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Performance of Repaired Concrete under Cyclic Flexural Loading

机译:循环弯曲荷载下修复混凝土的性能

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摘要

There is limited research reported on the effect of cyclic loading on cement-based repair materials as conducting such tests is time consuming. To overcome this issue, this study utilized a novel loading regime consisting of cycle groups with increasing stress amplitude to accelerate the test process. The Palmgren-Minder rule was used to estimate the fatigue life of repaired specimens. Specimens repaired with Mix M (cementitious repair mortar), which was estimated to have the highest 2-million-cycle fatigue endurance limit (77.4%), showed the longest fatigue life (95,991 cycles) during the cyclic loading test, the highest slant, and splitting bond strength among all repair mixes. The estimated two-million cycle fatigue endurance limit of Mix S (70.8%) was very similar to that was reported in literature (71%) using the traditional loading method. This study confirms the usefulness of Palmgren-Minder rule on estimating the fatigue life of repaired specimens. Additionally, the use of the novel loading regime showed the benefit of shortening the test process while producing results similar to those from using traditional loading methods. To improve the prediction accuracy, future research is required to modify the failure criteria to accommodate specimens that may not fail even when the average flexural strength is met.
机译:有限的研究报告了循环加载对水泥的维修材料的影响,因为进行这种测试是耗时的。为了克服这个问题,本研究利用了一种由循环组组成的新型装载制度,随着应力幅度的增加,以加速测试过程。 Palmgren-Minder规则用于估计修复标本的疲劳寿命。用Mix M(CeMEdity Repair Martar)修复的标本估计具有最高的200亿周期疲劳耐久性限制(77.4%),在循环负载测试期间显示了最长的疲劳寿命(95,991个循环),最高的倾斜,所有修复混合物中的分裂粘合强度。估计的二百万个循环疲劳耐久性极限(70.8%)与使用传统的装载方法在文献(71%)中报道的二百万个疲劳极限。本研究证实了Palmgren-Minder规则对估算修复标本的疲劳寿命的有用性。另外,新颖的装载制度的使用表明,缩短测试过程的益处,同时产生与使用传统装载方法类似的结果。为了提高预测准确性,未来的研究是修改故障标准,以适应可能不会失败的试样,即使在满足平均弯曲强度时也是如此。

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