防止现有RC建筑砌体填充物的面外倒塌。建造了三个名义上相同的全尺寸一湾一层RC框架,并填充了由水平空心粘土砖组成的薄砖墙。第一个样本代表了地中海地区典型的RC建筑在其“建成”状态下的外壳。其余两个试件采用了基于高延性砂浆灰泥和纤维增强聚合物网组成的创新体系的两种不同的加固技术,对面外倒塌进行了加固。所有的试验都是在一个半循环(加载-卸载-再加载)的历史中,通过均匀分布的载荷,通过小型气动千斤顶在OOP方向施加位移。从面向对象的力-位移响应、变形形态和损伤演化等方面给出了实验结果。最后,对测试结果进行比较,以评估所选强化技术的有效性,并为今后进一步研究和应用选择最佳策略提供支持。
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EXPERIMENTAL ASSESSMENT OF STRENGTHENING STRATEGIES AGAINST THE OUT-OF-PLANE COLLAPSE OF MASONRY INFILLS IN EXISTING RC STRUCTURES
Past and more recent seismic events worldwide clearly showed that a crucial issue for life-safety and loss reduction due to earthquakes for existing reinforced concrete (RC) buildings is related to the out-of-plane (OOP) collapse of infill masonry walls. In literature, few studies addressed this paramount topic, above all about the proposal of strengthening strategies to prevent the infills’ collapse. This paper presents an experimental work about the assessment of possible strengthening solutions designed to mitigate or prevent the out-of-plane collapse of masonry infills in existing RC buildings. Three nominally identical full-scale one-bay-one-story RC frames were built and infilled with a thin masonry wall made up of horizontal hollow clay bricks. The first specimen was representative of the enclosure of a typical existing RC building in the Mediterranean region in its “as-built” condition. The remaining two specimens were strengthened against the out-of-plane collapse by means of two different strengthening techniques based on the application of innovative systems made up of high-ductility mortar plaster and fibre-reinforced polymer nets. All the tests consisted in the application of a semi-cyclic (loading-unloading-reloading) history of imposed displacements in the OOP direction by means of small pneumatic jacks through a uniform distributed load. Experimental results are shown in terms of OOP force-displacement responses, deformed shapes and damage evolution. In the end, the results of the tests are compared to assess the effectiveness of the selected strengthening techniques and to provide a support towards the choice of the best strategies for future further investigations and applications.
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OPTIMAL RETROFIT SELECTION FOR SEISMICALLY-DEFICIENT RC BUILDINGS BASED ON SIMPLIFIED PERFORMANCE ASSESSMENT MACROSCALE MODEL CALIBRATION FOR SEISMIC ASSESSMENT OF BRICK/BLOCK MASONRY STRUCTURES ANALYSIS OF METAL CONNECTOR’S EFFECT ON SEISMIC RESISTANCE OF DRY STONE-MASONRY STRUCTURES ASSESSMENT OF EXISTING STEEL FRAMES WITH INFILLS UNDER MULTIPLE EARTHQUAKES MANAGING EMERGENCY INTO HISTORIC CENTRES IN ITALY: SEISMIC VULNERABILITY EVALUATION AT URBAN SCALE
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