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Nonlinear dynamic finite element analysis of steel frames with semirigid joints.

机译:半刚性节点钢框架的非线性动力有限元分析。

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摘要

In this study a nonlinear dynamic analysis computer program for planar steel frames with semi-rigid connections is developed. The semi-rigid connections are modeled as a massless rotational spring element. This element has two nodes, one connected to the beam end, and the other to the column end. Its hysteresis behavior, under cyclic loads, is expressed by a moment-rotation relationship.; In order to develop rational moment rotation relationships, a total of 55 full-scale different types of commonly used semi-rigid connection specimens were tested to record their moment-rotation behavior under cyclic loads. These included double web angle (all bolted, and welded to beam web and bolted to column flange), top. and seat angle, flush end-plate, and extended end-plate connections. The failure modes observed are reported, which include either excessive rotation of the connection due to yielding or bolt fracture. Some of the all bolted double web angle connections failed due to beam web bearing failure. The moment-rotation hysteresis behavior of all connections was found to be nonlinear in nature.; To analytically describe this behavior for use in the computer program, the actual moment-rotation behavior was idealized by piecewise linear segments. For connections which failed due to either excessive connection rotation or bolt fracture, three types of linear segment models were constructed for each connection specimen tested. These included the elasto-plastic, bilinear, and modified bilinear models. These models differ in complexity and the way in which the connection yield moment is defined. Comparing the experimental moment-rotation hysteresis loops recorded to those predicted by the analytical models, it is found that the modified bilinear model best idealized the behavior; however the elasto-plastic model is easiest to construct. For all bolted double web angle connections which failed due to beam web failed a separate trilinear model is suggested.; In the dynamic analysis procedure presented, a Newton-Raphson iterative procedure is used to march along the moment-rotation curve for each connection spring element, and the dynamic equations of motion are solved using the constant acceleration method. No damping is considered in the analytical formulation, though due to the hysteresis behavior of the connection there will be some inherent damping. The computer program is shown to predict convergent solutions as the time step is refined to iteratively march the solution in the time domain. To further verify the computer program developed, results of a parametric study are also presented which investigate the effects of the connection moment-rotation model parameters, type of hysteresis model used, and different earthquake records on the sway response history of a frame. Actually, the dynamic computer program was an extension of a static analysis computer program developed for planar frames with semi-rigid connections. Details of this program are. presented first. In this formulation the monotonic (static) moment-rotation behavior of the semi-rigid connection is modeled by an exponential function, and geometric nonlinearity (P-Delta effects) of the frame members is considered. (Abstract shortened by UMI.)
机译:在这项研究中,开发了一种用于半刚性连接的平面钢框架的非线性动力分析计算机程序。半刚性连接建模为无质量的旋转弹簧元件。该单元有两个节点,一个连接到梁端,另一个连接到柱端。在循环载荷下,其磁滞特性由力矩-旋转关系表示。为了建立合理的力矩旋转关系,总共测试了55个满量程的不同类型的常用半刚性连接样本,以记录它们在循环载荷下的力矩旋转行为。其中包括双腹板角(全部用螺栓固定,并焊接到梁腹板上,并用螺栓固定到立柱法兰上),顶部。和阀座角度,齐平的端板和扩展的端板连接。报告了观察到的故障模式,包括由于屈服或螺栓断裂导致连接过度旋转。由于梁腹板轴承故障,所有螺栓连接的双腹板角连接中的某些连接失败。发现所有连接的力矩旋转磁滞行为本质上是非线性的。为了分析地描述这种行为以便在计算机程序中使用,实际的力矩旋转行为通过分段线性段进行了理想化。对于由于旋转过度或螺栓断裂而导致连接失败的情况,对于每个测试的连接试样均构建了三种类型的线性段模型。其中包括弹塑性,双线性和修改后的双线性模型。这些模型在复杂性和定义连接屈服力矩的方式方面有所不同。将实验记录的力矩旋转磁滞回线与解析模型预测的磁滞回线进行比较,发现改进的双线性模型最理想地实现了行为。但是,弹塑性模型最容易构建。对于所有由于梁腹板失效而导致的螺栓连接的双腹板角连接,建议使用单独的三线性模型。在提出的动态分析过程中,使用牛顿-拉夫森迭代过程沿着每个连接弹簧元件的力矩-旋转曲线行进,并使用恒定加速度法求解运动的动力学方程。尽管由于连接的滞后行为,会存在一些固有的阻尼,但在分析公式中未考虑阻尼。随着时间步长的改进,计算机程序显示出可以预测收敛解,从而在时域中迭代进行求解。为了进一步验证开发的计算机程序,还给出了参数研究的结果,该研究研究了连接力矩-旋转模型参数,所使用的磁滞模型的类型以及不同地震记录对车架摇摆响应历史的影响。实际上,动态计算机程序是对具有半刚性连接的平面框架开发的静态分析计算机程序的扩展。该程序的细节是。首先提出。在此公式中,半刚性连接的单调(静态)力矩-旋转行为通过指数函数建模,并考虑了框架构件的几何非线性(P-Delta效应)。 (摘要由UMI缩短。)

著录项

  • 作者

    Abolmaali, Ali.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Applied Mechanics.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 302 p.
  • 总页数 302
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用力学;建筑科学;
  • 关键词

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