衰减
相(物质)
振幅
信号(编程语言)
声学
材料科学
光学
超声波
兰姆波
补偿(心理学)
无损检测
散射
有限元法
领域(数学)
激发
相位成像
超声波传感器
信号处理
成像技术
相位补偿
相位展开
断层摄影术
相位畸变
超声成像
相位角(天文学)
作者
Chikao Ishikawa,Kyosuke Shimizu,Youichi Ito,Ayumu Osumi
标识
DOI:10.35848/1347-4065/ae4ab2
摘要
Abstract We propose an airborne ultrasound non-destructive testing method to visualize multiple defects in thin metal plates. Conventional amplitude-based imaging struggles to detect multiple defects due to signal attenuation caused by scattering at preceding defects. To address this, we investigated phase imaging and compared it with a method applying amplitude attenuation compensation to conventional imaging. Verification was conducted through finite element method analysis and experiments using a duralumin plate with three series-aligned wall-thinning defects. While conventional amplitude imaging identified only the defect closest to the excitation point, both investigated approaches successfully visualized all three defects, confirming the effectiveness of phase imaging. Furthermore, assuming practical field applications, phase imaging was evaluated at various incident angles (0°, 45°, and 90°) relative to the defect alignment. Results demonstrated successful imaging across all angles, proving its robustness.
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