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首页> 外文期刊>Journal of Engineering Mechanics >Damping and viscoelastic dynamic response of RC flexural members strengthened with adhesively bonded composite materials
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Damping and viscoelastic dynamic response of RC flexural members strengthened with adhesively bonded composite materials

机译:粘结复合材料增强RC受弯构件的阻尼和粘弹性动力响应

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摘要

A theoretical approach for the dynamic viscoelastic response of reinforced concrete (RC) beams and one-way slabs strengthened with adhesively bonded composite materials is developed. The analytical model is based on variational principles, dynamic equilibrium, and compatibility of deformations between the structural components (RC beam/slab, adhesive, composite material). The model accounts for the deformability of the adhesive layer and for its high order stress and displacement fields. The equations of motion and the boundary, continuity, and initial conditions are derived via the extended Hamilton's principle. The Kelvin-Voigt approach is adopted for the consideration of the viscoelastic response of the adhesive material and the internal damping in the composite material and the RC member. The Rayleigh damping model is used for the external viscous damping of the RC member. The dynamic governing equations are solved using the Newmark time integration and a multiple shooting algorithm is used for the solution in space. A numerical example is presented to examine the capabilities of the model, to highlight the unique phenomena associated with the viscoelastic response of the adhesive material, and to demonstrate its influence on the local and global behavior. The results obtained using the analytical model show that the viscoelastic response of the adhesive material may significantly modify the critical shear and peeling stresses at the interfaces of the adhesive layer.
机译:提出了钢筋混凝土梁和单板粘结复合材料加固的动态粘弹性响应的理论方法。分析模型基于变化原理,动态平衡以及结构组件(RC梁/平板,粘合剂,复合材料)之间的变形兼容性。该模型考虑了粘合剂层的可变形性及其高阶应力和位移场。运动方程以及边界,连续性和初始条件是通过扩展的汉密尔顿原理导出的。考虑到粘合材料的粘弹性响应以及复合材料和RC构件的内部阻尼,采用了Kelvin-Voigt方法。瑞利阻尼模型用于RC构件的外部粘性阻尼。使用Newmark时间积分求解动态控制方程,并使用多重射击算法求解空间。给出了一个数值示例,以检查模型的功能,突出与粘合剂材料的粘弹性响应相关的独特现象,并证明其对局部和全局行为的影响。使用分析模型获得的结果表明,粘合剂材料的粘弹性响应可以显着改变粘合剂层界面处的临界剪切应力和剥离应力。

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