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    • 5. 发明授权
    • Method for making high-strength high-toughness martensitic stainless steel seamless pipe
    • 制造高强度高韧性马氏体不锈钢无缝管的方法
    • US06846371B2
    • 2005-01-25
    • US10226916
    • 2002-08-23
    • Yukio MiyataMitsuo KimuraTakaaki Toyooka
    • Yukio MiyataMitsuo KimuraTakaaki Toyooka
    • B21B3/02B21B23/00C21D8/10C22C38/18C22C38/40
    • C22C38/40B21B3/02B21B23/00B21B2201/16C21D8/105C22C38/18
    • A method of producing a high-strength high-toughness martensitic stainless steel seamless pipe which includes heating a martensitic stainless steel raw material to an austenitic range and subjecting the raw material to piercing and elongating to form an original pipe. The original pipe is cooled to form a structure substantially composed of martensite in the original pipe. The original pipe is reheated to a temperature in the dual-phase range between the Ac1 transformation point and the Ac3 transformation point, and is subjected to finishing rolling at an initial rolling temperature T (° C.) between the Ac1 transformation point and the Ac3 transformation point. The original pipe is then cooled to form a processed pipe. The processed pipe is tempered at a temperature below the Ac1 transformation point. The reduction in area R in the finishing rolling step may be in the range of 10% to 90%, and the initial rolling temperature T and the reduction in area R may satisfy the relationship 800≦T−0.625R≦850.
    • 一种高强度高韧性马氏体不锈钢无缝管的制造方法,其特征在于,将马氏体系不锈钢原料加热至奥氏体系,对所述原料进行穿孔拉伸,形成原料管。 原管被冷却以在原管中形成基本上由马氏体组成的结构。 将原管再次加热到Ac1相变点和Ac3相变点之间的双相范围内的温度,并在Ac1相变点和Ac3之间的初始轧制温度T(℃)下进行精轧 转型点。 然后将原管冷却以形成加工管。 处理后的管道在低于Ac1相变点的温度下回火。 精轧步骤中的面积R的减少可以在10%至90%的范围内,并且初始轧制温度T和面积R的减小可以满足关系800 <= T-0.625R <= 850。
    • 6. 发明授权
    • Martensitic steel for line pipe having excellent corrosion resistance
and weldability
    • 管线管马氏体钢具有优良的耐腐蚀性和焊接性
    • US5985209A
    • 1999-11-16
    • US821512
    • 1997-03-21
    • Mitsuo KimuraYukio MiyataTomoya KosekiTakaaki ToyookaFumio Murase
    • Mitsuo KimuraYukio MiyataTomoya KosekiTakaaki ToyookaFumio Murase
    • C22C38/00C22C38/44C22C38/58C22C38/42
    • C22C38/44
    • A martensitic steel for a line pipe having excellent corrosion resistance and weldability is disclosed. The martensitic steel contains about:0.02 wt % or less of C, 0.50 wt % or less of Si,0.2 to 3.0 wt % of Mn, 10 to 14 wt % of Cr,0.2 to 7.0 wt % of Ni, 0.2 to 5.0 wt % of Mo,0.1 wt % or less of Al, 0.07 wt % or less of N, andthe balance being Fe and incidental impurities; andthese elements satisfy substantially the following equations:(Cr %)+(Mo %)+0.1(N %)-3(C %).gtoreq.12.2,(Cr %)+3.5(Mo %)+10(N %)+0.2(Ni %)-20(C %).gtoreq.14.5, and150(C %)+100(N %)-(Ni %)-(Mn %).ltoreq.4.The martensitic steel may further contain at least one element selected from the group consisting ofabout 2.0 wt % or less of Cu, about 0.15 wt % or less of Ti, about 0.15 wt % or less of Zr, about 0.15 wt % or less of Ta andabout 0.006 wt % or less of Ca, andthese elements satisfy substantially the following equations:(Cr %)+(Mo %)+0.1(N %)+3(Cu %)-3(C %).gtoreq.12.2,(Cr %)+3.5(Mo %)+10(N %)+0.2(Ni %)-20(C %).gtoreq.14.5,150(C %)+100(N %)-(Ni %)-(Mn %).ltoreq.4.
    • 公开了一种具有优异的耐腐蚀性和焊接性的线管的马氏体钢。 马氏体钢的含量为:0.02重量%以下的C,0.50重量%以下的Si,0.2〜3.0重量%的Mn,10〜14重量%的Cr,0.2〜7.0重量%的Ni,0.2〜5.0重量% 的Mo,0.1重量%以下的Al,0.07重量%以下的N,余量为Fe和附带的杂质; 这些元素基本上满足以下等式:(Cr%)+(Mo%)+ 0.1(N%)-3(C%)> / = 12.2,(Cr%)+ 3.5(Mo%)+ 10(N% )+0.2(Ni%)-20(C%)> / = 14.5,150(C%)+ 100(N%) - (Ni%) - (Mn%)4。 马氏体钢还可以含有选自Cu:2.0重量%以下,Ti:0.15重量%以下,Zr:0.15重量%以下,Zr:0.15重量%以下,0.15重量%以下 Ta和约0.006重量%以下的Ca,这些元素基本上满足以下等式:(Cr%)+(Mo%)+ 0.1(N%)+ 3(Cu%)-3(C%)> 12.2,(Cr%)+ 3.5(Mo%)+10(N%)+ 0.2(Ni%)-20(C%)> = 14.5,150(C%)+ 100(N%) - (Ni% ) - (Mn%)