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    • 1. 发明授权
    • Method for manufacturing grain-oriented electromagnetic steel sheet whose magnetic domains are controlled by laser beam irradiation
    • 通过激光束照射来控制磁畴的晶粒取向电磁钢板的制造方法
    • US08277574B2
    • 2012-10-02
    • US12744583
    • 2008-12-11
    • Tatsuhiko SakaiHideyuki HamamuraMasao Yabumoto
    • Tatsuhiko SakaiHideyuki HamamuraMasao Yabumoto
    • H01F1/147B23K26/00
    • H01F1/16C21D8/1294Y10T428/1234Y10T428/2457
    • There is provided a method for manufacturing a grain-oriented electromagnetic steel sheet whose iron losses are reduced by laser beam irradiation, capable of improving the iron losses in both the L-direction and the C-direction while easily ensuring high productivity. The method for manufacturing a grain-oriented electromagnetic steel sheet reduces iron losses by scanning and irradiating a grain-oriented electromagnetic steel sheet with a continuous-wave laser beam condensed into a circular or elliptical shape at constant intervals in a direction substantially perpendicular to a rolling direction of the grain-oriented electromagnetic steel sheet, wherein when an average irradiation energy density Ua is defined as Ua=P/(Vc×PL) (mJ/mm2), where P (W) is average power of the laser beam, Vc (m/s) is a beam scanning velocity, and PL (mm) is an irradiation interval in a rolling direction, PL and Ua are in the following ranges: 1.0 mm≦PL≦3.0 mm, 0.8 mJ/mm2≦Ua≦2.0 mJ/mm2.
    • 提供一种制造通过激光照射减少铁损的方向性电磁钢板的方法,其能够提高L方向和C方向的铁损,同时容易确保高生产率。 晶粒取向电磁钢板的制造方法通过扫描和照射具有连续波激光束的方向性电磁钢板来减少铁损,所述连续波激光束以基本上垂直于轧制的方向以恒定的间隔被缩聚为圆形或椭圆形 晶粒取向电磁钢板的方向为平均照射能量密度Ua定义为Ua = P /(Vc×PL)(mJ / mm2),其中P(W)为激光束的平均功率,Vc (m / s)是光束扫描速度,PL(mm)是轧制方向的照射间隔,PL和Ua在以下范围内:1.0mm< llE; PL≦̸ 3.0mm,0.8mJ / mm2& NlE; Ua& mJ / mm2。
    • 2. 发明申请
    • METHOD FOR MANUFACTURING GRAIN-ORIENTED ELECTROMAGNETIC STEEL SHEET WHOSE MAGNETIC DOMAINS ARE CONTROLLED BY LASER BEAM IRRADIATION
    • 用于激光光束辐射控制磁场的制粒电磁电磁片的方法
    • US20100243629A1
    • 2010-09-30
    • US12744583
    • 2008-12-11
    • Tatsuhiko SakaiHideyuki HamamuraMasao Yabumoto
    • Tatsuhiko SakaiHideyuki HamamuraMasao Yabumoto
    • B23K26/00
    • H01F1/16C21D8/1294Y10T428/1234Y10T428/2457
    • There is provided a method for manufacturing a grain-oriented electromagnetic steel sheet whose iron losses are reduced by laser beam irradiation, capable of improving the iron losses in both the L-direction and the C-direction while easily ensuring high productivity. The method for manufacturing a grain-oriented electromagnetic steel sheet reduces iron losses by scanning and irradiating a grain-oriented electromagnetic steel sheet with a continuous-wave laser beam condensed into a circular or elliptical shape at constant intervals in a direction substantially perpendicular to a rolling direction of the grain-oriented electromagnetic steel sheet, wherein when an average irradiation energy density Ua is defined as Ua=P/(Vc×PL) (mJ/mm2), where P (W) is average power of the laser beam, Vc (m/s) is a beam scanning velocity, and PL (mm) is an irradiation interval in a rolling direction, PL and Ua are in the following ranges: 1.0 mm≦PL≦3.0 mm, 0.8 mJ/mm2≦Ua≦2.0 mJ/mm2.
    • 提供一种制造通过激光照射减少铁损的方向性电磁钢板的方法,其能够提高L方向和C方向的铁损,同时容易确保高生产率。 晶粒取向电磁钢板的制造方法通过扫描和照射具有连续波激光束的方向性电磁钢板来减少铁损,所述连续波激光束以基本上垂直于轧制的方向以恒定的间隔被缩聚为圆形或椭圆形 晶粒取向电磁钢板的方向为平均照射能量密度Ua定义为Ua = P /(Vc×PL)(mJ / mm2),其中P(W)为激光束的平均功率,Vc (m / s)是光束扫描速度,PL(mm)是轧制方向的照射间隔,PL和Ua在以下范围内:1.0mm< llE; PL≦̸ 3.0mm,0.8mJ / mm2& NlE; Ua& mJ / mm2。
    • 3. 发明授权
    • Grain-oriented electrical steel sheet and method for producing same
    • 晶粒取向电工钢板及其制造方法
    • US09139886B2
    • 2015-09-22
    • US13637587
    • 2011-03-29
    • Tatsuhiko SakaiHideyuki Hamamura
    • Tatsuhiko SakaiHideyuki Hamamura
    • B23K26/38C21D8/12B23K26/00B23K26/36B23K26/40
    • C21D8/1294B23K26/0006B23K26/354B23K26/364B23K26/40B23K2101/35B23K2103/50C21D2201/05Y10T428/12389
    • In a method for producing a grain-oriented electrical steel sheet, grooves each having a given length and extending in a direction including a direction perpendicular to a transportation direction of the grain-oriented electrical steel sheet are formed at given intervals in the transportation direction by irradiating the surface of the grain-oriented electrical steel sheet with a laser beam while scanning the surface of the grain-oriented electrical steel sheet with the laser beam. Further, in the method for manufacturing a grain-oriented electrical steel sheet, the laser beam is a continuous-wave laser beam having a laser wavelength λ of 1.0 μm to 2.1 μm, power density Pd [W/mm2] which is obtained by dividing laser beam intensity P by a focused beam area S is 5×105 W/mm2 or more, and the power density Pd [W/mm2] and scanning speed V [mm/s] of a focused spot of the laser beam on the surface of the grain-oriented electrical steel sheet satisfy a relationship of 0.005×Pd+3000≦V≦0.005×Pd+40000.
