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Prediction of Fatigue Life of Welded Beam-to-Column Connections under Earthquake Loading

机译:地震作用下梁柱连接处的疲劳寿命预测

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摘要

A building may suffer damage during an earthquake as a result of inelastic deformations developed in the members or connections. It is important that the structural integrity of the building be assessed to ensure the safety of the occupants. This assessment includes evaluating the ability of the structure to resist the demand from subsequent aftershocks and a major earthquake. In this paper a practical methodology to determine the low-cycle fatigue life of welded structural steel connections subject to inelastic cyclic loading is presented. The methodology is based on concepts of low-cycle fatigue and micromechanics, where an accumulated crack length based on a time history of strain and the corresponding triaxiality stress condition that develops in the structural component is calculated and used to establish the fatigue life. The methodology was used to predict the fatigue life of welded beam-to-column connection test specimens subjected to inelastic loading. A comparison with test results indicates that the methodology predicts reasonably well the relationship between number of cycles to fracture and the plastic rotation range observed in the test specimens.
机译:由于构件或连接处发生非弹性变形,建筑物可能会在地震中遭受损坏。重要的是要评估建筑物的结构完整性,以确保居住者的安全。评估包括评估结构抵抗后续余震和大地震的需求的能力。本文提出了一种实用的方法来确定承受非弹性循环载荷的焊接结构钢连接的低周疲劳寿命。该方法基于低周疲劳和微力学的概念,其中基于应变的时间历史和在结构部件中出现的相应三轴应力条件计算出累积的裂纹长度,并将其用于建立疲劳寿命。该方法用于预测承受非弹性载荷的焊接梁对柱连接测试样品的疲劳寿命。与测试结果的比较表明,该方法可以较好地预测断裂循环数与试样中观察到的塑性旋转范围之间的关系。

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