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    • 1. 发明申请
    • COLD ROLLED ELECTROMAGNETIC STEEL SHEET USED FOR RAPID CYCLING SYNCHROTRON AND PRODUCING METHOD THEREOF
    • 用于快速循环同步电动机的冷轧电磁钢板及其制造方法
    • US20120318411A1
    • 2012-12-20
    • US13520405
    • 2011-04-13
    • Lingfeng ChenXiao ChenZhanyuan Hu
    • Lingfeng ChenXiao ChenZhanyuan Hu
    • C21D8/12H01F1/01
    • C21D8/1233C21D8/12C22C38/001C22C38/002C22C38/004C22C38/02C22C38/04C22C38/06
    • A cold rolled electromagnetic steel sheet for rapid cycling synchrotron, and a manufacturing method thereof, the method includes the steps of 1) smelting and casting, the composition of the cold rolled electromagnetic steel sheet is C 0.001-0.003 wt %, Si 0.60%-0.90 wt %, Mn 0.40%-0.70 wt %, P≦0.04 wt %, Al 0.60-0.80 wt %, S≦0.0035 wt %, N≦0.003 wt %, and the rest is Fe; smelting and RH refining, and then casting to form semi-finished product; 2) hot rolling; 3) normalizing, in which the normalizing temperature is controlled between 960° C.-980° C., and the normalizing time is 30-60 sec; 4) pickling and cold rolling; 5) annealing, wherein the annealing temperature is controlled to be between 850° C.-870° C., and the annealing time is 13-15 sec; 6) obtaining non-oriented silicon steel product after coating. The cold rolled electromagnetic steel sheet of the present invention has low coercivity, specifically in case that the magnetizing intense returns to zero after reaching 10 Oersted (Oe), the coercivity of the material is Hc≦79.6 A/m; high magnetic induction, which is B50≧1.75 T; and low iron losses of P15/50≦4.2 W/kg, and the iron losses after strain-annealing is P15/50≦3.5 W/kg.
    • 一种用于快速循环同步加速器的冷轧电磁钢板及其制造方法,其特征在于,包括以下步骤:1)熔融铸造,冷轧电磁钢板的组成为0.001-0.003重量%,Si 0.60〜 0.90重量%,Mn 0.40重量%-0.70重量%,P< L; 0.04重量%,Al 0.60-0.80重量%,S& NEE; 0.0035重量%,N< 1E; 0.003重量%,其余为Fe; 冶炼和RH精炼,然后铸造形成半成品; 2)热轧; 3)归一化,其中归一化温度控制在960℃-980℃之间,标准化时间为30-60秒; 4)酸洗和冷轧; 5)退火,其中退火温度控制在850℃-870℃之间,退火时间为13-15秒; 6)涂布后获得无取向硅钢产品。 本发明的冷轧电磁钢板具有低的矫顽力,特别是在达到10奥斯特(Oe)后,磁化强度恢复到零的情况下,材料的矫顽力为Hc≦̸ 79.6A / m; 高磁感应,B50≥1.5T; P15 / 50&NlE低铁损; 4.2W / kg,应变退火后的铁损为P15 / 50≦̸ 3.5W / kg。
    • 4. 发明申请
    • MANUFACTURE METHOD OF HIGH-EFFICIENCY NON-ORIENTED SILICON STEEL WITH EXCELLENT MAGNETIC PERFORMANCE
    • 具有优异磁性能的高效非导向硅钢的制造方法
    • US20130199675A1
    • 2013-08-08
    • US13637611
    • 2011-04-27
    • Aihua MaBo WangShishu XieZhanyuan HuLiang ZouZitao WangYuhua ZhuJie HuangBingzhong JinXiandong Liu
    • Aihua MaBo WangShishu XieZhanyuan HuLiang ZouZitao WangYuhua ZhuJie HuangBingzhong JinXiandong Liu
    • C21D8/00
    • C21D8/005C21D8/1261C21D8/1272C22C38/001C22C38/002C22C38/004C22C38/02C22C38/04C22C38/06C22C38/14C22C38/60H01F1/16
    • A manufacture method of high-efficiency non-oriented silicon steel with excellent magnetic property, which comprises the following steps: 1) smelting and casting; chemical compositions of non-oriented silicon steel, by weight percent, are: C≦0.0040%, Si: 0.1˜0.8%, Al: 0.002˜1.0%, Mn: 0.10˜1.50%, P: ≦0.2%, Sb: 0.04˜0.08%, S≦0.0030%, N≦0.0020%, Ti≦0.0020%, and the rest is Fe and unavoidable inclusions; molten steel in accordance with the above compositions is smelted and then casted into billets; 2) hot-rolling and pickling; heating temperature for slab is 1100° C.˜1150° C. and finish-rolling temperature is 860° C.˜920° C.; after rolling, the hot-rolled product is air cooled, during which air cooling time t: (2+30×Sb %)s≦t≦7 s; thereafter reeling at a temperature ≧720° C. ; 3) cold-rolling; rolling to form cold-rolled plate with target thickness at a reduction ratio of 70˜18%; 4) annealing; heating up the cold-rolled plate to 800˜1000° C. at heating rate of ≧15° C./s, and holding time is 10 s˜25 s. Under the precondition to ensure magnetic properties, this invention implements low cost manufacture of high efficiency electric steel by adding elements advantageous to favorable texture during steel making, controlling contents of adverse elements and coordinating air cooling time control during hot-rolling with high temperature reeling.
    • 一种具有优异磁性的高效无取向硅钢的制造方法,包括以下步骤:1)熔炼和铸造; 无取向硅钢的化学组成按重量百分比分别为:C@0.0040%,Si:0.1〜0.8%,Al:0.002〜1.0%,Mn:0.10〜1.50%,P:@ 0.2%,Sb:0.04 〜0.08%,S@0.0030%,N@0.0020%,Ti@0.0020%,其余为Fe和不可避免的夹杂物; 根据上述组成的钢水熔炼,然后铸成坯料; 2)热轧酸洗; 板坯加热温度为1100℃〜1150℃,精轧温度为860℃〜920℃。 轧制后,将热轧制品进行空气冷却,在此空气冷却时间t:(2 + 30×Sb%)s @ t @ 7 s; 然后在> 720℃的温度下卷曲; 3)冷轧; 轧制成型,目标厚度为70〜18%的冷轧板; 4)退火; 将冷轧板加热至800〜1000℃,加热速率> 15℃/ s,保温时间为10秒〜25秒。 在确保磁性能的前提下,本发明通过添加有利于钢铁制造中有利组织的元素,控制不利元素的含量和在高温卷取的热轧过程中协调空气冷却时间控制来实现低成本电钢的低成本制造。