Resonance track‐and‐dwell testing for crack length measurement on 304L stainless steel

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL Mechanics & Industry Pub Date : 2020-01-01 DOI:10.1051/meca/2020089
C. Gautrelet, L. Khalij, M. Machado
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引用次数: 3

Abstract

Experimental vibration-fatigue tests were conducted with sine resonance track‐and‐dwell (SRTD) tool by using an electrodynamic shaker on specimens made of 304L stainless steel. Due to cyclic fatigue resulting in stiffness loss, it can be found that the resonant frequency decreases when the specimen experiences substantial crack growth, especially for out-of-plane bending mode. The specimens were equipped by a crack propagation gauge (CPG) to monitor the crack growth. However, the presence of crack was detected late by these gauges. The deviation of the resonance frequency was therefore analysed from the time response measurements, and the results were confronted to the CPG measurements to conclude on the validity of the detection threshold provided by the literature.
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304L不锈钢裂纹长度测量的共振轨迹和驻留测试
在304L不锈钢试样上,利用电动激振器,采用正弦共振跟踪-停留(SRTD)工具进行了振动疲劳试验。由于循环疲劳导致刚度损失,当试件出现较大的裂纹扩展时,特别是在面外弯曲模式下,试件的共振频率降低。在试样上安装裂纹扩展计(CPG)以监测裂纹扩展情况。然而,裂纹的存在很晚才被这些仪表检测到。因此,从时间响应测量中分析共振频率的偏差,并将结果与CPG测量结果进行对比,得出文献提供的检测阈值的有效性。
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来源期刊
Mechanics & Industry
Mechanics & Industry ENGINEERING, MECHANICAL-MECHANICS
CiteScore
2.80
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: An International Journal on Mechanical Sciences and Engineering Applications With papers from industry, Research and Development departments and academic institutions, this journal acts as an interface between research and industry, coordinating and disseminating scientific and technical mechanical research in relation to industrial activities. Targeted readers are technicians, engineers, executives, researchers, and teachers who are working in industrial companies as managers or in Research and Development departments, technical centres, laboratories, universities, technical and engineering schools. The journal is an AFM (Association Française de Mécanique) publication.
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