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Articles

Fatigue Crack Initiation in a Porous Steel

Pages 231-235 | Published online: 19 Jul 2013

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Read on this site (6)

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Articles from other publishers (44)

Yafeng Zheng, Gemma Fargas, Elaine Armelin, Olivier Lavigne, Qunli Zhang, Jianhua Yao & Luis Llanes. (2022) Influence of Corrosion-Induced Damage on Mechanical Integrity and Load-Bearing Capability of Cemented Carbides. Metals 12:12, pages 2104.
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L. Afroz, R. Das, M. Qian, M. Easton & M. Brandt. (2022) Fatigue behaviour of laser powder bed fusion (L-PBF) Ti–6Al–4V, Al–Si–Mg and stainless steels: a brief overview. International Journal of Fracture 235:1, pages 3-46.
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Ismael García, Miguel A. Serrano, Carlos López-Colina, Jesús M. Suárez & Fernando L. Gayarre. (2021) Approaches to the Mechanical Properties of Threaded Studs Welded to RHS Columns. Materials 14:6, pages 1429.
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Y.F. Zheng, G. Fargas, O. Lavigne, E. Roitero & L. Llanes. (2020) Corrosion-induced changes on Hertzian contact damage in cemented carbides. International Journal of Refractory Metals and Hard Materials 92, pages 105334.
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Y.F. Zheng, G. Fargas, O. Lavigne & L. Llanes. (2020) Indentation and scratch testing of a WC-6%wtCo cemented carbide: Corrosion effects on load-bearing capability and induced damage. Ceramics International 46:11, pages 17591-17598.
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David I. Holsworth & David L. DuQuesnay. (2020) The effects of hot iso-static pressing on the porosity and fatigue properties of Galfenol steels. International Journal of Fatigue 131, pages 105325.
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U. Zerbst, M. Madia, C. Klinger, D. Bettge & Y. Murakami. (2019) Defects as a root cause of fatigue failure of metallic components. III: Cavities, dents, corrosion pits, scratches. Engineering Failure Analysis 97, pages 759-776.
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Carlos Romero, Fei Yang & Leandro Bolzoni. (2018) Fatigue and fracture properties of Ti alloys from powder-based processes – A review. International Journal of Fatigue 117, pages 407-419.
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Anna Falkowska, Andrzej Seweryn & Adam Tomczyk. (2018) Fatigue life and strength of 316L sintered steel of varying porosity. International Journal of Fatigue 111, pages 161-176.
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Meng Zhang, Chen-Nan Sun, Xiang Zhang, Jun Wei, David Hardacre & Hua Li. (2018) Predictive models for fatigue property of laser powder bed fusion stainless steel 316L. Materials & Design 145, pages 42-54.
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Dylan Agius, Kyriakos Kourousis & Chris Wallbrink. (2018) A Review of the As-Built SLM Ti-6Al-4V Mechanical Properties towards Achieving Fatigue Resistant Designs. Metals 8:1, pages 75.
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Saba Mousavinasab & Carl Blais. (2017) The influence of different microstructural constituents on the fatigue crack propagation behaviour of a nickel PM steel. International Journal of Fatigue 99, pages 44-54.
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Fuzeng Ren, Weiwei Zhu & Kangjie Chu. (2017) Fabrication and evaluation of bulk nanostructured cobalt intended for dental and orthopedic implants. Journal of the Mechanical Behavior of Biomedical Materials 68, pages 115-123.
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Saba Mousavinasab & Carl Blais. (2017) Role of Microstructure Heterogeneity on Fatigue Crack Propagation of Low-Alloyed PM Steels in the As-Sintered Condition. Metals 7:2, pages 60.
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Florentina Potecaşu, Mihaela Marin, Octavian Potecaşu & Florin Bogdan Marin. (2017) Influence of the Iron Oxide Phases in Steam Oxidation on the Mechanical Properties and Abrasive Wear of Sintered Iron Materials. Advanced Materials Research 1143, pages 91-96.
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Zhigang Xu, Michael Hodgson & Peng Cao. (2016) Effect of Immersion in Simulated Body Fluid on the Mechanical Properties and Biocompatibility of Sintered Fe–Mn-Based Alloys. Metals 6:12, pages 309.
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Saba Mousavinasab & Carl Blais. (2016) Study of the effect of microstructure heterogeneity on fatigue crack propagation of low-alloyed PM steels. Materials Science and Engineering: A 667, pages 444-453.
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Eberhard Abele, Hanns A. Stoffregen, Michael Kniepkamp, Sebastian Lang & Manfred Hampe. (2015) Selective laser melting for manufacturing of thin-walled porous elements. Journal of Materials Processing Technology 215, pages 114-122.
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Auezhan Amanov, In-Sik Cho & Shinya Sasaki. (2014) The influence of DLC coating on the mechanical and frictional properties of unpeened and peened Cu-based bimetal under dry sliding conditions. Materials Chemistry and Physics 143:2, pages 814-824.
