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Articles

Influence of grain size and yield strength on threshold fatigue behaviour of low-alloy steel

Pages 535-539 | Published online: 18 Jul 2013

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J. I. Dickson, J.-P. Baïlon & J. Masounave. (1981) A Review on the Threshold Stress Intensity Range for Fatigue Crack Propagation. Canadian Metallurgical Quarterly 20:3, pages 317-329.
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Nopasorn Kowathanakul, Qin Yu, Chaoyi Zhu, Xiaoqing Li, Andrew M. Minor & Robert O. Ritchie. (2022) Fatigue-crack propagation behavior in a high-carbon chromium SUJ2 bearing steel: Role of microstructure. International Journal of Fatigue 156, pages 106693.
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B. Li & L.G. Rosa. (2016) Prediction models of intrinsic fatigue threshold in metal alloys examined by experimental data. International Journal of Fatigue 82, pages 616-623.
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R. Gnanamoorthy, Y. Mutoh, N. Masahashi & Y. Mizuhara. (1994) Effect of isothermal forging on the fracture properties of binary γ-base titanium aluminides at room temperature. Scripta Metallurgica et Materialia 31:2, pages 215-220.
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Leslie Bartosiewicz, A.R. Krause, F.A. Alberts, Iqbal Singh & Susil K. Putatunda. (1993) Influence of microstructure on high-cycle fatigue behavior of austempered ductile cast iron. Materials Characterization 30:4, pages 221-234.
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A. Sengupta,S.K. Putatunda,. (1992) A New Model for Fatigue Threshold. High Temperature Materials and Processes 10:3, pages 145-158.
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L. Bartosiewicz, A. R. Krause, A. Spis, J. Raghavan & S. K. Putatunda. (1992) Fatigue crack growth behavior of a solid solution-strengthened nickel-base superalloy (Incoloy 825). Journal of Materials Engineering and Performance 1:1, pages 67-74.
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O. N. Romaniv, A. N. Tkach & V. N. Simin'kovich. (1984) Structure and near-threshold fatigue of steels. Soviet Materials Science 19:4, pages 272-285.
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W.J.D. Shaw & I. Le May. (1983) Stress ratio effects on fatigue fracture morphology in G41400 steel. Metallography 16:4, pages 403-411.
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G. T. Gray, J. C. Williams & A. W. Thompson. (1983) Roughness-Induced Crack Closure: An Explanation for Microstructurally Sensitive Fatigue Crack Growth. Metallurgical Transactions A 14:2, pages 421-433.
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J. P. Lucas & W. W. Gerberich. (2007) A PROPOSED CRITERION FOR FATIGUE THRESHOLD: DISLOCATION SUBSTRUCTURE APPROACH. Fatigue & Fracture of Engineering Materials & Structures 6:3, pages 271-280.
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J.I. Dickson, Mou-Chih Lu & J.-P. Bailon. (1983) The influence of strain aging on the fatigue crack propagation threshold. Scripta Metallurgica 17:1, pages 49-52.
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H. W. Liu. 1983. Defects, Fracture and Fatigue. Defects, Fracture and Fatigue 339 357 .
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H.W. Liu & Dai Liu. (1982) Near threshold fatigue crack growth behavior. Scripta Metallurgica 16:5, pages 595-600.
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J.P. Lucas & W.W. Gerberich. (1981) Low temperature and grain size effects on threshold and fatigue crack propagation in a high strength low alloy steel. Materials Science and Engineering 51:2, pages 203-212.
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Kohichi TANAKA. (1981) Fatigue Crack Growth Property of Steel with Particular Reference to Threshold Stress Intensity Range, &Delta;K<SUB>th</SUB>. Tetsu-to-Hagane 67:2, pages 245-261.
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