Experimental studies of the energy dissipation processes at the tops of fatigue cracks in the elements of bridge structures

L. Solovyev, V. Fedorenko
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Abstract

In the article, the authors investigated the possibility of using the thermal control method for diagnosing fatigue cracks in the metal superstructure, determined the necessary parameters for that control method. The studies were conducted during cantilevered steel samples fatigue tests simulating the superstructure beam wall operation, reinforced with stiffening ribs. To carry out the experiments were developed a test setup and a loading procedure at the various intensity of exposure. An electric motor with eccentrics is used as a loading device. The sample surface heating was recorded by thermal imagers with 0.03 K and 0.05 K temperature sensitivities and 60 frames/s and 9 frames/s shooting speed, respectively. Was confirmed the possibility of determining crack presence before its emergence to the surface namely at the stage of its initiation, and also were determined the self-heating zone dimensions at the tip of a crack. The conducting a laboratory experiment technique on the dissipative processes study in the metal superstructure elements is described.
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桥梁结构单元疲劳裂纹顶部能量耗散过程的试验研究
本文探讨了用热控制方法诊断金属上部结构疲劳裂纹的可能性,确定了热控制方法所需的参数。研究是在悬臂钢试件疲劳试验中进行的,模拟上部结构梁墙的运行,用加劲肋加固。为了进行实验,开发了不同暴露强度下的测试装置和加载程序。装有偏心装置的电动机被用作装载装置。采用温度灵敏度分别为0.03 K和0.05 K,拍摄速度分别为60帧/s和9帧/s的热像仪记录样品表面加热。证实了在裂纹出现到表面之前即裂纹起裂阶段确定裂纹存在的可能性,并确定了裂纹尖端的自热区尺寸。介绍了金属上层建筑构件耗散过程研究的室内实验技术。
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