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Effect of vertical load difference on cracking behaviors in multistory masonry buildings and numerical simulation 被引量:1

Effect of vertical load difference on cracking behaviors in multistory masonry buildings and numerical simulation
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摘要 To investigate the causes qf cracks in multistory masonry buildings, the effect of vertical load difference on cracking behaviors was investigated experimentally by testing and measuring the displacements at the testing points of a large sized real masonry U-shaped model. Additionally, the cracking behaviors in U-shaped model were analyzed with shear stress and numerical simulated with ANSYS software. The experimental results show that the deformation increases with the increase of the vertical load. The vertical load results in different deformation between the bearing wall and non-bearing wall, which leads to cracking on the non-beating wall. The rapid deformation happens at 160 kN and cracks occur firstly at the top section of non-bearing wall near to the bearing wall. New cracks are observed and the previous cracks are enlarged and developed with the increase of vertical load. The maximum crack opening reaches 12 mm, and the non-bearing wall is about to collapse when the vertical load arrives at 380 kN. Theoretical analysis indicates that the shear stress reaches the maximum value at the top section of the non-bearing wall, and thus cracks tend to happen at the top section of the non-bearing wall. Numerical simulation results about the cracking behaviors are in good agreement with experiments results. To investigate the causes of cracks in multistory masonry buildings,the effect of vertical load difference on cracking behaviors was investigated experimentally by testing and measuring the displacements at the testing points of a large sized real masonry U-shaped model. Additionally,the cracking behaviors in U-shaped model were analyzed with shear stress and numerical simulated with ANSYS software. The experimental results show that the deformation increases with the increase of the vertical load. The vertical load results in different deformation between the bearing wall and non-bearing wall,which leads to cracking on the non-bearing wall. The rapid deformation happens at 160 kN and cracks occur firstly at the top section of non-bearing wall near to the bearing wall. New cracks are observed and the previous cracks are enlarged and developed with the increase of vertical load. The maximum crack opening reaches 12 mm,and the non-bearing wall is about to collapse when the vertical load arrives at 380 kN. Theoretical analysis indicates that the shear stress reaches the maximum value at the top section of the non-bearing wall,and thus cracks tend to happen at the top section of the non-bearing wall. Numerical simulation results about the cracking behaviors are in good agreement with experiments results.
出处 《Journal of Central South University》 SCIE EI CAS 2009年第6期1014-1021,共8页 中南大学学报(英文版)
基金 Project(50778067) supported by the National Natural Science Foundation of China
关键词 vertical load difference CRACKING DEFORMATION multistory masonry building 多层砌体房屋 竖向荷载 开裂行为 数值模拟 非承重墙 ANSYS软件 房屋裂缝 开裂变形
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  • 1王述红,唐春安,朱浮声,朱万成.砌体结构开裂过程细观损伤数值模型及其分析方法[J].建筑结构学报,2003,24(2):64-69. 被引量:26
  • 2WANG Meng-tie.Cracking controlling in engineering structure[]..1997
  • 3SUN Xun-fang,FANG Xiao-shu,GUAN Lai-tai.Materials mechanics[]..1994
  • 4SPENCE S M J,GIOFFRè M,GRIGORIU M D.Probabilistic models and simulation of irregular masonry walls[].Journal of Engineering.2008
  • 5PINTUCCHI B,ZANI N.Effects of material and geometric non-linearities on the collapse load of masonry arches[].European Journal of Mechanics A Solids.2009
  • 6POPHN J R B,SCHULZ A E,LU M,STOLARSKI H K,OJARD N J.Influence of transverse loading on the stability of slender unreinforced masonry walls[].Engineering Structures.2008
  • 7STRVROULAKIS G E.On the static behavior of cracked masonry walls[].European Journal of Mechanics A Solids.1990
  • 8MASSART T J,PEERLINGS R H J,GEERS M G D.Structural damage analysis of masonry walls using computational homogenization[].International Journal of Damage Mechanics.2007
  • 9TJ Massart,RHJ Peerlings,MGD Geers.An enhanced multi-scale approach for masonry wall computations with localization of damage[].International Journal for Numerical Methods in Engineering.2007
  • 10Wu C Q,Hao H.Derivation of 3D masonry properties using numerical homogenization technique[].International Journal for Numerical Methods in Engineering.2006

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