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- W3142880055 abstract "The effect of tempering temperature on microstructure and mechanical properties of 23CoNi steel plate has been studied. Tempering in the temperature range of 100-460℃, the ultimate tensile strength σ(subscript h), tends to change along a curve which has the shape of the letter ”n”, the peak of the σ(subscript h), occurs in the range of 460-475℃, beyond the peak, σ(subscript h), deceasing as the temperature increasing. Tempering in the temperature range of 100-200℃, the impact property α(subscript ku) increases as the temperature goes up. After 200℃, α(subscript ku) goes down as the temperature increases, when the tempering temperature goes higher than 460℃, α(subscript ku) goes up again tempering at higher than 485℃, the acicular alloying carbides M2C precipitate from matrix. The orien tationrelationship between M2C and matrix coincides with follows: (011)(subscript α)//(001)(subscript M2C), [100](subscript α)//[100](subscript M2C). We found out a new order phase B2 which dispersing in the matrix and the size is very small. This paper discusses the reason of the formation of this new order phase and the sequence of effects to mechanical properties. With the increasing of the tempering temperature, both M2C and new order phase growing up. As the tempering temperature goes beyond 470℃, the amount of retained austenite tends to go up, higher than 510℃, the growing up of reverted austenite is accelerative. It is identified that retained austenite is coming from the reverse transformation. Tempered at higher than 550℃, we can easily find the reversion austenite which contains much more Nickel than matrix does and emerged in the bulk form under TEM." @default.
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- W3142880055 date "2005-09-01" @default.
- W3142880055 modified "2023-09-22" @default.
- W3142880055 title "The Effect of Tempering Temperature on the Microstructure and Mechanical Properties of Ultrahigh Strength 23CoNi Steel Plate" @default.
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