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RESEARCH ON CHEMICAL COMPOSITION AND MICROSTRUCTURE OF NEWLY—DEVELOPED HIGH STRENGTH AND HIGH ELONGATION STEELS

Y.Chen X.Chen A.M.Guo D.X.Luo , B.F.Xu , Z.X.Yuan , P.H.Li , S.K.Pu , S.B.Zhou

金属学报(英文版)

The different chemical composition of silicon and manganese as well as different re-tained austenite fraction ranged from 4to 101163326174f the high strength and high elon-gation steels were studied in the paper.The dislocations and carbon concentration in retained austenite were observed by a transmission electron microscope and an electric probe analyzer,respectively.The experimental results showed that silicon and manganese are two fundamental alloying elements to stabilize austenite effectively but retaining austenite in different mechanis-↑ms.Meanwhile,the cooling processing played an important role in controlling the fraction of retained austenite of the hot-rolled high strength and high plasticity steels.

关键词: high strength , null , null

GRAIN-BOUNDARY PRECIPITATION UNDER IRRADIATION IN DILUTE BINARY ALLOYS

S.H.Song , Z.X.Yuan , J.Liu , R.G.Faulkner

金属学报(英文版)

Irradiation-induced grain boundary segregation of solute atoms frequently bring about grain boundary precipitation of a second phase because of its making the solubility limit of the solute surpassed at grain boundaries. Until now the kinetic models for irradiation-induced grain boundary precipitation have been sparse. For this reason, we have theoretically treated grain boundary precipitation under irradiation in dilute binary alloys. Predictions of γ'-Ni3 Si precipitation at grain boundaries are made for a dilute Ni-Si alloy subjected to irradiation. It is demonstrated that grain boundary silicon segregation under irradiation may lead to grain boundary γ'-Ni3Si precipitation over a certain temperature range.

关键词: segregation , null , null

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