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    • 5. 发明申请
    • Method for producing a galvanized steel sheet
    • 镀锌钢板的制造方法
    • US20110192504A1
    • 2011-08-11
    • US12927331
    • 2010-11-12
    • Hideyuki KimuraYoshihiko OnoTakeshi FujitaTakayuki FutatsukaSaiji Matsuoka
    • Hideyuki KimuraYoshihiko OnoTakeshi FujitaTakayuki FutatsukaSaiji Matsuoka
    • C21D8/02
    • C21D9/46C21D8/0205C21D2211/005C22C38/001C22C38/02C22C38/06C22C38/38C23C2/02C23C2/28
    • A method for producing a galvanized steel sheet including (a) melting a steel having a steel composition comprising 0.005 to 0.04 mass % C, 1.5 mass % or lower Si, 1.0 to 2.0 mass % Mn, 0.10 mass % or lower P, 0.03 mass % or lower S, 0.01 to 0.1 mass % Al, less than 0.008 mass % N and 0.2 to 1.0 mass % Cr, wherein Mn (mass %)+1.29 Cr (mass %) is 2.1 to 2.8, and the balance being iron and unavoidable impurities, (b) hot rolling and cold rolling the steel from step (a) to provide a steel sheet, and (c) annealing the steel sheet from step (c) at an annealing temperature of at least the Ac1 point and not more than the Ac3 point, wherein the galvanized steel sheet has a structure which includes a ferrite phase and a martensite phase with a volume fraction being at least 3.0% and less than 10%, the average particle diameter of the ferrite is larger than 6 μm and not more than 15 μm, and 90% or more of the martensite phase exists in a ferrite grain boundary.
    • 一种镀锌钢板的制造方法,其特征在于,具有(a)将钢组成为含有0.005〜0.04质量%的C,1.5质量%以下的Si,1.0〜2.0质量%的Mn,0.10质量%以下的P,0.03质量% %以下S,0.01〜0.1质量%Al,小于0.008质量%N和0.2〜1.0质量%Cr,其中,Mn(质量%)+ 1.29Cr(质量%)为2.1〜2.8,余量为铁和 不可避免的杂质,(b)对步骤(a)中的钢进行热轧和冷轧以提供钢板,(c)在至少Ac1点的退火温度下退火步骤(c)的钢板,而不是更多 其中镀锌钢板具有铁素体相和马氏体相的结构,其体积分数为3.0%以上且小于10%,铁素体的平均粒径大于6μm, 不大于15μm,在铁素体晶界中存在90%以上的马氏体相。
    • 8. 发明授权
    • Method for manufacturing an ultra soft high carbon hot-rolled steel sheet
    • 超软高碳热轧钢板的制造方法
    • US07909950B2
    • 2011-03-22
    • US11919964
    • 2006-09-19
    • Hideyuki KimuraTakeshi FujitaNobuyuki NakamuraSatoshi UeokaNaoya AokiKenichi Mitsuzuka
    • Hideyuki KimuraTakeshi FujitaNobuyuki NakamuraSatoshi UeokaNaoya AokiKenichi Mitsuzuka
    • C21D8/00
    • C22C38/02C21D1/32C21D6/008C21D8/0263C21D9/46C22C38/04C22C38/12C22C38/14C22C38/18C22C38/32
    • The present invention provides an ultra soft high carbon hot-rolled steel sheet. The ultra soft high carbon hot-rolled steel sheet contains 0.2% to 0.7% of C, 0.01% to 1.0% of Si, 0.1% to 1.0% of Mn, 0.03% or less of P, 0.035% or less of S, 0.08% or less of Al, 0.01% or less of N, and the balance being Fe and incidental impurities and further contains 0.0010% to 0.0050% of B and 0.05% to 0.30% of Cr in some cases. In the texture of the steel sheet, an average ferrite grain diameter is 20 μm or more, a volume ratio of ferrite grains having a grain diameter of 10 μm or more is 80% or more, and an average carbide grain diameter is in the range of 0.10 to less than 2.0 μm. In addition, the steel sheet is manufactured by the steps, after rough rolling, performing finish rolling at a reduction ratio of 10% or more and at a finish temperature of (Ar3−20° C.) or more in a final pass, then performing first cooling within 2 seconds after the finish rolling to a cooling stop temperature of 600° C. or less at a cooling rate of more than 120° C./sec, then performing second cooling so that the steel thus processed is held at 600° C. or less, then performing coiling at 580° C. or less, followed by pickling, and then performing spheroidizing annealing at a temperature in the range of 680° C. to the Ac1 transformation point.
