Steel plates for ultra-high-strength linepipes and...

C - Chemistry – Metallurgy – 22 – C

Patent

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C22C 38/04 (2006.01) C22C 38/12 (2006.01)

Patent

CA 2550490

Ultra-high-strength linepipes having excellent low-temperature toughness manufactured by welding together the edges of steel plates comprising C of 0.03 to 0.07 mass%, Si of not more than 0.6 mass%, Mn of 1.5 to 2.5 mass%, P of not more than 0.015 mass%, S of not more than 0.003 mass%, Ni of 0.1 to 1.5 mass%, Mo of 0.15 to 0.60 mass%, Nb of 0.01 to 0.10 mass%, Ti of 0.005 to 0.030 mass%, Al of not more than 0.06 mass%, one or more of required amounts of B, N, V, Cu, Cr, Ca, REM (rare-earth metals) and Mg, with the remainder consisting of iron and unavoidable impurities and having a (Hv-ave)/(Hv-M) ratio between 0.8 and 0.9 at 2.5 <= P <= 4.0, wherein Hv-ave is the average Vickers hardness in the direction of the thickness of the base metal and Hv-M is the martensite hardness depending on C-content (Hv-M = 270 + 1300C) and a tensile strength TS-C between 900 MPa and 1100 MPa; P = 2.7C + 0.4Si + Mn + 0.8Cr + 0.45(Ni + Cu) + (1 + .beta.)Mo - 1 + .beta.(.beta. = 1 when B >= 3 ppm and .beta. = 0 when B < 3 ppm).

L'invention concerne des tubes de canalisation ultra haute résistance à excellente endurance à température faible fabriqués par soudage des bords de plaques d'acier entre elles. Ces plaques contiennent 0,03 à 0,07 masse % de C, 0,6 masse % au plus de Si, 1,5 à 2,5 masse % de Mn, 0,015 masse % P, 0,003 masse % au plus de S, 0,1 à 1,5 masse % de Ni, 0,15 à 0,60 masse % de Mo, 0,01 à 0,10 masse % de Nb, 0,005 à 0,030 masse % de Ti, 0,06 masse % au plus d'Al, une ou plusieurs quantités nécessaires de B, N, V, Cu, Cr, Ca, REM (métaux des terres rares) et Mg, le reste consistant en du fer et des impuretés inévitables. Ces plaques possèdent un rapport (Hv-ave)/(Hv-M) compris entre 0,8 et 0,9 à 2,5 = P = 4,0, Hv-ave consistant en une dureté Vickers moyenne dans le sens de l'épaisseur du métal de base et Hv-M consiste en une dureté de martensite dépendant de la teneur en C (Hv-M = 270 + 1300C) et une résistance à la traction TS-C comprise entre 900 MPa et 1100 MPa; P = 2,7C + 0,4Si + Mn + 0,8Cr + 0,45(Ni + Cu) + (1 + .beta.)Mo - 1 + .beta.(.beta. = 1 lorsque B = 3 ppm et .beta. = 0 lorsque B < 3 ppm).

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