华侨大学官网  English 
Syed Humayun Basha
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副研究员(自然科学) 硕士生导师  

性别:男

出生日期:1987-03-19

毕业院校:印度理工学院

学历:博士研究生

学位:工学博士学位

入职时间:2020-07-01

所在单位:华侨大学土木工程学院

办公地点:华侨大学土木工程学院学科实验大楼419

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在职信息:在岗

职务:教师

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结构工程

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Jiang, Y. F, Guo, Z., Basha, S. H., and Chai, Z. L. Sliding bed joint for seismic response control of ashlar stone masonry structures

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发表刊物:Engineering Structures, Elsevier

摘要:An isolation technique using sliding bed joint for seismic response control of ashlar stone masonry buildings was developed and investigated in this paper. Eight triplet specimens were tested under cyclic loads to identify suitable interface material for the sliding bed joint. Further, four stone masonry wall specimens were tested to investigate the frictional performance of the sliding bed joint. The sliding friction coefficient of stainless steel plate-stainless steel plate interface was about 0.17 and found to be insensitive to sliding displacement and the level of compressive stress. The proposed interface was found suitable for the sliding bed joint application. Stable frictional performance of sliding bed joint in practical engineering buildings could be achieved by leveling the interface of each group of the discrete distribute steel plates (two pairs of steel plates equidistantly adhesive on one stone block). A two-degrees-of-freedom mathematical model was adopted to investigate the isolation performance of stone structure's sliding bed joint. No sliding displacement was observed in the isolated stone structures in the case of frequent level earthquake. On the other hand, the average absolute acceleration response in the case of design and rare level earthquakes was significantly reduced compared to fixed base structures. The maximum average sliding displacement of isolated stone structures considered was about 71 mm which is within the half-length of the steel plate. Simple expressions were proposed to predict the average absolute acceleration spectrum of isolated stone structures. The experimental and analytical results provided reference for the application of the sliding bed joint in the stone masonry buildings.

论文类型:期刊论文

学科门类:工学

一级学科:土木工程

文献类型:J

卷号:244

页面范围:112734

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发表时间:2021-06-25

收录刊物:SCI

DOI码:10.1016/j.engstruct.2021.112734

发布期刊链接:https://www.sciencedirect.com/science/article/pii/S0141029621008841

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