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    • 1. 发明授权
    • Method for manufacturing high-strength cold-rolled steel strip excellent
in press-formability
    • 用于制造压制成形性优异的高强度冷轧钢带的方法
    • US4336080A
    • 1982-06-22
    • US208537
    • 1980-11-20
    • Kazuhide NakaokaAkihiko NishimotoYoshihiro Hosoya
    • Kazuhide NakaokaAkihiko NishimotoYoshihiro Hosoya
    • B21B3/00B21B3/02C21D1/18C21D8/02C21D8/04C21D9/46C21D9/48C22C38/00C22C38/04
    • C21D8/0473C21D1/18C21D2211/002C21D2211/005C21D2211/008C21D8/0426
    • A method for manufacturing a high-strength cold-rolled steel strip excellent in press-formability, which comprises the steps of: preparing a slab of an aluminum-killed steel consisting essentially of, in weight percentage:______________________________________ Carbon from 0.02 to 0.06%, Manganese from 0.06 to 0.25%, Phosphorus from 0.01 to 0.06%, Soluble aluminum from 0.020 to 0.060%, Nitrogen up to 0.005%, and ______________________________________ the balance iron and incidental impurities;hot-rolling said slab to prepare a hot-rolled steel strip; coiling said steel strip at a temperature within the range of from 650.degree. to 770.degree. C.; cold-rolling said hot-rolled steel strip thus coiled to prepare a cold-rolled steel strip; subjecting said cold-rolled steel strip to a continuous annealing treatment for a prescribed period of time at a temperature within the range of from 750.degree. to 880.degree. C.; cooling said cold-rolled steel strip continuously annealed at a cooling rate of at least: exp {-5.6 (Cwt. %.gamma.+Mn wt. %/6+Si wt. %/24)+7.8} .degree.C./sec from a temperature region of from Ar.sub.1 to Ar.sub.1 +60.degree. C. to convert the structure thereof into a dual-phase structure of ferrite and a low-temperature transformation phase; and then, subjecting said cold-rolled steel strip having said dual-phase structure to an over-ageing treatment for a prescribed period of time at a temperature within the range of from 260.degree. to 360.degree. C.
    • 一种制造压制成型性优异的高强度冷轧钢带的方法,包括以下步骤:制备基本上由重量百分数计的铝 - 镇静钢的板坯 - 0.02〜0.06%的碳钢, - 锰为0.06〜0.25%,磷为0.01〜0.06%, - 可溶性铝为0.020〜0.060%,氮为0.005%以下,余量为铁和杂质; 热轧所述板坯以制备热轧钢带; 将所述钢带卷绕在650〜770℃的温度范围内。 冷轧所述热轧钢带,由此卷成制备冷轧钢带; 在750〜880℃的温度范围内对所述冷轧钢带进行连续退火处理规定的时间; 冷却所述冷轧钢带以至少:exp {-5.6(Cwt。%γ+ Mn wt。%/ 6 + Si wt。%/ 24)+7.8}℃/ s的冷却速率连续退火 将Ar1〜Ar1 + 60℃的温度区域变换成铁素体和低温相变相的双相组织, 然后将所述具有所述双相结构的所述冷轧钢带在260至360℃的温度范围内进行过时效处理规定的时间。
    • 4. 发明授权
    • Method of producing silicon iron sheet having excellent soft magnetic
properties
    • 具有优异软磁特性的硅铁片的制造方法
    • US4773948A
    • 1988-09-27
    • US22642
    • 1987-01-30
    • Kazuhide NakaokaYoshikazu TakadaJunichi InagakiAkira Hiura
    • Kazuhide NakaokaYoshikazu TakadaJunichi InagakiAkira Hiura
    • B21B3/02C21D8/12C22C38/00H01F1/16H01F1/04
    • C21D8/1222
    • Fe alloy containing Si: 4.0 to 7.0 wt %, Mn: not more than 0.5 wt %, P: not more than 0.1 wt %, S: not more than 0.02 wt %, Al: not more than 2 wt % is molten, and made an ingot or continuously cast into a piece. The piece is subjected to slabbing-roughing, otherwise roughing at temperature of more than 1000.degree. C. and at total reduction of more than 50%, and further a hot finish rolling. The hot finish rolling is performed at temperature of not more than 1100.degree. C. and under a total reduction which is specified by a relation between average grain diameter before the hot finish rolling and Si content, and coiled at temperature of not more than 750.degree. C. after the rolling. The hot rolled plate is performed with cold rolling or warm rolling after the descaling and hot rolled strip annealing. If required, an intermediate annealing is performed in the course of the cold (or warm) rolling.
    • PCT No.PCT / JP86 / 00300 Sec。 371日期1987年1月30日 102(e)1987年1月30日PCT PCT 1986年6月13日PCT公布。 公开号WO86 / 07390 1986年12月18日,含有Si的Fe合金:4.0〜7.0重量%,Mn:0.5重量%以下,P:0.1重量%以下S:0.02重量%以下Al:不大于 2重量%熔融,制成锭或连铸成片。 将该片材进行板坯粗加工,否则在高于1000℃的温度下进行粗加工并总共减少50%以上,进一步进行热精轧。 热精轧在不超过11​​00℃的温度下进行,并且在由热精轧前的平均粒径与Si含量之间的关系规定的总还原量下进行,并且在不高于750℃的温度下盘卷 C.滚动后。 热轧板在除锈和热轧带钢退火后进行冷轧或暖轧。 如果需要,在冷(或热)轧制过程中进行中间退火。