메뉴 건너뛰기




Volumn 63, Issue 1, 1999, Pages 23-38

Maximum stress intensity factor for a circumferential crack in a finite-length thin-walled cylinder under transient radial temperature distribution

Author keywords

Circumferential crack; Crack arrest; Fracture mechanics; Stress intensity factor; Thermal stress; Thin walled cylinder

Indexed keywords

CRACKS; FRACTURE MECHANICS; HEAT TRANSFER; STRESS INTENSITY FACTORS; TEMPERATURE DISTRIBUTION; THERMAL STRESS;

EID: 0032659217     PISSN: 00137944     EISSN: None     Source Type: Journal    
DOI: 10.1016/S0013-7944(99)00013-2     Document Type: Article
Times cited : (24)

References (12)
  • 1
    • 0023289256 scopus 로고
    • Crack growth behaviour in austenitic and ferritic steels during thermal quenching from 550°C
    • Skelton R.P., Nix K.J. Crack growth behaviour in austenitic and ferritic steels during thermal quenching from 550°C. High Temperature Technol. 5:1984;3-12.
    • (1984) High Temperature Technol , vol.5 , pp. 3-12
    • Skelton, R.P.1    Nix, K.J.2
  • 2
    • 85014447649 scopus 로고
    • A critical analysis of crack propagation laws
    • Paris P.C., Erdogan F. A critical analysis of crack propagation laws. Trans. ASME D. 85:1963;528-534.
    • (1963) Trans. ASME D , vol.85 , pp. 528-534
    • Paris, P.C.1    Erdogan, F.2
  • 3
    • 0032129055 scopus 로고    scopus 로고
    • Closed form stress intensity factor for an arbitrarily located inner-surface circumferential crack in an edge-restraint cylinder under linear radial temperature distribution
    • Meshii T., Watanabe K. Closed form stress intensity factor for an arbitrarily located inner-surface circumferential crack in an edge-restraint cylinder under linear radial temperature distribution. Engng. Fracture Mech. 60:1998;519-527.
    • (1998) Engng. Fracture Mech , vol.60 , pp. 519-527
    • Meshii, T.1    Watanabe, K.2
  • 4
    • 0020600019 scopus 로고
    • Transient thermal stress problem for a circumferential cracked hollow cylinder
    • Nied H.F., Erdogan F. Transient thermal stress problem for a circumferential cracked hollow cylinder. J. Thermal Stresses. 6:1983;1-14.
    • (1983) J. Thermal Stresses , vol.6 , pp. 1-14
    • Nied, H.F.1    Erdogan, F.2
  • 5
    • 0040285834 scopus 로고    scopus 로고
    • Stress intensity factor for a circumferential crack in a finite length cylinder under arbitrarily distributed atress on crack surface by weight function method
    • (in Japanese)
    • Meshii T., Watanabe K. Stress intensity factor for a circumferential crack in a finite length cylinder under arbitrarily distributed atress on crack surface by weight function method. Trans. Japan Soc. Mech. Engng. (A). 64:1998;1192-1197. (in Japanese).
    • (1998) Trans. Japan Soc. Mech. Engng. (A) , vol.64 , pp. 1192-1197
    • Meshii, T.1    Watanabe, K.2
  • 7
    • 0032010584 scopus 로고    scopus 로고
    • Closed form stress intensity factor for an arbitrarily located inner circumferential surface crack in a cylinder subjected to axisymmetric bending loads
    • Meshii T., Watanabe K. Closed form stress intensity factor for an arbitrarily located inner circumferential surface crack in a cylinder subjected to axisymmetric bending loads. Engng. Fracture Mech. 59:1998;589-597.
    • (1998) Engng. Fracture Mech , vol.59 , pp. 589-597
    • Meshii, T.1    Watanabe, K.2
  • 8
    • 77951694496 scopus 로고
    • J.S.M.E ed. Tokyo: Japan Society of Mechanical Engineers. (in Japanese)
    • J.S.M.E ed. JSME Data Book: Heat Transfer. 4th ed:1986;35-36 Japan Society of Mechanical Engineers, Tokyo. (in Japanese).
    • (1986) JSME Data Book: Heat Transfer 4th Ed , pp. 35-36
  • 9
    • 85167789375 scopus 로고
    • Practical method for calculating stress-intensity factors through weight functions
    • Labbens R., Pellissier-Tanon A., Heliot J. Practical method for calculating stress-intensity factors through weight functions. ASTM STP. 590:1976;368-384.
    • (1976) ASTM STP , vol.590 , pp. 368-384
    • Labbens, R.1    Pellissier-Tanon, A.2    Heliot, J.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.