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    • 4. 发明授权
    • Ultrahigh silicon, grain-oriented electrical steel sheet and process for
producing the same
    • 超高硅,晶粒取向电工钢板及其制造方法
    • US5308411A
    • 1994-05-03
    • US835982
    • 1992-02-20
    • Yozo SugaYoshiyuki UshigamiHodaka HonmaNobuyuki Takahashi
    • Yozo SugaYoshiyuki UshigamiHodaka HonmaNobuyuki Takahashi
    • C22C38/02H01F1/04
    • C22C38/02
    • An ultrahigh silicon, grain-oriented electrical steel sheet having a magnetic flux density, B.sub.8, of 1.57 or more and a degree of azimuth orientation, R (B.sub.8 /B.sub.s) of 0.87 or more is provided by cold-rolling an ultrahigh silicon steel sheet comprising by weight 0.005 to 0.023% of C, 5 to 7.1% of Si, 0.014% or less of S, 0.013 to 0.055% of acid soluble Al and 0.0095% or less of total N with the balance consisting of Fe and unavoidable impurities at a temperature in the range of from 120.degree. to 380.degree. C. optionally after annealing at a temperature in the range of from 800.degree. to 1100.degree. C., subjecting the cold-rolled sheet to decarburization annealing, coating the annealed sheet with an annealing separator, coiling the coated sheet to prepare a strip coil and subjecting the strip coil to high-temperature finish annealing for secondary recrystallization, the steel sheet being subjected to nitriding during a period from the decarburization annealing to the initiation of secondary recrystallization in the step of high-temperature finish annealing, to increase the nitrogen content.
    • PCT No.PCT / JP91 / 00829 Sec。 371日期1992年2月20日 102(e)日期1992年2月20日PCT提交1991年6月20日PCT公布。 出版物WO91 / 19825 日期为1991年12月26日。具有磁通密度B8为1.57以上且方位取向度R(B8 / Bs)为0.87以上的超高硅晶粒取向电工钢板由冷 卷取超高硅钢板,其重量为0.005〜0.023%C,5〜7.1%Si,0.014%以下S,0.013〜0.055%酸溶性Al和0.0095%以下的总N,余量 在120〜380℃的温度范围内由Fe和不可避免的杂质构成,任选在800〜1100℃的温度退火后,对冷轧板进行脱碳退火, 用退火分离机对退火后的板进行涂布,卷取被覆板,制备带状卷材,对带状卷材进行二次再结晶的高温成品退火,在脱碳退火至起始期间,钢板进行氮化 的秒 在高温退火的步骤中进行重结晶,提高氮含量。
    • 5. 发明授权
    • Process for preparation of grain-oriented electrical steel sheet having
superior magnetic properties
    • 具有优异磁性的方向性电磁钢板的制备方法
    • US5261971A
    • 1993-11-16
    • US869857
    • 1992-04-16
    • Yasunari YoshitomiTakehide SenumaYozo SugaNobuyuki Takahashi
    • Yasunari YoshitomiTakehide SenumaYozo SugaNobuyuki Takahashi
    • C21D8/12
    • C21D8/1222C21D8/1233
    • A silicon steel slab comprising 0.05 to 0.8% by weight of Mn and up to 0.014% by weight of S+0.405Se is heated at a temperature lower than 1280.degree. C. and hot-rolled under such conditions that the hot rolling-finish temperature is 700.degree. to 1150.degree. C., the cumulative reduction ratio at the final three passes is at least 40%, and the reduction ratio at the final pass is at least 20%, or this silicon steel slab is hot-rolled at a hot rolling-finish temperature of 750.degree. to 1150.degree. C. while adopting the above-mentioned reduction ratio according to need, is maintained at a temperature not lower than 700.degree. C. for at least 1 second, and wound at a winding temperature lower than 700.degree. C. The hot-rolled sheet is subjected to the hot-rolled sheet annealing, finally cold-rolled at a reduction ratio of at least 80%, subjected to the decarburization annealing, and then subjected to the final finish annealing. According to this process, a grain-oriented electrical steel sheet having superior magnetic properties is obtained.
