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Compressive behavior of low shape factor lead-rubber bearings: Full-scale testing and numerical modeling

机译:低形状因数铅橡胶轴承的压缩行为:全面测试和数值模型

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摘要

Low shape factor lead-rubber bearings, defined as bearings with relatively thick rubber layers, have been confirmed by several studies to be feasible for vertical seismic isolation because of their flexibility in the vertical direction. However, information on various behavior aspects of low shape factor lead-rubber bearings remains inadequate. With much greater vertical deformation under working conditions than conventional high or medium shape factor bearings, low shape factor lead-rubber bearings display certain unique mechanical behaviors due to the nonlinearity and inelasticity of lead plugs. The applicability of existing design equations to the compressive stiffness of low shape factor bearings remains unknown. Although it has been demonstrated that the axial load has an insignificant effect on the compressive stiffness of lead-rubber bearings with high or medium shape factors, few studies have referred to the influence of the axial load on the vertical stiffness of low shape factor bearings. To investigate the unique compressive behavior of the low shape factor lead-rubber bearings, bearings with various shape factors were tested under various axial loads to compare their compressive behavior in terms of compressive stiffness and force-displacement relationships. The obtained results indicate that the existing design formula for compressive stiffness is not applicable for lead-rubber bearings with a shape factor lower than 11. Although the axial load has a minor influence on the compressive stiffness of lead-rubber bearings with high shape factors, it has a non-negligible influence on that of low shape factor bearings. In addition, a unique behavior characterized by hardening in compressive stiffness is found in the force-displacement relationships of the bearings. Numerical models were developed and calibrated with the experimental results. A parametric study of the numerical models shows that the hardening phenomenon is caused by sliding between the lead-steel interfaces and the lead-rubber interfaces. This sliding decreases the vertical stiffness and reduces the energy dissipation of the bearings. An increase in the coefficient of friction between the interfaces can increase the compressive stiffness of bearings with relatively high shape factors, but bearings with low shape factors are insensitive to the friction coefficients.
机译:低形状因数铅橡胶轴承(定义为橡胶层相对较厚的轴承)已被多项研究证实,因为它们在垂直方向上具有柔性,因此对于垂直地震隔离是可行的。但是,有关低形状因数铅橡胶轴承各种性能方面的信息仍然不足。与常规的高或中等形状因数轴承相比,在工作条件下垂直变形要大得多,低形状因数的铅橡胶轴承由于引线塞的非线性和非弹性而表现出某些独特的机械性能。现有设计方程式对低形状系数轴承抗压刚度的适用性仍然未知。尽管已经证明轴向载荷对形状系数高或中等的铅橡胶轴承的抗压刚度影响不大,但很少有研究提到轴向载荷对低形状系数轴承的垂直刚度的影响。为了研究低形状因数铅橡胶轴承的独特压缩性能,对各种形状因数的轴承在各种轴向载荷下进行了测试,以从压缩刚度和力-位移关系方面比较它们的压缩性能。所得结果表明,现有的抗压刚度设计公式不适用于形状系数低于11的铅橡胶轴承。尽管轴向载荷对形状系数高的铅橡胶轴承的抗压刚度影响较小,它对低形状系数轴承的影响不可忽略。另外,在轴承的力-位移关系中发现了以压缩刚度变硬为特征的独特行为。开发了数值模型,并根据实验结果进行了校准。数值模型的参数研究表明,硬化现象是由铅-钢界面和铅-橡胶界面之间的滑动引起的。这种滑动会降低垂直刚度并减少轴承的能量耗散。界面之间的摩擦系数的增加可以增加具有相对较高形状系数的轴承的压缩刚度,但是具有较低形状系数的轴承对摩擦系数不敏感。

著录项

  • 来源
    《Engineering Structures》 |2020年第15期|110030.1-110030.13|共13页
  • 作者

  • 作者单位

    Tongji Univ Coll Civil Engn Shanghai 200092 Peoples R China|Univ Calif Berkeley Dept Civil & Environm Engn Pacific Earthquake Engn Res PEER Ctr Berkeley CA 94720 USA;

    Tongji Univ Coll Civil Engn Shanghai 200092 Peoples R China;

    Univ Calif Berkeley Dept Civil & Environm Engn Berkeley CA 94720 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lead-rubber bearing; Low shape factor; Compressive stiffness; Hardening behavior; Parametric analysis;

    机译:铅橡胶轴承;形状系数低;抗压刚度;硬化行为;参数分析;

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