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    • 8. 发明授权
    • Method of producing high-strength cold-rolled steel sheet suitable for
working
    • 生产适用于加工的高强度冷轧钢板的方法
    • US5279683A
    • 1994-01-18
    • US891685
    • 1992-05-29
    • Susumu OkadaTojiro IkedaSusumu SatohHideo AbeJun-ichi ManoNorio Ohta
    • Susumu OkadaTojiro IkedaSusumu SatohHideo AbeJun-ichi ManoNorio Ohta
    • C21D8/04
    • C21D8/0431C21D8/0436
    • A method of producing a high-strength cold-rolled steel sheet suitable for working uses which utilizes a steel material having the following composition: not more than 0.006 wt % of C, not more than 0.5 wt % of Si, not more than 2.0 wt % of Mn, and not less than 0.01 wt % but not more than 0.10 wt % of Ti, the Ti, C and N contents being determined to meet the condition of Ti>(48/12) C wt %+(48/14) N wt %, the steel also consisting essentially of not less than 0.0010 wt % but not more than 0.0100 wt % of Nb, not less than 0.0002 wt % but not more than 0.0020 wt % of B, not less than 0.03 wt % but not more than 0.20 wt % of P, not more than 0.03 wt % of S, not less than 0.010 wt % but not more than 0.100 wt % of Al, not more than 0.008 wt % of N, not more than 0.0045 wt % of O, and the balance substantially Fe and incidental inclusions. The steel material is cast and hot-rolled and then subjected to a cold rolling conducted at a sheet temperature not higher than 300.degree. C. under such a condition that the sum of the rolling reductions of passes which meet the following condition between said sheet temperature (T .degree.C.) and the strain rate .epsilon. (S-1) is 50% or greater:T.times..epsilon..gtoreq.50,000.degree. C. S.sup.-1The steel sheet is then continuously annealed or galvannealed.
    • 一种适用于使用具有以下组成的钢材的工作用高强度冷轧钢板的方法:不超过0.006重量%的C,不大于0.5重量%的Si,不大于2.0重量% Mn,不小于0.01重量%,但不超过0.10重量%,Ti,C和N含量被确定为满足Ti>(48/12)C wt%+(48/14)的条件 )N重量%时,钢还基本上由不少于0.0010重量%但不大于0.0100重量%的Nb组成,不小于0.0002重量%但不大于0.0020重量%的B,不小于0.03重量%,但是 不超过0.20重量%的P,不大于0.03重量%的S,不小于Al的0.010重量%但不大于0.100重量%,不大于0.008重量%的N,不大于0.0045重量%的 O,余量基本上是Fe和附带的夹杂物。 将钢材进行铸造和热轧,然后在不高于300℃的板材温度下进行冷轧,条件是在所述板温度之间满足以下条件的轧制轧制量的总和 (T°C),应变速率(ε)(S-1)为50%以上:T *(ε)> = 50,000℃S-1然后对钢板进行连续退火或合金化热浸镀锌。
    • 9. 发明授权
    • Method of continuously carburizing metal strip
    • 连续渗碳金属条的方法
    • US6074493A
    • 2000-06-13
    • US713189
    • 1996-09-12
    • Tsuguhiko NakagawaKoushi KuramotoNobuaki HanazonoJun MorozumiSusumu SatohSusumu Okada
    • Tsuguhiko NakagawaKoushi KuramotoNobuaki HanazonoJun MorozumiSusumu SatohSusumu Okada
    • C21D1/19C21D9/00C23C8/22C23C8/20C21D1/54
    • C21D9/0062C21D1/19C23C8/22
    • This invention aims at providing a method of continuously carburizing a metal strip, which is capable of providing industrially optimum carburization conditions while attaining non-soot-generating atmospheric data, desired carburization concentration distribution and desired carburization rate, in a case where a strip passed through a carburization furnace is carburized continuously in a surface reaction rate-governing area in which the carbon concentration in a superficial layer of the strip has not yet reached an equilibruim level with respect to the time. The method consist of carburization concentration distribution (S7), on the basis of the carburization conditions including given specification data for the steel plate, furnace temperature and composition of the atmospheric gas, outputting the concentration of the components of the atmospheric gas, feed and discharge rates and other carburization conditions when the set carburization rate and an actual carburization rate are equal (S8-S15), and correcting the set carburization rate when a difference between the set carburization rate and an actual carburization rate is large, and correcting the strip feed rate while correcting the composition of the atmospheric gas when a difference between the predetermined carburization rate and set carburization rate is large (S9).
    • 本发明的目的在于提供一种连续渗碳金属带的方法,该方法能够在条带通过的情况下获得工业上最佳的渗碳条件,同时获得产生非烟灰的大气数据,所需的渗碳浓度分布和所需的渗碳速率 渗碳炉在表面反应速率控制区域中连续渗碳,其中带材的表面层中的碳浓度相对于时间尚未达到平衡水平。 该方法包括渗碳浓度分布(S7),基于包括给出的钢板规格数据,炉温和气氛气体组成的渗碳条件,输出大气气体成分浓度,进料和排出 当设定的渗碳速率和实际渗碳速率相等时(S8-S15),并且当设定的渗碳速率和实际渗碳速率之间的差异大时校正设定的渗碳速率,并且校正带材进料 当预定的渗碳速率和设定的渗碳速率之间的差异大时,校正气氛气体的组成的速率(S9)。