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Natural frequency and damping ratio of steel plate-concrete walls with inclined studs under forced oscillation

机译:强迫振动作用下带有倾斜螺柱的钢板混凝土墙的固有频率和阻尼比

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The natural frequency and damping ratio of steel plate-concrete (SC) walls subjected to forced oscillation were analytically reviewed to determine the effects of stud shape and spacing on the behaviour of SC walls. Nine finiteelement (FE) analyses were conducted considering different stud shapes and spacings. Shear-dominated (SC-S) and flexure-dominated (SC-M) FE models of SC walls were considered, and the non-linearity of the contact, the connection and the material properties were used. To verify the adequacy of the analytical model and the feasibility of the proposed analysis method, the results of laboratory experiments conducted by other researchers were compared with the analytical results. It was found that the damping ratio obtained from time history analyses showed an overall high value with the half-power bandwidth method and the lowest value with the fitted exponential curve method. For SC-S, for a load of half of the design strength, the damping ratio was approximately 3.0-4.2% while, for the design strength, it was approximately 4.1-5.2%. For SC-M, the ratios were 2.6-3.6% and 3.3-4.5%, respectively. When newly developed studs were used, the damping ratio was slightly reduced and the results for the two developed studs were not consistent. When the distance between studs was increased more than was necessary, the natural frequency reduced and the damping ratio increased.
机译:分析了受力振动的钢板混凝土(SC)墙的固有频率和阻尼比,以确定立柱形状和间距对SC墙性能的影响。考虑了不同的螺柱形状和间距,进行了九个有限元(FE)分析。考虑了SC墙的剪切为主(SC-S)和挠曲为主(SC-M)的有限元模型,并使用了接触,连接和材料特性的非线性。为了验证分析模型的正确性和所提出分析方法的可行性,将其他研究人员进行的实验室实验结果与分析结果进行了比较。结果发现,通过时程分析获得的阻尼比在使用半功率带宽方法时显示出总体较高的值,而在使用拟合指数曲线方法时显示出最低值。对于SC-S,对于设计强度一半的负载,阻尼比约为3.0-4.2%,而对于设计强度,阻尼比约为4.1-5.2%。对于SC-M,该比率分别为2.6-3.6%和3.3-4.5%。当使用新开发的螺柱时,阻尼比略有降低,并且两个开发的螺柱的结果不一致。当双头螺栓之间的距离增加到不必要的程度时,固有频率降低,阻尼比增加。

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