    • 包含0.05〜0.8重量%的Mn和至多0.014重量%的S + 0.405Se的硅钢板在低于1280℃的温度下加热,并在热轧终轧温度 为700〜1150℃,最后三道次的累积减速比为40%以上,最后通过时的减速比为20%以上,或将该硅钢板热轧 轧制精加工温度为750〜1150℃,同时根据需要采用上述的还原率,在不低于700℃的温度下保持至少1秒钟,并以低于 700℃。对热轧板进行热轧板退火,最后以至少80%的压下率冷轧进行脱碳退火,然后进行最终成品退火。 根据该方法,得到磁特性优异的晶粒取向电工钢板。
    • 8. 发明授权
    • Process for producing a grain-oriented electromagnetic steel sheet or
strip
    • 晶粒取向电磁钢板或带材的制造方法
    • US4592789A
    • 1986-06-03
    • US411001
    • 1982-08-24
    • Yakichiro KawamoYozo SugaTadao NozawaTadashi Nakayama
    • Yakichiro KawamoYozo SugaTadao NozawaTadashi Nakayama
    • H01F1/16C21D8/12H01F1/04
    • C21D8/1272
    • In conventional processes for producing a grain-oriented electromagnetic steel strip or sheet, the carbon and silicon content of the starting material is such that .alpha.-.gamma. transformation takes place, said transformation formerly being belived to play an important role in, for example, the formation of AlN. Recently, attempts have been made to reduce the carbon content so as to simplify decarburization-annealing, but these attempts have not been successful.In the present invention, (1) an extremely low carbon content (C.ltoreq.0.02%) and an extremely low sulfur content (S.ltoreq.0.015%), as well as a low heating temperature of the starting material, and (2) a temperature gradient of at least 2.degree. C. per centimeter, which is generated parallel to the sheet surface and under which the growth of secondary recrystallized grains is completed, are combined. As a result of such combination, the following advantages are attained: (1) secondary recrystallization is attained without .alpha.-.gamma. transformation taking place; (2) a high magnetic flux density is attained; (3) a continuous-casting machine can be directly combined with a continuous hot-rolling mill; (4) decarburization-annealing can be simplified; and (5) no molten slag is formed during heating of a steel slab.
    • 在用于制造晶粒取向的电磁钢带或片材的常规方法中,起始材料的碳和硅含量使得发生α-γ转化,所述转变以前被认为在例如 形成AlN。 近来,已经尝试减少碳含量以简化脱碳退火,但是这些尝试并不成功。 在本发明中,(1)极低的碳含量(C <= 0.02%)和极低的硫含量(S <= 0.015%)以及起始材料的低加热温度和( 2)结合平行于片材表面并在其下完成二次再结晶晶粒的生长的每厘米至少2℃的温度梯度。 作为这种组合的结果,可获得以下优点:(1)在没有发生α-γ转化的情况下实现二次再结晶; (2)获得高磁通密度; (3)连铸机可直接与连续式热轧机组合; (4)可以简化脱碳退火; (5)钢板加热时不会形成熔渣。
    • 9. 发明授权
    • Process for manufacturing double oriented electrical steel sheet having
high magnetic flux density
    • 具有高磁通密度的双重取向电工钢板的制造方法
    • US5370748A
    • 1994-12-06
    • US974354
    • 1992-11-10
    • Yozo SugaYoshiyuki Ushigami
    • Yozo SugaYoshiyuki Ushigami
    • C21D8/12C22C38/00C22C38/06H01F1/16
    • C21D8/1233C21D8/1272
    • The present invention is a process for manufacturing a double oriented electrical steel sheet having a high magnetic flux density by carrying out a low temperature annealing for the secondary recrystallization by the use of AlN as inhibitor, characterized by hot-rolling a silicon steel slab comprising 1.8-4.8% by weight of Si, 0.008-0.048% by weight of acid soluble Al, 0.0028-0.0100% by weight of acid soluble Al, 0.0028-0.0100% by weight of total N, not more than 0.016% by weight of S and the balance being Fe and unavoidable impurities into a hot-rolled sheet, subjecting the sheet to cold-rolling at a reduction rate of 40-80%, subsequently subjecting the sheet to another cold-rolling at a reduction rate of 30-70% in the direction crossing the cold-rolled direction, annealing at 750.degree.-950.degree. C. in a wet hydrogen atmosphere for decarburization, and carrying out the final finishing annealing which comprises a stage for completing the secondary recrystallizing at a temperature of 920.degree.-1100.degree. C., followed by a stage for purification.
