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首页> 外文期刊>Journal of Engineering Mechanics >Free out-of-plane vibrations of masonry walls strengthened with composite materials
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Free out-of-plane vibrations of masonry walls strengthened with composite materials

机译:复合材料增强了砌体墙的自由面外振动

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摘要

The natural frequencies and the out-of-plane vibration modes of one-way masonry walls strengthened with composite materials are studied. Due to the inherent nonlinear behavior of the masonry wall, the dynamic characteristics depend on the level of out-of-plane load (mechanical load or forced out-of-plane deflections) and the resulting cracking, nonlinear behavior of the mortar material, and debonding of the composite system. In order to account for the nonlinearity and the accumulation of damage, a general nonlinear dynamic model of the strengthened wall is developed. The model is mathematically decomposed into a nonlinear static analysis phase, in which the static response and the corresponding residual mechanical properties are determined, and a free vibration analysis phase, in which the dynamic characteristics are determined. The governing nonlinear differential equations of the first phase, the linear differential eigenvalue problem corresponding to the second phase, and the solution strategies are derived. Two numerical examples that examine the capabilities of the model and study the dynamic properties of the strengthened wall are presented. The model is supported and verified through comparison with a step-by-step time integration analysis, and comparison with experimental results of a full-scale strengthened wall under impulse loading. The results show that the strengthening system significantly affects the natural frequencies of the wall, modifies its modes of vibration, and restrains the deterioration of the dynamic properties with the increase of load. The quantification of these effects contributes to the understanding of the performance of damaged strengthened walls under dynamic and seismic loads.
机译:研究了复合材料加固单向砌体墙的固有频率和面外振动模式。由于砌体墙固有的非线性行为,动力特性取决于平面外载荷(机械载荷或强制平面外挠度)的水平以及由此产生的开裂,砂浆材料的非线性行为以及复合系统的脱胶。为了解决非线性和损伤累积的问题,建立了加固墙的通用非线性动力学模型。该模型在数学上分解为非线性静态分析阶段和自由振动分析阶段,在静态分析阶段确定静态响应和相应的残余力学性能,在动力学分析阶段确定动态特性。推导了第一相的控制非线性微分方程,第二相对应的线性微分特征值问题以及求解策略。给出了两个数值示例,它们检查了模型的功能并研究了加筋墙的动力特性。通过与逐步时间积分分析进行比较,并与脉冲荷载下全尺寸加筋墙的实验结果进行比较,对模型进行了支持和验证。结果表明,加固系统显着影响了墙的固有频率,改变了墙的振动模式,并抑制了随着荷载增加而引起的动力特性的恶化。这些影响的量化有助于了解在动态和地震荷载下受损的加固墙的性能。

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