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Method of manufacturing very high-resistance, cold-laminated dual-phase steel sheets, and sheets produced thereby

机译:极高电阻的冷层压双相钢板的制造方法及其制造的钢板

摘要

Cold-rolled and annealed steel sheet comprises (in wt.%): carbon (0.055-0.095); manganese (2-2.6); silicon (0.005-0.35); sulfur (= 0.005); phosphorus (= 0.05); aluminum (0.1-0.3); molybdenum (0.05-0.25); chromium (0.2-0.5); nickel (= 0.1); niobium (0.01-0.04); titanium (0.01-0.05); boron (0.0005-0.0025); and nitrogen (0.002-0.007), where the rest of the composition is iron and impurities. An independent claim is included for a process for preparation of the steel sheet comprising pouring the steel in the form of semi-product, carrying the semi-product at a temperature of 1150-1250[deg] C, hot rolling of the semi-finished product with a temperature of end-rolling of greater than argon (Ar3) to obtain a hot rolled product, coiling the hot-rolled at a temperature of 500-570[deg] C, cleaning the hot rolled product, making cold rolling with a reduction rate of 30-80% to obtain cold rolled product, heating the cold rolled product having a speed of 1-5[deg] C/s and annealing temperature including Ac1+40[deg] C-Ac3-30[deg] C , (where Ac1 is initial temperature of allotropic transformation, and Ac3 is final temperature of allotropic transformation) for 30-300 seconds to obtain a heated and annealed product with a structure comprising austenite and cooling the product to a temperature below the initial temperature of formation of martensite (M s) temperature with sufficient speed so that austenite is completely transformed to martensite.
机译:冷轧和退火钢板包括(以重量%计):碳(0.055-0.095);锰(2-2.6);硅(0.005-0.35);硫(= 0.005);磷(= 0.05);铝(0.1-0.3);钼(0.05-0.25);铬(0.2-0.5);镍(= 0.1);铌(0.01-0.04);钛(0.01-0.05);硼(0.0005-0.0025);氮(0.002-0.007),其余成分是铁和杂质。包括一种制备钢板的方法的独立权利要求,该方法包括将半成品形式的钢浇铸,在1150-1250℃的温度下运送该半成品,对半成品进行热轧最终轧制温度高于氩气(Ar3)的热轧产品,获得热轧产品,在500-570℃的温度下卷取热轧产品,清洗热轧产品,然后用冷轧机进行冷轧。降低30-80%的比率以获得冷轧产品,以1-5℃/ s的速度加热退火温度包括Ac1 + 40℃-Ac3-30℃的冷轧产品。 ,(其中Ac1是同素异形转变的初始温度,Ac3是同素异形转变的最终温度)持续30-300秒,以获得具有奥氏体结构的加热退火产品,并将该产品冷却到低于初始形成温度的温度速度下马氏体(M s)温度的变化使奥氏体完全转变为马氏体。

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