Application of the crack layer theory to modeling stress corrosion cracking in high pressure gas pipe

Byoung-Ho Choi, A. Chudnovsky

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Original languageEnglish
Title of host publication12th International Conference on Fracture 2009, ICF-12
Pages3649-3658
Number of pages10
Volume5
Publication statusPublished - 2009 Dec 1
Event12th International Conference on Fracture 2009, ICF-12 - Ottawa, ON, Canada
Duration: 2009 Jul 122009 Jul 17

Other

Other12th International Conference on Fracture 2009, ICF-12
CountryCanada
CityOttawa, ON
Period09/7/1209/7/17

Fingerprint

Stress corrosion cracking
corrosion
crack
pipe
Pipe
Cracks
Gases
gas
modeling
cracking (fracture)

ASJC Scopus subject areas

  • Geotechnical Engineering and Engineering Geology

Cite this

Choi, B-H., & Chudnovsky, A. (2009). Application of the crack layer theory to modeling stress corrosion cracking in high pressure gas pipe. In 12th International Conference on Fracture 2009, ICF-12 (Vol. 5, pp. 3649-3658)

Application of the crack layer theory to modeling stress corrosion cracking in high pressure gas pipe. / Choi, Byoung-Ho; Chudnovsky, A.

12th International Conference on Fracture 2009, ICF-12. Vol. 5 2009. p. 3649-3658.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Choi, B-H & Chudnovsky, A 2009, Application of the crack layer theory to modeling stress corrosion cracking in high pressure gas pipe. in 12th International Conference on Fracture 2009, ICF-12. vol. 5, pp. 3649-3658, 12th International Conference on Fracture 2009, ICF-12, Ottawa, ON, Canada, 09/7/12.
Choi B-H, Chudnovsky A. Application of the crack layer theory to modeling stress corrosion cracking in high pressure gas pipe. In 12th International Conference on Fracture 2009, ICF-12. Vol. 5. 2009. p. 3649-3658
Choi, Byoung-Ho ; Chudnovsky, A. / Application of the crack layer theory to modeling stress corrosion cracking in high pressure gas pipe. 12th International Conference on Fracture 2009, ICF-12. Vol. 5 2009. pp. 3649-3658
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