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A damage-based life prediction model of concrete under variable amplitude fatigue loading.

机译:可变振幅疲劳载荷下混凝土的基于损伤的寿命预测模型。

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摘要

This work investigates damage characteristics and fatigue life of plain concrete subjected to flexural loading. This type of fatigue loading is of concern in the design of concrete bridges, seashore structures, and concrete pavement slabs since the flexural stresses in these structures can be critical. Both laboratory experiments and theoretical analysis have been conducted. Concrete beam specimens were prepared and tested in fourpoint bending under constant amplitude fatigue loading condition. The maximum displacement was recorded during the tests and used as a damage parameter to establish a 'damage curve' at different stress levels. The damage curves relate the damage propagation to the increase in the number of loading cycles. By implementing the damage curves and the cubic spline surface fitting technique a 'damage surface' has been introduced. The damage surface relates the damage to the number of loading cycles and the stress level. A damage mechanics based model, that utilize the damage surface, is proposed to predict the fatigue life of plain concrete. The proposed model is able to account for the nonlinear propagation and accumulation of damage and can model the effect of the magnitude and sequence of variable amplitude fatigue loading. Two-stage variable amplitude fatigue tests were performed to examine the validity of the proposed model. The model shows close agreement with the test results. The present study indicates that the fatigue life of concrete is greatly influenced by the magnitude and sequence of applied variable amplitude loading. It is seen that the linear damage theory proposed by Miner is not applicable to concrete under such loading cases. The proposed non-linear damage model, which includes the effects of the magnitude and sequence of applied fatigue loadings, allow for more realistic fatigue analysis of concrete structures.
机译:这项工作研究了承受弯曲载荷的普通混凝土的损伤特性和疲劳寿命。在混凝土桥梁,海滨结构和混凝土路面板的设计中,这种疲劳载荷是值得关注的,因为这些结构中的弯曲应力可能很关键。实验室实验和理论分析均已进行。准备了混凝土梁试件,并在恒定振幅疲劳载荷条件下进行四点弯曲测试。在测试过程中记录了最大位移,并将其用作损伤参数以建立不同应力水平下的“损伤曲线”。损伤曲线将损伤的传播与载荷循环次数的增加联系起来。通过实现损伤曲线和三次样条曲面拟合技术,引入了“损伤表面”。损伤表面将损伤与加载循环次数和应力水平相关联。提出了一种基于损伤力学的模型,该模型利用损伤表面来预测普通混凝土的疲劳寿命。所提出的模型能够解决损伤的非线性传播和累积,并且可以对可变振幅疲劳载荷的大小和顺序的影响进行建模。进行了两阶段的可变振幅疲劳试验,以检验所提出模型的有效性。该模型显示与测试结果非常吻合。目前的研究表明,混凝土的疲劳寿命受可变振幅荷载的大小和顺序的影响很大。可以看出,在这种情况下,Miner提出的线性损伤理论不适用于混凝土。所提出的非线性损伤模型包括疲劳载荷的大小和顺序的影响,可以对混凝土结构进行更实际的疲劳分析。

著录项

  • 作者

    Hamdy, Usama Mohamed Aly.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 182 p.
  • 总页数 182
  • 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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