首页> 外国专利> PROCESS FOR PRODUCING GRAIN-ORIENTED ELECTRICAL STEEL STRIP AND GRAIN-ORIENTED ELECTRICAL STEEL STRIP OBTAINED ACCORDING TO SAID PROCESS RELATED APPLICATIONS

PROCESS FOR PRODUCING GRAIN-ORIENTED ELECTRICAL STEEL STRIP AND GRAIN-ORIENTED ELECTRICAL STEEL STRIP OBTAINED ACCORDING TO SAID PROCESS RELATED APPLICATIONS

机译:根据所述方法生产取向电工钢带和获得取向电工钢带的方法

摘要

With a process for producing grain-oriented electrical steel strip by means of thin slab continuous casting, comprising the following process steps: a) smelting a steel with a smelt which, in addition to iron (Fe) and unavoidable impurities, contains Si: 2.00 – 4.00 wt%, C: 0.025 –0.100 wt%, Mn: 0.060 –0.500 wt%, Cu: 0.200 –0.550 wt%, Alsl:0.010 –0.030 wt%, S: 100 ppm, N: 80 –120 ppm, and one or more elements from the group comprising Cr, V, Ni and Mo, each 0.100 wt%, b) continuously casting the smelt by thin slab continuous casting to form a strand having a thickness of 50 –120 mm, and dividing the strand into thin slabs,c) heating up the thin slabs, preferably in a linear furnace, to a temperature above 1050°C and subjecting the slabs to homogenization annealing at a maximum temperature of 1250°C, d) immediately prior to the first hot rolling pass of a subsequent hot rolling process, passing the slabs through an induction heating device, in particular, a high frequency induction heating device, and heating the thin slabs to a maximum temperature of 1350°C, which is above the respective homogenization temperature of process step c), e) continuously hot rolling the thin slabs to form a hot strip having a thickness of 1.8 mm –3.0 mm, f) cooling and reeling the hot-rolled strip at a reeling temperature of less than 650°C to form a coil, g) pickling the hot-rolled strip after reeling and prior to a subsequent cold rolling step, h) cold rolling the hot strip in a first cold rolling stage to an (intermediate) thickness of 0.50 mm –0.80 mm, i) subjecting the resulting cold-rolled strip to recrystallization and decarburization annealing at a strip temperature ranging from 820°C –890°C for a period of 300 –600 seconds in a gaseous annealing atmosphere which acts on the cold-rolled strip and contains nitrogen (N2) and hydrogen (H2), and which has a water vapor/hydrogen partial pressure ratio pH2O / pH2 of 0.30 to 0.60, j) in a second cold rolling stage, cold rolling the cold strip which has been subjected to recrystallization and decarburization annealing to its (final) thickness or its nominal usable thickness of 0.15 mm –0.40 mm,k) applying an annealing separator (non-stick layer) containing MgO to the strip surface of the cold-rolled strip which has been rolled to its final thickness or usable thickness, l) subjecting the cold-rolled strip which has been coated with the annealing separator to secondary recrystallization annealing by high-temperature annealing in a bell-type furnace at a temperature of 1150°C, forming a finished steel strip having a pronounced Goss texture, and m) coating the finished steel strip which has undergone secondary recrystallization annealing with an electrically insulating layer and then stress-free annealing or stress-relief annealing the coated finished steel strip, an improved process for producing grain-oriented electrical steel strip by means of thin slab continuous casting is provided, by which it is possible to introduce an inhibitor into the steel strip, which controls secondary grain growth during secondary recrystallization annealing in a high-temperature bell-type annealing furnace.
机译:一种通过薄板坯连续铸造生产方向性电工钢带的方法,包括以下工艺步骤:a)用冶炼钢液,该冶炼液中除铁(Fe)和不可避免的杂质外还含有Si:2.00 – 4.00 wt%,C:0.025 –0.100 wt%,Mn:0.060 –0.500 wt%,Cu:0.200 –0.550 wt%,Al sl :0.010 –0.030 wt%,S:<100 ppm ,N:80 –120 ppm,以及一种或多种选自Cr,V,Ni和Mo的元素,每种元素含量<0.100 wt%,b)通过薄板坯连续铸造连续铸造熔体以形成厚度为50-120毫米,并将钢绞线分成薄板,c)最好在线性炉中将薄板加热到1050°C以上的温度,并在最高1250°C的温度下对板进行均质退火, d)紧接在随后的热轧过程的第一次热轧通过之前,使板坯通过感应加热装置,特别是高频感应加热装置,并将薄板加热到最高温度1350°C,该温度高于工艺步骤c)的相应均质温度,e)连续热轧薄板以形成厚度为1.8 mm的热轧带–3.0 mm,f)在低于650°C的卷取温度下冷却并卷取热轧带材,以形成卷材; g)在卷取之后且随后的冷轧步骤之前,对热轧带材进行酸洗,h)在第一个冷轧阶段将热轧带钢冷轧至(中间)厚度为0.50 mm –0.80 mm,i)使所得的冷轧带钢在820°C –890°C的带钢温度下进行重结晶和脱碳退火C在气态退火气氛中持续300 – 600秒,该气氛作用在冷轧带钢上,并包含氮(N 2 )和氢(H 2 ),并且其水蒸气/氢分压比pH 2 O / pH 2 为0.30至0.6 0,j)在第二个冷轧阶段中,使用退火分离器将经过重结晶和脱碳退火的冷带冷轧至其(最终)厚度或名义可用厚度0.15 mm –0.40 mm,k)。不粘层),在已轧制至其最终厚度或可用厚度的冷轧带材表面上含MgO; l)通过退火分离器将已涂覆退火分离剂的冷轧带材进行二次重结晶退火在钟罩式炉中在> 1150°C的温度下进行高温退火,形成具有明显高斯织构的成品钢带,并m)用电绝缘层覆盖经过二次重结晶退火的成品钢带,并然后进行无应力退火或消除应力的退火处理后的带涂层成品钢带,这是一种利用薄板坯连续生产取向钢带的改进工艺提供了一种非连续铸造法,通过该铸造法可以在钢板中引入抑制剂,该抑制剂在高温钟罩式退火炉的二次再结晶退火过程中控制二次晶粒的生长。

著录项

  • 公开/公告号WO2016059101A1

    专利类型

  • 公开/公告日2016-04-21

    原文格式PDF

  • 申请/专利权人 SMS GROUP GMBH;

    申请/专利号WO2015EP73759

  • 申请日2015-10-14

  • 分类号C21D8/12;C22C38/00;C22C38/02;C22C38/04;C22C38/16;

  • 国家 WO

  • 入库时间 2022-08-21 14:18:06

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