使用改进的拉伸技术计算连贯波的相对速度变化
Shengyang Zeng1, Jiuzhou Tu2, Clayton Malone2
1School of Traffic and Transportation Engineering, Central South University, No. 22, Shaoshan South Road, Changsha, 410075, Hunan, China; Department of Civil and Environmental Engineering, University of Nebraska-Lincoln, 1110 S 67th St., Omaha, 68182, NE, USA; School of Civil and Environmental Engineering, Nanyang Technological University, Nanyang Avenue 50, Singapore, 639798, Singapore.
Ultrasonics
|September 24, 2025
概括
这项研究改进了超声波速度变化测量,使用了修改后的伸展交叉相关技术. 增强方法为非破坏性测试和金属结构健康监测提供了更高的准确性.
科学领域:
- 材料科学 材料科学 材料科学
- 声学 声学 在声学方面
- 非破坏性测试是一种非破坏性测试.
背景情况:
- 拉伸交叉相关技术估计了结构健康监测的相对波速变化 (dv/v0).
- 它对金属中的连贯波的准确性尚未得到充分证实.
- dv/v0对于检测异质材料中的损伤至关重要.
研究的目的:
- 理论上研究连贯波的拉伸方法中的错误.
- 为了提高准确性,引入一个修改后的算法.
- 用模拟和实验验证新方法.
主要方法:
- 在拉伸交叉相关技术中对错误源的理论分析.
- 通过拉伸参考信号来开发修改过的算法.
- 数字模拟和实验验证使用热负荷对尼龙标本.
主要成果:
- dv/v0估计的准确性取决于拉伸窗口,波传输时间和信号频率.
- 修改后的算法在模拟和实验中显示出更高的准确性.
- 用尼龙成功测量了热诱导的速度变化.
结论:
- 修改后的拉伸交叉相关技术提高了对连贯波的dV/V0测量的准确性.
- 这一进步对于金属的声弹性测试具有重要意义.
- 该研究为结构健康监测应用提供了一种经过验证的方法.
关键词:
声波弹性是一种声波弹性.符号波干涉测量 (coda wave interferometry) 是一种用于测量波干涉的方法.相对波速变化的相对波速变化.拉伸的技术 拉伸的技术温度 温度是指温度.更多相关视频
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