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Study of Post-Tensioned and Reinforced Masonry Walls Under Lateral Loads

机译:横向载荷下张紧和加固砌体墙的研究

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Moderate to strong earthquakes can cause considerable damage to masonry walls which are primary structural elements for decades. In previous earthquakes, a large number of masonry walls failed due to insufficient shear strength with excessive in-plane deformation, or due to insufficient out-of-plane bending capacity of the walls in the perpendicular direction. Typically, out-of-plane failure is far more prevalent and happens earlier than in-plane failure in most past earthquakes. Thus their arises the need to strengthen this masonry walls. Generally, the compressive forces that masonry walls bear vary at different storey's vary, therefore, walls at lower storey's can only be applied with relatively smaller prestress due to already higher compression stresses produced by self-weight and floor dead load. Many strengthening methods Such as using NSM-CFRP, post tensioning, shortcreting etc. are excellent methods of strengthening masonry walls. In this the performance of post tensioned and reinforced masonry walls is analyzed. Ungrouted, partially grouted, and fully grouted Post Tensioned [PT] Masonry Walls exhibit different behavior and failure mechanisms. For this an analytical model based on an experimental study is prepared and their results are compared with ABAQUS.
机译:适度到强大的地震可能对几十年来主要结构元素的砌体墙造成相当大的损坏。在以前的地震中,由于面内变形的剪切强度不足,或者由于壁在垂直方向上的平面外弯曲能力不足,因此大量的砌体壁失效。通常,平面外失败远远普遍,并且在大多数过去的地震中比平面内失效更早发生。因此,他们出现了加强这种砖石墙的需要。通常,砌体墙体在不同的楼层变化中变化的压缩力,因此,由于已经通过自重和地板死载产生的已经更高的压缩应力,距离下层的壁仅具有相对较小的预应力。许多强化方法,例如使用NSM-CFRP,后张紧,裂痕等是强化砌体墙壁的优异方法。在这种情况下,分析了张紧和增强砌体墙的性能。张紧的,部分灌浆和完全灌浆的柱子张紧[Pt]砌体墙体表现出不同的行为和失效机制。为此,制备基于实验研究的分析模型,并将其结果与ABAQUS进行比较。

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