    • 本发明提供一种超软质高碳热轧钢板。 超软质高碳热轧钢板含有C:0.2〜0.7%,Si:0.01〜1.0%,Mn:0.1〜1.0%,P:0.03%以下,S:0.035%以下,0.08以下 Al以下,Al:0.01%以下,余量为Fe和附带杂质,在某些情况下还含有0.0010〜0.0050%的B和0.05〜0.30%的Cr。 在钢板的织构中,平均铁素体晶粒直径为20μm以上,粒径为10μm以上的铁素体晶粒的体积比为80%以上,平均碳化物粒径为 为0.10〜小于2.0μm。 另外,在粗轧后,在最终通过时以10%以上的还原率和最终温度(Ar 3〜20℃)以上的精轧进行精轧,然后, 在精轧后2秒内进行冷却至冷却停止温度600℃以下,冷却速度大于120℃/秒,然后进行第二次冷却,使被处理钢被保持在600℃ ℃以下,然后在580℃以下进行卷取,然后酸洗,然后在680℃的温度下进行Ac1相变点的球化退火。
    • 10. 发明申请
    • Ultra soft high carbon hot-rolled steel sheets and manufacturing method thereof
    • 超软高碳热轧钢板及其制造方法
    • US20090065106A1
    • 2009-03-12
    • US11919964
    • 2006-09-19
    • Hideyuki KimuraTakeshi FujitaNobuyuki NakamuraSatoshi UeokaNaoya AokiKenichi Mitsuzuka
    • Hideyuki KimuraTakeshi FujitaNobuyuki NakamuraSatoshi UeokaNaoya AokiKenichi Mitsuzuka
    • C21D8/02C22C38/00C21D6/02
    • C22C38/02C21D1/32C21D6/008C21D8/0263C21D9/46C22C38/04C22C38/12C22C38/14C22C38/18C22C38/32
    • The present invention provides an ultra soft high carbon hot-rolled steel sheet. The ultra soft high carbon hot-rolled steel sheet contains 0.2% to 0.7% of C, 0.01% to 1.0% of Si, 0.1% to 1.0% of Mn, 0.03% or less of P, 0.035% or less of S, 0.08% or less of Al, 0.01% or less of N, and the balance being Fe and incidental impurities and further contains 0.0010% to 0.0050% of B and 0.05% to 0.30% of Cr in some cases. In the texture of the steel sheet, an average ferrite grain diameter is 20 μm or more, a volume ratio of ferrite grains having a grain diameter of 10 μm or more is 80% or more, and an average carbide grain diameter is in the range of 0.10 to less than 2.0 μm. In addition, the steel sheet is manufactured by the steps, after rough rolling, performing finish rolling at a reduction ratio of 10% or more and at a finish temperature of (Ar3−20° C.) or more in a final pass, then performing first cooling within 2 seconds after the finish rolling to a cooling stop temperature of 600° C. or less at a cooling rate of more than 120° C./sec, then performing second cooling so that the steel thus processed is held at 600° C. or less, then performing coiling at 580° C. or less, followed by pickling, and then performing spheroidizing annealing at a temperature in the range of 680° C. to the Ac1 transformation point.
    • 本发明提供一种超软质高碳热轧钢板。 超软质高碳热轧钢板含有C:0.2〜0.7%,Si:0.01〜1.0%,Mn:0.1〜1.0%,P:0.03%以下,S:0.035%以下,0.08以下 Al以下,Al:0.01%以下,余量为Fe和附带杂质,在某些情况下还含有0.0010〜0.0050%的B和0.05〜0.30%的Cr。 在钢板的织构中,平均铁素体晶粒直径为20μm以上,粒径为10μm以上的铁素体晶粒的体积比为80%以上,平均碳化物粒径为 为0.10〜小于2.0μm。 另外,在粗轧后,在最终通过时以10%以上的还原率和最终温度(Ar 3〜20℃)以上的精轧进行精轧,然后, 在精轧后2秒内进行冷却至冷却停止温度600℃以下,冷却速度大于120℃/秒,然后进行第二次冷却,使被处理钢被保持在600℃ ℃以下,然后在580℃以下进行卷取,然后酸洗,然后在680℃的温度下进行Ac1相变点的球化退火。