Study of Crack Propagation and Absorbed Energy in Heat Affected Zone Using a Finite Element Method
Explore this paper's citation graph
- Type
- article
- Published
- 2009-01-01
- Cited by
- 0
- References
- 14
- OpenAlex
- https://openalex.org/W64766474
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:134605206
Keywords
Charpy impact test, Welding, Heat-affected zone, Materials science, Finite element method
References
- On localization in ductile materials containing spherical voids
- Analysis of the cup-cone fracture in a round tensile bar
- Effects of Notch Location on Heat-affected Zone Impact Properties of SA-516 Steels
- Notch position in the HAZ specimen of reactor pressure vessel steel
- 3D analyses of the effect of weld orientation in Charpy specimens
- Analysis of the Charpy V-notch test for welds
- Damage mechanics analysis (Gurson model) and experimental verification of the behaviour of a crack in a weld-cladded component
- Influence of void nucleation on ductile shear fracture at a free surface
- Influence of voids on shear band instabilities under plane strain conditions
- Continuum Theory of Ductile Rupture by Void Nucleation and Growth: Part I—Yield Criteria and Flow Rules for Porous Ductile Media
- Evaluation of Crack Length and Thickness Effects of Fracture Specimen using Damage Mechanics
Cited by
No citing papers recorded for this paper.
Related papers
- Effects of notch position of the Charpy impact specimen on the failure behavior in heat affected zone
- Experimental Study on the Material Response of Laser Weldment under Dynamic Loading
- Fracture testing of the heat affected zone from welded steel pipes using an in situ stage
- Crack growth resistance in bi-metallic weldment
- Determining the constitutive properties of the heat-affected zone in a resistance spot weld
- Experimental and Numerical Investigation of Charpy Impact Test of Spin Arc Welded C1018 plates
- Modelling the effect of HAZ undermatching on the crack-tip stress distribution in idealized welds
- Welded joint geometry effect on fatigue crack growth resistance in different metallic materials