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Application of Laser Vibrometry to Assess Defects in Ship Hull’s Welded Joints’ Technical Condition

机译:激光振动器在船体焊接关节技术条件下评估缺陷的应用

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摘要

The paper presents the measurement process and test results for six thin-walled plates with different dynamic characteristics caused by different defects of welded joints. The tests were carried out using non-destructive testing (NDT). The authors made an attempt to determine the validity of the use and degree of effectiveness of the tests based on laser vibrometry in detecting defects in welded joints. The tests of welded plates were carried out using displacement laser sensors and piezoelectric accelerometers, while the source of vibration extortion was a modal hammer. In the adopted measurement methodology, the application of accelerometers was to obtain the reference data, which allowed for comparison with the measurement data obtained from the laser vibrometer. The analysis of the obtained measurement data, in the fields of time and frequency, made it possible to verify the correctness of the data obtained by means of laser vibrometry and to determine the requirements which are necessary for the correct performance of NDT tests and in the future structural health monitoring (SHM) system of welded joints with the use of a laser vibrometer. The mathematical model developed in the MSC software Pastran-Nastran was also used in the work. The model was developed for the purpose of mutual verification of the measurement and calculation tests. At the present stage of work, it can be stated that the results obtained by laser vibrometry methods should be treated as a supplement to the research conducted with traditional piezoelectric accelerometers. In certain situations, they can be used as an alternative to accelerometers, due to the fact that laser sensors do not require direct contact with the examined object. Where the object under test may be in a strong electromagnetic field, optical sensors are better suited than contact sensors.
机译:本文介绍了六个薄壁板的测量过程和测试结果,具有由焊接接头的不同缺陷引起的不同动态特性。使用非破坏性测试(NDT)进行测试。作者试图确定基于激光振动器检测焊接接头缺陷的试验的使用和有效程度的有效性。使用位移激光传感器和压电加速度计进行焊接板的测试,而振动敲击源是模态锤。在采用的测量方法中,加速度计的应用是获得参考数据,其允许与从激光振动计获得的测量数据进行比较。在时间和频率领域中获得所获得的测量数据的分析使得可以验证通过激光振动器获得的数据的正确性,并确定对NDT测试的正确性能所需的要求以及使用激光振动计的焊接接头的未来结构健康监测(SHM)系统。在工作中也使用了MSC软件Pastran-Nastran中开发的数学模型。该模型是为互核测量和计算测试的相互验证而开发的。在本工作阶段,可以说,通过激光振动方法获得的结果应被视为用传统压电加速度计进行的研究的补充。在某些情况下,它们可以用作加速度计的替代方案,因为激光传感器不需要直接接触被检查的物体。在所测试的物体可以处于强电磁场中,光学传感器更适合接触传感器。

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