Transferability of elastic-plastic fracture toughness (JC) using the weibull stress approach (1997)
- Authors:
- Autor USP: RUGGIERI, CLAUDIO - EP
- Unidade: EP
- Subjects: ESTRUTURAS OFFSHORE; ENGENHARIA NAVAL E OCEÂNICA
- Language: Inglês
- Imprenta:
-
ABNT
RUGGIERI, Claudio et al. Transferability of elastic-plastic fracture toughness (JC) using the weibull stress approach. . São Paulo: EPUSP. . Acesso em: 12 jan. 2026. , 1997 -
APA
Ruggieri, C., Dodds, R. H., Wiesner, C. S., & Goldthorpe, M. R. (1997). Transferability of elastic-plastic fracture toughness (JC) using the weibull stress approach. São Paulo: EPUSP. -
NLM
Ruggieri C, Dodds RH, Wiesner CS, Goldthorpe MR. Transferability of elastic-plastic fracture toughness (JC) using the weibull stress approach. 1997 ;[citado 2026 jan. 12 ] -
Vancouver
Ruggieri C, Dodds RH, Wiesner CS, Goldthorpe MR. Transferability of elastic-plastic fracture toughness (JC) using the weibull stress approach. 1997 ;[citado 2026 jan. 12 ] - WSTRESS release 1.0: numerical computation of probabilistic fracture parameters for 3-D craked solids
- Brasilian Special Issue. [Editorial]
- Experimental study on the cleavage fracture behaviour of an ASTM A285 grade C pressure vessel steel
- Applicability of J estimation procedures for overmatched SE(T) fracture especimens
- A Modified weibull stress approach to predict specimen geometry effects in a pressure vessel steel
- Comparison between fully-plastic solutions and the reference stress approach to evaluate J in circumferentially cracked pipes under bending
- Determinação de fatores de intensidade de tensões (SIFs) em espécimes SE(T) fixados por pinos e garras
- An engineering methodology to assess effects of weld strength mismatch on cleavage fracture toughness using the Weibull stress approach
- Fracture assessments of clad pipe girth welds incorporating improved crack driving force solutions
- An engineering methodology for constraint corrections of elastic–plastic fracture toughness – Part II : effects of specimen geometry and plastic strain on cleavage fracture predictions
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