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Development of prefabricated composite energy-dissipating slotted shear wall

机译:预制复合耗能开槽剪力墙的研制

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In a wall-frame system, shear walls are considered to be components with high load-bearing capacity and stiffness to provide lateral resistance. However, the ductility of shear walls is commonly far weaker than the frame. When high deformation is generated in a structure during earthquakes, shear walls are often damaged whereas the frame remained intact, which leads to their uncoordinated and restricted deformation. Furthermore, insufficient energy dissipation is exhibited within the limited deformation. This study is aimed at developing an innovative composite energy-dissipating slotted shear wall (CDSW). The CDSW features concrete-filled-tube wall segments, vertical slots, and H-shaped soft steel connectors, and it is endowed with significantly elevated deformability and energy dissipation. A quasi-static test was performed to investigate the seismic behavior of the CDSW, which showed high ductility. Finally, based on the calculation process of the conventional D-value method for frame structures, a modified D-value method was proposed to calculate the internal force and strength of slotted shear walls. The skeleton curve of the CDSW calculated by the modified D-value method agreed well with that obtained from the testing.
机译:在墙框架系统中,剪力墙被认为是具有高承载能力和刚度以提供侧向阻力的构件。但是,剪力墙的延展性通常远低于框架。当地震中某个结构产生高变形时,剪力墙经常会损坏,而框架则保持完好无损,从而导致其变形不协调且受限制。此外,在有限的变形内展现出不足的能量耗散。这项研究旨在开发一种创新的复合耗能开槽剪力墙(CDSW)。 CDSW具有混凝土填充管壁段,垂直槽和H形软钢连接器,并且具有显着提高的可变形性和能量耗散。进行了准静态测试,以研究CDSW的抗震性能,它具有较高的延展性。最后,在框架结构常规D值法计算过程的基础上,提出了一种改进的D值法来计算开槽剪力墙的内力和强度。通过改进的D值方法计算出的CDSW的骨架曲线与从测试中获得的曲线非常吻合。

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