Corrosion fatigue of iron-chromium-nickel alloys: Fracture mechanics, microstructure and chemistry

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This progress report briefly summarizes the research performed under the referenced grant for the period from 1 December 1990 to 31 December 1991, and contains a cumulative listing of technical presentations and publications dating back to 1 June 1988. Under this grant, a multi-disciplinary research program is undertaken to address certain fundamental issues relating to corrosion fatigue crack growth in structurally important alloys in aqueous environments. The principal goal of the research is to develop and expand the scientific understanding of the processes that control corrosion fatigue crack growth, particularly for ferrous alloys in terms of the controlling mechanical and ... continued below

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Pages: (17 p)

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Wei, R.P. January 29, 1992.

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Description

This progress report briefly summarizes the research performed under the referenced grant for the period from 1 December 1990 to 31 December 1991, and contains a cumulative listing of technical presentations and publications dating back to 1 June 1988. Under this grant, a multi-disciplinary research program is undertaken to address certain fundamental issues relating to corrosion fatigue crack growth in structurally important alloys in aqueous environments. The principal goal of the research is to develop and expand the scientific understanding of the processes that control corrosion fatigue crack growth, particularly for ferrous alloys in terms of the controlling mechanical and chemical/electrochemical processes and their interactions with the microstructure. Focus is placed upon the austenitic iron-chromium-nickel (FeCrNi) alloys because of the need to resolve certain mechanistic issues and because of extensive utilization of these alloys in the power generation and chemical industries. Emphasis is given to the growth of short (small) cracks at low growth rates because crack growth in this regime is expected to be more sensitive to changes in external chemical/electrochemical variables.

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Pages: (17 p)

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OSTI; NTIS; GPO Dep.

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  • Other: DE92008221
  • Report No.: DOE/ER/45354-4
  • Grant Number: FG02-88ER45354
  • DOI: 10.2172/5933398 | External Link
  • Office of Scientific & Technical Information Report Number: 5933398
  • Archival Resource Key: ark:/67531/metadc1101024

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  • January 29, 1992

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  • Feb. 18, 2018, 3:59 p.m.

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  • March 2, 2018, 7:53 p.m.

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Wei, R.P. Corrosion fatigue of iron-chromium-nickel alloys: Fracture mechanics, microstructure and chemistry, report, January 29, 1992; United States. (digital.library.unt.edu/ark:/67531/metadc1101024/: accessed August 15, 2018), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.