Published 1992 | Version v1
Book

Modelling of hydrogen assisted cracking of nickel-base Alloy X-750 in water

  • 1. Massachusetts Institute of Technology, Cambridge, MA (United States)

Description

A closed-form, semi-empirical, electrochemical model has been developed to rationalize the intergranular corrosion fatigue behavior of alloy X-750 in aqueous electrolytes. The model is based on the assumption that, in the electrolytes investigated and for the microstructures studied, that hydrogen assisted crack growth is the dominant mechanism. Further, it is assumed that the rate of hydrogen reduction is a controlling factor in the magnitude of the environmental component of crack growth. Electrolyte conductivity, dissolution and passivation kinetics of precipitates, grain boundary coverage of precipitates are identified as important environmental and microstructural variables governing the hydrogen reduction rate at the crack tip. The model is compared with experimental data for fatigue crack growth where hydrogen is supplied by external charging and with data where galvanically-generated local hydrogen is responsible for enhanced crack growth. It is shown that predicted results characterize the observed effects of frequency, microstructure, electrolyte conductivity, and stress intensity factor. The agreement between the hydrogen reduction model and measured crack growth rate is believed to support the proposed galvanic corrosion mechanism for the intergranular cracking of alloy X-750 in low temperature water

Additional details

Publishing Information

Publisher
American Nuclear Society, Inc.
Imprint Place
La Grange Park, IL (United States)
Imprint Title
Proceedings of the fifth international symposium on environmental degradation of materials in nuclear power systems - water reactors
Imprint Pagination
995 p.
Journal Page Range
p. 294-304.

Conference

Title
5. international symposium on environmental degradation of materials in nuclear power systems - water reactors.
Dates
25-29 Aug 1991.
Place
Monterey, CA (United States).

Optional Information

Secondary number(s)
CONF-910808--.