Use of ultrasonic back-reflection intensity for predicting the onset of crack growth due to low-cycle fatigue in stainless steel under block loading
Author:
Funder
Ministry of Education, Science, Sports, and Culture
Publisher
Elsevier BV
Subject
Acoustics and Ultrasonics
Reference26 articles.
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1. Spectral noise and data reduction using a long short-term memory network for nonlinear ultrasonic modulation-based fatigue crack detection;Ultrasonics;2023-03
2. Correspondence Relationship between the Maximum Tensile Stress and Cycle Number during the Initial Stage of Low-Cycle Fatigue Test;Journal of Testing and Evaluation;2020-07-17
3. Low-cycle fatigue characteristics of Cr18Mn18N0.6 austenitic steel under strain controlled condition at 100 °C;International Journal of Fatigue;2019-01
4. On-line prognosis of fatigue crack propagation based on Gaussian weight-mixture proposal particle filter;Ultrasonics;2018-01
5. Orientation relationship between ferrite and austenite and its influence on ultrasonic attenuation in cast austenitic stainless steel;Acta Physica Sinica;2018
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