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Titlebook: Recent Development of Alternating Current Field Measurement Combine with New Technology; Xin‘an Yuan,Wei Li,Jianchao Zhao Book‘‘‘‘‘‘‘‘ 202

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楼主: 小天使
发表于 2025-3-25 05:54:45 | 显示全部楼层
Xin‘an Yuan,Wei Li,Jianchao ZhaoThis book is open access, which means that you have free and unlimited access.Provide a comprehensive review of ACFM combine with new technology.Include in-depth discussions on RACFM, Multifrequency A
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Detection of Cracks in Metallic Objects by Arbitrary Scanning Direction Using a Double U-Shaped Ort model is employed to analyze the rotating current field induced by the double u-shaped orthogonal ACFM probe. The cracks detection experiments are carried out to test cracks at arbitrary scanning direction. Results show that the crack can be detected effectively at arbitrary scanning direction using the double u-shaped orthogonal ACFM probe.
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Visual ACFM System Modeling and Optimization for Accurate Measurement of Underwater Cracks,y display the profiles of underwater structure cracks. The measuring errors of the crack length increase as the scanning speed increases; it is less than 10% at scanning speed of 3.81 mm/s, and smaller to longer cracks.
发表于 2025-3-26 03:17:03 | 显示全部楼层
High Sensitivity Rotating Alternating Current Field Measurement for Arbitrary-Angle Underwater Cractive to cracks perpendicular to the induced current than cracks with other angles. In this paper, a rotating alternating current field measurement (RACFM) method and underwater test system are present for the detection of arbitrary-angle cracks with high sensitivity. The RACFM is proved by simulatio
发表于 2025-3-26 07:06:45 | 显示全部楼层
Detection of Cracks in Metallic Objects by Arbitrary Scanning Direction Using a Double U-Shaped Ortrent should be perpendicular to the crack. So traditional ACFM probe needs to scan along the cracks. In this paper, a double u-shaped orthogonal ACFM probe is present for cracks detection by induced rotating current field at arbitrary scanning direction on structures. The finite element method (FEM)
发表于 2025-3-26 12:26:10 | 显示全部楼层
A Novel Fatigue Crack Angle Quantitative Monitoring Method Based on Rotating Alternating Current Fionitoring of crack propagation angle is very important for the safety assessment of the aerospace equipment, which is still a challenge by the conventional structural health monitoring (SHM) method. In this paper, a novel crack angle quantitative monitoring method is presented based on the rotating
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