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Study on prediction method of initial stiffness of self-centering energy dissipation braces

机译:自定心能量耗散胶带初始刚度预测方法研究

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The self-centering energy dissipation (SCED) brace is an innovative structural component of seismic-resistant systems that provides a flag-shaped response with good energy dissipation and self-centering capacity. The initial stiffness of the SCED brace is a crucial parameter for brace design and a braced frame system. The current use of SCED braces is limited by the significant discrepancy between the actual and theoretically predicted initial stiffnesses. In this paper, the sources resulting in the inaccurate prediction are identified as the accuracy of the theoretical governing equations and the practical fabrication tolerances of the braces. The accuracies of the governing equations with different levels of complexity are analyzed and compared based on a typical SCED brace. To investigate the reduction effect of fabrication tolerances on the effective axial stiffness, a large number of numerical simulations are conducted on an axially loaded tube member with different tolerance characteristics, including the fundamental length tolerance, contact surface nonuniformity, and load level. According to the trends of the effective axial stiffness, a valid stiffness reduction factor is defined. It can provide good estimates of the reduced axial stiffness under different tolerance parameters. Additionally, the stiffness reduction factor is incorporated into a refined governing equation of an experimental SCED brace to verify the accuracy of the predicted initial stiffness when the effect of the fabrication tolerances is considered. It is shown that the modified governing equation estimates well the actual initial stiffness. Moreover, this prediction equation can be easily extended to other types of SCED braces once the tolerance parameters have been determined.
机译:自定心能量耗散(SCED)支架是抗震系统的创新结构部件,提供了具有良好耗散和自定心能力的国旗形响应。 SCED支架的初始刚度是支架设计和支撑框架系统的关键参数。目前使用SCED括号受实际和理论上预测的初始刚度之间的显着差异的限制。在本文中,导致不准确预测的来源被识别为理论上的控制方程的准确性和牙箍的实际制造公差。分析并基于典型的SCED支撑进行分析和比较具有不同复杂程度的控制方程的准确性。为了研究制造公差对有效轴向刚度的减少效果,大量数值模拟在具有不同公差特性的轴向装载的管构件上进行,包括基本长度公差,接触表面不均匀性和负载水平。根据有效轴刚度的趋势,定义了有效的刚度减少因子。它可以在不同公差参数下提供对轴向刚度的降低的良好估计。另外,将刚度减少因子掺入实验SCED支架的精制控制方程中,以验证考虑制造公差的效果时预测初始刚度的精度。结果表明,修改的控制方程估计了实际的初始刚度。此外,一旦确定了公差参数,该预测等式可以容易地扩展到其他类型的SCED支架。

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