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Ultrasonic wave intensity reflected from fretting fatigue cracks at bolt joints of aluminum alloy plates

机译:铝合金板螺栓接头微动疲劳裂纹反射的超声波强度

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The in-process ultrasonic measurement was carried out during fatigue testing of the bolted aluminum alloy 2024-T3 plates by using a water bag to obtain the surface acoustic wave (SAW) reflected from a fretting fatigue crack. The echo reflected from the fretting fatigue crack was detected at a position 1.5-2.1 mm ahead of the bolt hole under fastened conditions. In the fatigue process, the intensity of the scattering wave gradually increased in the fretted region ahead of the bolt hole with the number of fatigue cycles, and then a steep increase in the scattering wave intensity was observed. Relationships between the crack length and the average and the peak intensities were also obtained, and the average and peak intensities increased with the crack length. A relationship between the average intensity of the scattering wave and the surface roughness was also obtained. Experimental results suggested that appearance of a fretting fatigue crack in the fretted region caused a steep increase in the scattered wave intensity.
机译:在螺栓连接的铝合金2024-T3板的疲劳测试过程中,通过使用水袋进行过程中的超声测量,以获得从微动疲劳裂纹反射的表面声波(SAW)。在紧固条件下,从微动疲劳裂纹反射的回波在螺栓孔之前1.5-2.1 mm的位置被检测到。在疲劳过程中,随着疲劳循环次数的增加,在螺栓孔前的磨边区域中,散射波的强度逐渐增加,然后观察到散射波强度的急剧增加。还获得了裂纹长度与平均强度和峰值强度之间的关系,并且平均强度和峰值强度随裂纹长度而增加。还获得了散射波的平均强度与表面粗糙度之间的关系。实验结果表明,在微动区域出现微动疲劳裂纹会导致散射波强度急剧增加。

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