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A new visco-plastic device for seismic protection of structures.

机译:一种用于结构抗震保护的新型粘塑性装置。

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摘要

A new visco-plastic damper for seismic protection is introduced. This device combines and enhances many of the proven characteristics of both displacement-dependent and velocity-dependent devices.; The device consists of a block of a high-damping viscoelastic material sandwiched between two steel shapes (plates or channels) bent in a certain configuration to amplify the deformations in the device in order to obtain large tensile and compressive strains in the viscoelastic material. Under low levels of vibrations, the device dissipates energy through amplified strains in the viscoelastic material only; however, under moderate to strong levels of vibrations, a new source of energy dissipation is added through the yielding of the steel elements. The inelastic behavior of the steel elements is controlled by the rigidity of the viscoelastic material. In addition to the energy dissipation, the device provides stiffness through the steel elements as well as the viscoelastic material. Moreover, one of the main advantages of the device is that its behavior is fully controlled through different parameters.; First, a nonlinear time history analysis was conducted on structures with a preliminary model of the device using SAP2000 program to check the effectiveness of the device on the response of different structures under ground excitations. The device resulted in better improvement in the structural response compared to the existing viscoelastic dampers.; A three-dimensional finite element model was developed for the device using the finite element package, ABAQUS. The hyperelastic and viscoelastic behavior of the block of the viscoelastic material were considered. The inelastic behavior of the steel elements was considered as well using the Von Mises yielding criterion. The device was analyzed under different dynamic loadings with different frequencies.; Three simplified models were developed using SAP2000 program in order to facilitate the modeling of the device for structural engineers. These models were compared to the detailed finite element model to check their accuracy. The best model was used in the analysis of a multi-story steel frame with the visco-plastic devices under different ground excitations. Two different arrangements of the device were considered. The devices caused significant reduction in the story displacements, base shear and bending moment at column bases.
机译:介绍了一种用于地震防护的新型粘塑性阻尼器。该设备结合并增强了位移相关和速度相关设备的许多成熟特性。该设备由一块高阻尼粘弹性材料组成,夹在以一定配置弯曲的两个钢制形状(板或通道)之间,以放大设备中的变形,从而在粘弹性材料中获得较大的拉伸应变和压缩应变。在低水平的振动下,设备仅通过粘弹性材料中的放大应变来耗散能量。但是,在中等到强烈的振动水平下,通过屈服钢元素会增加新的能量​​消散来源。钢元件的非弹性行为由粘弹性材料的刚度控制。除能量耗散外,该设备还通过钢元件和粘弹性材料提供刚度。此外,该设备的主要优点之一是可以通过不同的参数来完全控制其行为。首先,使用SAP2000程序使用设备的初步模型对结构进行了非线性时程分析,以检查设备在地面激励下对不同结构响应的有效性。与现有的粘弹性阻尼器相比,该装置的结构响应得到了更好的改善。使用有限元封装ABAQUS为该设备开发了三维有限元模型。考虑了粘弹性材料块的超弹性和粘弹性行为。也使用冯·米塞斯(Von Mises)屈服准则来考虑钢元素的非弹性行为。在不同的动态负载和不同的频率下分析了该设备。为了简化结构工程师对设备的建模,使用SAP2000程序开发了三个简化的模型。将这些模型与详细的有限元模型进行比较,以检查其准确性。最佳模型用于在不同地面激励下具有粘塑性装置的多层钢框架的分析。考虑了设备的两种不同布置。该设备显着减少了柱脚处的层位移,基础剪力和弯矩。

著录项

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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