Microstructure of martensite–austenite constituents in heat affected zones of high strength low alloy steel welds in relation to toughness properties
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A. Lambert | A. Pineau | A. Pineau | A. Gourgues | T. Sturel | J. Drillet | A.F. Gourgues | J. Drillet | T. Sturel | A. Lambert
[1] M. Myauchi,et al. Hardness anisotropy of magnetically anisotropic alnico-V single crystal , 1974, Metallurgical and Materials Transactions B.
[2] D. Y. Lee,et al. Microstructure and local brittle zone phenomena in high-strength low-alloy steel welds , 1991 .
[3] G. Smith,et al. Carbon atom distribution in a dual phase steel: An atom probe study , 1981 .
[4] A. Mascanzoni,et al. Microstructure and cleavage resistance of low-carbon bainitic steels , 1977 .
[5] A. Hoadley,et al. In-situ technique for measuring the absorption during laser surface remelting , 1991 .
[6] Julia King,et al. Cleavage initiation in the intercritically reheated coarse-grained heat-affected zone: Part I. Fractographic evidence , 1994 .
[7] A. Pineau,et al. Temperature dependence of stacking fault energy in close-packed metals and alloys , 1978 .
[8] Odd M. Akselsen,et al. Structure–property relationships in intercritical heat affected zone of low-carbon microalloyed steels , 1987 .
[9] V. Bišs,et al. Martensite and retained austenite in hot-rolled, low-carbon bainitic steels , 1971 .
[10] I. Hrivňák,et al. Metallographic investigation of M‐A constituent Deterioration and improvement of HAZ toughness in 780 and 980 MPa class HSLA steels welded with high heat inputs (2nd report) , 1994 .
[11] A. Pineau,et al. Martensitic transformations induced by plastic deformation in the Fe-Ni-Cr-C system , 1972 .
[12] Takao Araki,et al. Micro-fracture behaviour induced by M-A constituent (Island Martensite) in simulated welding heat affected zone of HT80 high strength low alloyed steel , 1984 .
[13] D. Kwon,et al. Fracture toughness analysis of heat-affected zones in high-strength low-alloy steel welds , 1993 .