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Analysis of hysteresis rule of energy-saving block and invisible multi-ribbed frame composite wall

机译:节能块滞后规律分析和看不见的多罗纹框架复合墙

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The energy-saving block and invisible multi-ribbed frame composite wall (EBIMFCW) is a new type of load-bearing wall. The study of this paper focus on it is hysteresis rule under horizontal cyclic loading. Firstly, based on the experimental data of the twelve specimens under horizontal cyclic loading, the influence of two important parameters of axial compression ratio and shear-span ratio on the restoring force model was analyzed. Secondly, a tetra-linear restoring force model considering four feature points and the degradation law of unloading stiffness was established by combining theoretical analysis and regression analysis of experimental data, and the theoretical formula of the peak load of the EBIMFCW was derived. Finally, the hysteretic path of the restoring force model was determined by analyzing the hysteresis characteristics of the typical hysteresis loop. The results show that the curves calculated by the tetra-linear restoring force model in this paper agree well with the experimental curves, especially the calculated values of the peak load of the wall are very close to the experimental values, which can provide a reference for the elastic plastic analysis of the EBIMFCW.
机译:节能块和无形的多肋框架复合墙(EBIMFCW)是一种新型的承载壁。对本文的研究专注于它是水平循环加载下的滞后规则。首先,基于水平循环负载下12种样本的实验数据,分析了轴向压缩比和剪切跨度比对恢复力模型的影响。其次,通过组合实验数据的理论分析和回归分析,建立了考虑四个特征点和卸载刚度的降解规律的四线性恢复力模型,衍生EBIMFCW的峰值负荷的理论公式。最后,通过分析典型滞后回路的滞后特性来确定恢复力模型的滞后路径。结果表明,本文中的四线性恢复力模型计算的曲线与实验曲线很好地吻合,特别是墙壁的峰值负荷的计算值非常接近实验值,这可以提供参考EBIMFCW的弹性塑性分析。

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