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教育背景: 1.-2017.08-2017.08,英国雷丁大学,访问学者; 2.2012.02-2013.02,美国俄亥俄州立大学,访问学者,合作导师:HojjatAdeli; 3.2003.09-2007.07,西安建筑科技大学,博士,导师:吴敏哲教授; 4.2001.09-2003.07,西安建筑科技大学,硕士,导师:冯仲奇教授; 5.1997.09-2001.07,东北石油学院,学士。
常玉珍
Associate Professor
Paper Publications
Study on New Stadium Structure-ELASTOPLASTIC PERFORMANCE ANALYSIS OF NEW SPATIAL STRUCTURE— COMPOSITE RIBBED SHELL
Release time:2024-08-09 Hits:
Affiliation of Author(s):
土木工程学院
Journal:
The 10th International Symposium on Structural Engineering for Young Experts
Key Words:
中文关键字:空间结构;弹塑性;组合肋壳;极限承载力,英文关键字:spatial structure, composite ribbed shell, elastop
Abstract:
composite ribbed shell is a new kind of spatial structure, it retains all the advantages of thin concrete shell, while eliminates the need for temporary formworks and minimizes the required falsework. Under normal condition, structure deformation, force-transmission path and internal force distribution are researched. With load pressure increasing, elastoplastic performance is studied thoroughly including plastic deformation, variation of axial forces and bending moments in composite ribs and reinforcement concrete shell etc. Finally the influence of different RC thickness to ultimate bearing capability is discussed. It is found that: the structure deformation under self-weight and homogenlous pressure is small. In the middle of composite ribbed shell, composite ribs are mainly subjected to axial pressure, while RC shell are membrane pressure, on the edge of the structure, bending moments in composite ribs and RC shell become greater. In elastoplastic phase ultimate bearing capability is varied with different RC thickness, whereas the trends of each load-displacement curve are similar, and the maximum deformation occurs near the second rib from the edge part, the distribution rule of internal force is approximately similar to normal working situation, but the variation is much smaller, and internal force values are larger. Two perpendicular composite ribs through structure center are the main members to transfer loading, the force-transmission path is clear and smooth.
Note:
常玉珍
Co-author:
Xiao-LiLi,Min-ZheWu
First Author:
changyuzhen
Indexed by:
Journal paper
Volume:
卷:
Issue:
期:
Page Number:
页:
Translation or Not:
no
Date of Publication:
2008-10-01

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