    • 本发明是一种通过使用AlN作为抑制剂进行二次再结晶的低温退火来制造具有高磁通密度的双重取向电工钢板的方法,其特征在于,热轧含有1.8 -4.8重量%的Si,0.008-0.048重量%的酸溶性Al,0.0028-0.0100重量%的酸溶性Al,0.0028-0.0100重量%的总N,不大于0.016重量%的S和 余量为Fe和不可避免的杂质进入热轧板中,以40-80%的还原率对板进行冷轧,随后将片材以30-70%的还原率进行另一次冷轧 与冷轧方向交叉的方向,在湿氢气氛中在750-950℃退火脱碳,进行最终精加工退火,其包括在920℃的温度下完成二次再结晶的阶段 EG-1100℃,然后进行纯化。
    • 10. 发明授权
    • Process for producing grain-oriented electrical steel sheet having
excellent magnetic characteristic
    • 具有优异磁特性的晶粒取向电工钢板的制造方法
    • US5145533A
    • 1992-09-08
    • US769586
    • 1991-10-02
    • Yasunari YoshitomiYozo SugaNobuyuki TakahashiYoshiyuki UshigamiTadashi Nakayama
    • Yasunari YoshitomiYozo SugaNobuyuki TakahashiYoshiyuki UshigamiTadashi Nakayama
    • C21D8/12C21D11/00C22C38/00C22C38/02C22C38/06H01F1/16
    • C21D8/1255C21D11/00C21D8/1283
    • A process for producing a grain-oriented electrical steel sheet having an excellent magnetic characteristic, comprising the steps of: heating to a temperature lower than 1280.degree. C. a steel slab comprising 0.025 to 0.075 wt % C, 2.5 to 4.5 wt % Si, 0.010 to 0.060 wt % acid-soluble Al, 0.0030 to 0.0130 wt % N, 0.014 wt % or less (S+0.405 Se), 0.05 to 0.8 wt % Mn, and the balance consisting of Fe and unavoidable impurities; hot-rolling the thus heated slab to form a hot-rolled strip; cold-rolling the hot-rolled strip to form a cold-rolled strip; decarburization-annealing the cold-rolled strip; applying an annealing separator on the strip; final-annealing the strip; measuring a primary-recrystallized grain size in the stage after completion of a primary recrystallization during the decarburization annealing and before completion of a secondary recrystallization during the final annealing; and controlling in that stage the subsequent grain growth of primary-recrystallized grains by an absorption of nitrogen into the steel strip in accordance with the measured grain size.
    • 一种具有优异磁特性的晶粒取向电工钢板的制造方法,包括以下步骤:加热至低于1280℃的钢坯,其包含0.025〜0.075重量%的C,2.5〜4.5重量%的Si, 0.010〜0.060重量%的酸溶性Al,0.0030〜0.0130重量%的N,0.014重量%以下(S + 0.405 Se),0.05〜0.8重量%的Mn,余量由Fe和不可避免的杂质构成。 热轧如此加热的板坯以形成热轧带材; 冷轧热轧钢带以形成冷轧带材; 对冷轧带材进行脱碳退火; 在带上施加退火分离器; 对带进行最终退火; 在脱碳退火期间完成一次再结晶之后的阶段和在最终退火期间二次再结晶完成之前的阶段中测量一次再结晶的晶粒尺寸; 并且在该阶段通过根据测量的晶粒尺寸将氮吸收到钢带中来控制一次再结晶晶粒随后的晶粒生长。