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In-Plane Behavior of Plain and Strengthened Solid Brick Masonry Walls

机译:平面平面行为,加强固体砖砌砖

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Unreinforced masonry structures are generally vulnerable to earthquake actions. Brittle masonry walls are very stiff and attract considerable seismic forces which cannot be sustained without cracking. In order to enhance ductility and load bearing capacity, certain strengthening techniques need to be applied. An experimental program concerning the in-plane behavior of solid clay brick masonry walls was performed at the Institute for Materials and Structures, Faculty of Civil Engineering University of Sarajevo, in cooperation with Institute for Lightweight Structures and Conceptual Design, University of Stuttgart. The physical models include two unconfined unreinforced full-scale masonry walls L/H/D=233/237/25cm and two strengthened full-scale walls jacketed on both sides with 5cm thick concrete and reinforced with Q196 steel mesh. Twelve reduced scale walls L/H/D = 100/100/25cm were additionally constructed in order to test different strengthening methods which include one- or two-sided jacketing and CFK 150 strips. Specimens were exposed to cyclic shear as well as to monotonic pushover loading program for different vertical stress levels with the aim to quantify shear strength, stiffness and energy dissipation. For lower vertical loads the tested walls exhibit rigid body rotation in each displacement cycle. For higher precompression mixed flexural and shear failure mode was registered, characterized by toe crushing and diagonal cracking. No separation of jacketing from the masonry was detected. Numerical models of tested wall panels were developed using finite element programs.
机译:无筋砌体结构一般都容易受到地震的行动。脆性砖石墙都非常僵硬,吸引了相当大的地震力不能无开裂持续。为了提高延展性和承载能力,某些加强技术需要应用。在萨拉热窝的土木工程大学学院材料和结构,教师进行有关实心粘土砖砌体墙的平面性能的试验计划,在合作研究所轻型结构和概念设计,斯图加特大学。的物理模型包括两个无侧限未增强全面圬工墙L / H / d =237分之233/25厘米和两个加强满量程壁夹套两面带5cm厚混凝土,并用Q196钢丝网增强。十二缩小比例壁L / H / d = 100/100 /25厘米被加在顺序构造以测试不同的加固方法,其中包括一个或两个双面护套和CFK 150条。样品暴露于循环剪切以及用于以目标量化剪切强度,刚度和能量耗散不同的垂直应力水平单调侧推装载程序。对于较低的垂直负载测试的壁表现出在每个位移周期刚体转动。对于更高的预压混合的弯曲和剪切失效模式是登记,其特征在于趾破碎和斜向开裂。检测从砖石包壳无分离。测试墙板的数值模型,采用有限元程序开发。

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