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Stochastic modelling of crackwidth in reinforced concrete beams subjected to fatigue loading

机译:疲劳荷载作用下钢筋混凝土梁裂缝宽度的随机模拟

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摘要

Cracking is one of the serviceability limit states to be considered in the design of reinforced concrete members subjected to fatigue loading. Due to variations in material properties and cross-sectional dimensions, the evolution of crackwidth with applied load cycles should be treated as a stochastic process. In this paper a nonhomogeneous Markov chain (NHMC) model is proposed to model the evolution of maximum crackwidth with applied load cycles. Formulations for calculating the elements of transition probability matrix and unconditional probability vector at any applied load cycle have been presented. Assuming that the maximum crackwidth at any stage of loading cycle and at any two successive loading cycles can be described by truncated uni-variate and bi-variate normal distributions, respectively, the unconditional probability vectors have been computed, at different applied load cycles, for four beams subjected constant amplitude fatigue loading, and whose test results are available in the literature. By comparing the estimated state with the experimentally observed state at different applied load cycles, it is inferred that (1) it is important to consider the correlation between the maximum crackwidths between two successive applied load cycles (especially at lower applied load cycles); and (2) NHMC model shows promise for modelling fatigue cracking in reinforced concrete beams.
机译:裂纹是承受疲劳载荷的钢筋混凝土构件设计中要考虑的使用寿命极限状态之一。由于材料性能和横截面尺寸的变化,应将裂纹宽度随施加的载荷循环的变化视为随机过程。本文提出了一种非均质的马尔可夫链(NHMC)模型来模拟最大裂纹宽度随载荷循环的演变。提出了用于在任何施加的载荷循环下计算转移概率矩阵和无条件概率向量的元素的公式。假设可以分别通过截断的单变量和双变量正态分布来描述在加载循环的任何阶段和在任何两个连续的加载循环中的最大裂纹宽度,则在不同的应用载荷循环下,无条件概率矢量已经计算出来,四个梁承受恒定振幅疲劳载荷,其测试结果可从文献中获得。通过将估计状态与不同施加载荷循环下的实验观察状态进行比较,可以得出以下结论:(1)重要的是要考虑两个连续施加载荷循环之间的最大裂缝宽度之间的相关性(尤其是在较低的施加载荷循环下); (2)NHMC模型显示了对钢筋混凝土梁疲劳裂纹进行建模的希望。

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