期刊文献+

Structural Response of Unreinforced Masonry Walls

Structural Response of Unreinforced Masonry Walls
下载PDF
导出
摘要 Historical buildings located in seismic regions have URM (unreinforced masonry) walls of considerable width as their main structure. In order to study the structural response of such type of masonry, it is necessary to know its mechanical and elastic characteristics. For such purpose, it is generally necessary to perform destructive and non-destructive tests. Other procedures, such as the study of masonry through numerical models, would make it possible to predict, with close approximation, the response of masonry to different actions. The purpose of this paper is to evaluate the behavior of URM walls subjected to axial and horizontal load by using a finite element model with the Abaqus code. Constitutive laws of materials, bricks and mortar are defined, using two constitutive models of plasticity and damage included in the materials library. The constitutive models used employ information of experimental tests performed on bricks and mortar. The results of an analysis for an URM wall subjected to axial and horizontal load are presented. Responses of walls were obtained in terms of load versus displacement for different constitutive models and for different qualities of bricks and mortar. The two constitutive models used show similar results, particularly in the response waveforms. However, the ultimate capacity values show mean variations of around 30%. The two constitutive models display high dependence upon the mechanical characteristics of bricks and mortar.
出处 《Journal of Civil Engineering and Architecture》 2016年第2期219-231,共13页 土木工程与建筑(英文版)
关键词 MASONRY structural behavior piles. 结构响应 无筋砌体 砌体墙 水平荷载作用 破坏性测试 本构模型 ABAQUS 本构关系
  • 相关文献

参考文献18

  • 1Page, A. W. 1980. “A Biaxial Failure Criterion for Brick Masonry in the Tension-Tension Range.” Int. Journal Masonry Constr. 1(1): 26-9.
  • 2Page, A. W. 1982. “An Experimental Investigation of the Biaxial Strength of Brick Masonry.” In Proc. Sixth Int. Brick Masonry Conf., 3-15.
  • 3Samarasinghe, W., Page, A. W., and Hendry, A. W. 1981. “Behaviour of Masonry Shear Walls.” Struct Eng. 59B (3): 42-8.
  • 4Mann, W., and Muller, H. 1982. “Failure of Shear-Stressed Masonry—An Enlarged Theory, Test and Applications to Shear Walls.” In Proc. of the British Ceramic Society, 223-35.
  • 5Lourenco, P. B., Rots, J. G., and Blaauwendraad, J. 1998. “Two Approaches for the Analysis of Masonry Structures: Micro- and Macro-Modeling.” Heron 40 (4): 313-40.
  • 6Anthoine, A., Magonette, G., and Magenes, G. 1995. “Shear-Compression Testing and Analysis of Brick Masonry Wall.” In Proceedings of 10th European Conference on Earthquake Engineering 3, 1657-62.
  • 7Calvi, G. M., Kingsley, G. R., and Magenes, G. 1996. “Testing of Masonry Structures for Seismic Assessment, Earthquake Spectra.” Journal of Earthquake Engineering Research Institute 12 (1): 145-62.
  • 8Vermeltfoort, A. T., and Raijmakers, T. M. J. 1993. Deformation Controlled Tests in Masonry Shear Walls, Part 2. Report TUE/BKO/93.08, Eindhoven University of Technology, Eindhoven, the Netherlands.
  • 9Atkinson, R. H., Amadei, B. P., Saeb, S., and Sture, S. 1989. “Response of Masonry Bed Joints in Direct Shear.” Journal of Structural Engineering 115 (9): 2277-96.
  • 10Bosiljkov, V., Page, A. W., Bokan, B. V., and Zamic, R.2003. “Performance Based Studies of In-plane Loaded Unreinforced Masonry Walls.” Masonry International 16(2): 39-50.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部