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Experimental Study on Cast-In-Situ Masonry Cavity Walls Subjected to In-Plane Cyclic Loading

机译:平面内反复荷载作用下的现浇砌体空心墙试验研究

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This study investigates the behavior of cast-in-situ masonry cavity walls subjected to in-plane quasi-static loading. Thirteen cast-in-situ masonry cavity walls and one solid wall were tested under combined axial and quasi-static lateral loads. Test parameters included the tie shape, tie layout, thickness of the insulating layer, and the level of axial compression. The problems related to shear capacity and failure mechanisms of cast-in-situ masonry cavity walls were analyzed. Experimental results indicate that failure of most wall specimens occurred via crushing at corners, accompanied by flexural and diagonal cracks in the inner leaves. The shape and layout of the ties had a limited effect on the shear strength of cast-in-situ masonry cavity walls, while axial compression had a positive influence on shear strength. The relative displacement between the inner and outer leaves was nearly zero before walls cracked and reached less than 2 mm at the ultimate load. The shape and layout of the ties had a slight influence on the coordination of inner and outer leaves, while the insulating layer thickness and axial compression had a negative effect. Hysteretic loops under quasi-static loading were spindle-like, and wall specimens exhibited large nonlinear deformation capacity, indicating adequate aseismic capability. A new formula for calculating the shear capacity of the cast-in-situ cavity masonry walls was proposed and was demonstrated to be accurate.
机译:本研究调查了在平面内准静态荷载作用下的现浇砌体空腔墙的行为。在组合的轴向和准静态侧向荷载下测试了13个现浇砌体空腔壁和1个实心壁。测试参数包括连接线形状,连接线布局,绝缘层的厚度和轴向压缩水平。分析了现浇砌体空心墙的抗剪承载力及破坏机理问题。实验结果表明,大多数壁试样的破坏是通过在角落处压碎而引起的,并伴随着内部叶片的弯曲和对角裂纹。系带的形状和布局对现浇砌体空腔壁的抗剪强度影响有限,而轴向压缩对抗剪强度有积极影响。在壁破裂之前,内叶和外叶之间的相对位移几乎为零,并在极限载荷下达到小于2 mm。扎带的形状和布局对内叶和外叶的协调影响很小,而绝缘层的厚度和轴向压缩则有负面影响。准静态载荷下的磁滞回线呈纺锤状,并且壁试样表现出较大的非线性变形能力,表明具有足够的抗震能力。提出了一种计算现浇空心砌体墙抗剪承载力的新公式,并证明了该公式的准确性。

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