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Yingjie Yan, Guiru Liu Nash & Philip Nash. (2013) Effect of density and pore morphology on fatigue properties of sintered Ti–6Al–4V. International Journal of Fatigue 55, pages 81-91.
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S. Balamurugan, G. Mathan, Arthita Dey, Goutam Mukherjee, Minati Sahu & J.C. Pandey. (2012) Cracking of tungsten carbide rolls during hot rolling of branded rebars in a bar mill. Engineering Failure Analysis 26, pages 182-191.
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J.L. Stewart, L. Jiang, J.J. Williams & N. Chawla. (2012) Prediction of bulk tensile behavior of dual phase stainless steels using constituent behavior from micropillar compression experiments. Materials Science and Engineering: A 534, pages 220-227.
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J. L. Stewart, J. J. Williams & N. Chawla. (2011) Influence of Thermal Aging on the Microstructure and Mechanical Behavior of Dual-Phase, Precipitation-Hardened, Powder Metallurgy Stainless Steels. Metallurgical and Materials Transactions A 43:1, pages 124-135.
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A. Molinari, E. Santuliana, I. Cristofolini, A. Rao, S. Libardi & P. Marconi. (2011) Surface modifications induced by shot peening and their effect on the plane bending fatigue strength of a Cr?Mo steel produced by powder metallurgy. Materials Science and Engineering: A 528:6, pages 2904-2911.
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X. Deng, G. Piotrowski, N. Chawla & K.S. Narasimhan. (2008) Fatigue crack growth behavior of hybrid and prealloyed sintered steels. Materials Science and Engineering: A 491:1-2, pages 19-27.
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X. Deng, G. Piotrowski, N. Chawla & K.S. Narasimhan. (2008) Fatigue crack growth behavior of hybrid and prealloyed sintered steels. Materials Science and Engineering: A 491:1-2, pages 28-38.
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R. Gerosa, B. Rivolta, A. Tavasci, G. Silva & A. Bergmark. (2008) Crack initiation and propagation in Chromium pre-alloyed PM-steel under cyclic loading. Engineering Fracture Mechanics 75:3-4, pages 750-759.
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S. Dhanasekaran & R. Gnanamoorthy. (2007) Abrasive wear behavior of sintered steels prepared with MoS2 addition. Wear 262:5-6, pages 617-623.
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Riccardo Gerosa, Barbara Rivolta, Adriano Tavasci, Giuseppe Silva & Anders Bergmark. (2007) Stable and Unstable Crack Growth in Chromium Pre-Alloyed Steel. Materials Science Forum 534-536, pages 737-740.
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S. Dhanasekaran & R. Gnanamoorthy. (2007) Dry sliding friction and wear characteristics of Fe–C–Cu alloy containing molybdenum di sulphide. Materials & Design 28:4, pages 1135-1141.
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N. Chawla & X. Deng. (2005) Microstructure and mechanical behavior of porous sintered steels. Materials Science and Engineering: A 390:1-2, pages 98-112.
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H. Khorsand, S. M. Habibi, K. Janghorban, H. Yoozbashizade & S. M. S. Reihani. (2004) Fatigue of sintered steels (Fe-1.5 Mo-3 Mn-0.7 C). Materials and Structures 37:5, pages 335-341.
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R. Gnanamoorthy, N. Rajiv, K. Gopinath, Y. Miyahsita & Y. Mutoh. (2002) Rolling contact fatigue behavior of sintered and hardened steels. Practical Failure Analysis 2:4, pages 71-75.
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S. M. Habibi, H. Khorsand, K. Janghorban, H. Yoozbashizadeh & H. Rahmani Seraji. Fatigue Behavior of a Low Alloy P/M Steel. Fatigue Behavior of a Low Alloy P/M Steel.
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S. J. Polasik, J. J. Williams & N. Chawla. (2002) Fatigue crack initiation and propagation of binder-treated powder metallurgy steels. Metallurgical and Materials Transactions A 33:1, pages 73-81.
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N. Chawla, T.F. Murphy, K.S. Narasimhan, M. Koopman & K.K. Chawla. (2001) Axial fatigue behavior of binder-treated versus diffusion alloyed powder metallurgy steels. Materials Science and Engineering: A 308:1-2, pages 180-188.
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G. Straffelini, A. Molinari & T. Marcupuscas. (2000) Identification of rolling-sliding damage mechanisms in porous alloys. Metallurgical and Materials Transactions A 31:12, pages 3091-3099.
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Anna A. Vakulenko. (1998) A fatigue life assessment of 0.8%C spray-formed steel. Materials Science and Engineering: A 251:1-2, pages 157-165.
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E. S. Palma. (1997) Influence of porosity on fatigue cumulative damage of sintered iron. Journal of Materials Engineering and Performance 6:5, pages 615-618.
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H. Drar. (1996) Fracture mechanisms near threshold conditions of nickel alloyed PM steel. Engineering Fracture Mechanics 55:6, pages 901-917.
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