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Original Articles

Identification of welding residual stresses in rectangular plates using vibration responsesFootnote(*)

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Pages 313-331 | Received 21 Mar 2005, Accepted 29 Nov 2005, Published online: 26 Jan 2007

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Read on this site (2)

T. Lahmer, S. Bock, J. Hildebrand & K. Gürlebeck. (2017) Non-destructive identification of residual stresses in steel under thermal loadings. Inverse Problems in Science and Engineering 25:10, pages 1519-1535.
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K. V. Singh, C. Hamilton & S. Dymek. (2010) Developing predictive tools for friction stir weld quality assessment. Science and Technology of Welding and Joining 15:2, pages 142-148.
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Articles from other publishers (5)

Marcio Vital de Arruda, Edmilson Otoni Correa & Vanessa Bawden de Paula Macanhan. (2023) Optimization of FEM models for welding residual stress analysis using the modal method. Welding in the World.
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A. Varun Kumar, A.S. Selvakumar, K. Balachandar, A. Waseem Ahmed & A. Yashar Arabath. (2021) Correlation between material properties and free vibration characteristics of TIG and laser welded stainless steel 304 reinforced with Al2O3 microparticles. Engineering Science and Technology, an International Journal 24:5, pages 1253-1261.
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Debasish Das, Amit Kr Das, DK Pratihar & GG Roy. (2020) Prediction of residual stress in electron beam welding of stainless steel from process parameters and natural frequency of vibrations using machine-learning algorithms. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 235:11, pages 2008-2021.
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Debasish Das, Dilip Kumar Pratihar & Gour Gopal Roy. (2020) Establishing a Correlation Between Residual Stress and Natural Frequency of Vibration for Electron Beam Butt Weld of AISI 304 Stainless Steel. Arabian Journal for Science and Engineering 45:7, pages 5769-5781.
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Xue Wu Dong, Dai Ren, Dong Qiang Wang & Ya Fei Zhai. (2011) Effect of Residual Stress in Ductile Iron Component on its Natural Frequency. Advanced Materials Research 308-310, pages 967-972.
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