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T形短肢剪力墙的延性分析
引用本文:周雪峰,刘玲华,刘西民.T形短肢剪力墙的延性分析[J].四川建筑科学研究,2012,38(4):27-30.
作者姓名:周雪峰  刘玲华  刘西民
作者单位:1. 西安工业大学建筑工程学院,陕西西安,710032
2. 西安工业大学北方信息学院,陕西西安,710025
3. 咸阳陶瓷研究设计院,陕西咸阳,712000
基金项目:西安工业大学校长基金项目
摘    要:基于有限元原理分析了混凝土强度等级、轴压比、翼缘宽度和墙肢截面配筋率对T形短肢剪力墙构件延性性能的影响。结果表明:翼缘可以大大改善T形短肢剪力墙的延性性能,增加短肢剪力墙在地震作用下的耗能能力,在设计和墙体的侧移计算中应考虑翼缘的参与作用,翼缘的宽度可取大于8倍翼缘的厚度;随着轴压比的增加,结构的延性性能降低;在混凝土强度等级为C30~C40和配筋率为0.012~0.016时,结构的位移延性相对较好。故在工程设计中,应合理选择这些参数,使短肢剪力墙具有良好的延性,增强结构的抗震能力。

关 键 词:短肢剪力墙  延性性能  计算机仿真  位移延性比

Theoretical research on ductility of T-shaped short-leg shear wall
ZHOU Xuefeng , LIU Linghua , LIU Ximin.Theoretical research on ductility of T-shaped short-leg shear wall[J].Building Science Research of Sichuan,2012,38(4):27-30.
Authors:ZHOU Xuefeng  LIU Linghua  LIU Ximin
Affiliation:1. School of Civil Engineering,Xi'an Technological University,Xi'an 710032 ,China; 2. Xi'an Technological University North Institute of Information Engineering,Xi'an 710025,China; 3. Xianyang Research & Design Institute of Ceramics, Xianyang 712000, China)
Abstract:Influence of strength of concrete, axial compression ratio, width of flange and reinforcement ratio of shear wall on the ductility properties of T-shaped short-leg shear wall was analyzed based on finite element principle. The results show that flange can greatly improve ductility of T-shaped short-leg shear wall and increase the energy dissipation capacity of T-shaped short-leg shear wall under earthquake. In the design and lateral displacement calculation of the wall,the participation and effects of flange should be considered. The flange width earl be 8 times of flange thickness. With the axial compression ratio increases, ductility performance of the structure decreases. When the strength of concrete grade is C30 ~ C40 and reinforcement rate 0. 012 ~ 0. 016, the displacement ductility of structure is relatively better. Therefore,these parameters should be reasonably chosen in engineering design so as to enhance ductility and seismic performance of short-oier shear wall.
Keywords:short-leg shear wail  ductility  computer simulation  ductility ratio of displacement
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