    • 在晶粒取向电工钢板的制造方法中,沿着与方向性电磁钢板的输送方向垂直的方向具有给定长度并延伸的槽沿输送方向以给定的间隔形成, 用激光束对晶粒取向电工钢板的表面进行照射,同时用激光束扫描方向性电磁钢板的表面。 此外,在晶粒取向电工钢板的制造方法中,激光束是激光波长λ为1.0〜2.1μm的连续波激光,功率密度Pd [W / mm2] 聚焦光束区域S的激光束强度P为5×105W / mm 2以上,激光束的聚焦点的表面的功率密度Pd [W / mm2]和扫描速度V [mm / s] 的晶粒取向电工钢板满足0.005×Pd + 3000& NlE; V≦̸ 0.005×Pd + 40000的关系。
    • 6. 发明申请
    • GRAIN-ORIENTED ELECTRICAL STEEL SHEET AND METHOD FOR PRODUCING SAME
    • 面向导电的电工钢板及其制造方法
    • US20130017408A1
    • 2013-01-17
    • US13637587
    • 2011-03-29
    • Tatsuhiko SakaiHideyuki Hamamura
    • Tatsuhiko SakaiHideyuki Hamamura
    • B23K26/38B32B3/30
    • C21D8/1294B23K26/0006B23K26/354B23K26/364B23K26/40B23K2101/35B23K2103/50C21D2201/05Y10T428/12389
    • In a method for producing a grain-oriented electrical steel sheet, grooves each having a given length and extending in a direction including a direction perpendicular to a transportation direction of the grain-oriented electrical steel sheet are formed at given intervals in the transportation direction by irradiating the surface of the grain-oriented electrical steel sheet with a laser beam while scanning the surface of the grain-oriented electrical steel sheet with the laser beam. Further, in the method for manufacturing a grain-oriented electrical steel sheet, the laser beam is a continuous-wave laser beam having a laser wavelength λ of 1.0 μm to 2.1 μm, power density Pd [W/mm2] which is obtained by dividing laser beam intensity P by a focused beam area S is 5×105 W/mm2 or more, and the power density Pd [W/mm2] and scanning speed V [mm/s] of a focused spot of the laser beam on the surface of the grain-oriented electrical steel sheet satisfy a relationship of 0.005×Pd+3000≦V≦0.005×Pd+40000.
    • 在晶粒取向电工钢板的制造方法中,沿着与方向性电磁钢板的输送方向垂直的方向具有给定长度并延伸的槽沿输送方向以给定的间隔形成, 用激光束对晶粒取向电工钢板的表面进行照射,同时用激光束扫描方向性电磁钢板的表面。 此外,在晶粒取向电工钢板的制造方法中,激光束是激光波长λ为1.0〜2.1μm的连续波激光,功率密度Pd [W / mm2] 聚焦光束区域S的激光束强度P为5×105W / mm 2以上,激光束的聚焦点的表面的功率密度Pd [W / mm2]和扫描速度V [mm / s] 的晶粒取向电工钢板满足0.005×Pd + 3000& NlE; V≦̸ 0.005×Pd + 40000的关系。
    • 8. 发明授权
    • Grain-oriented electrical steel sheet excellent in magnetic properties and method for producing the same
    • 磁性优异的晶粒取向电工钢板及其制造方法
    • US07045025B2
    • 2006-05-16
    • US10448754
    • 2003-05-30
    • Hideyuki HamamuraTatsuhiko SakaiNaoya Hamada
    • Hideyuki HamamuraTatsuhiko SakaiNaoya Hamada
    • H01F1/153
    • C21D8/1294
    • A low core loss grain-oriented electrical steel sheet that does not have a significant deterioration in a magnetic flux density and a decrease of a space factor, and which may withstand stress-relieving annealing is provided. Melted and re-solidified layers can be formed on either or both of the surfaces of the grain-oriented electrical steel sheet that extend in a direction that is perpendicular to the rolling direction (e.g., in the direction of the width thereof), at a cyclic interval of not less than approximately 2 mm to less than approximately 5 mm in the rolling direction. The melted and re-solidified layers may be provided on each surface of the grain-oriented electrical steel sheet, and can have an aspect ratio that is a ratio of the depth to the width of the melted and re-solidified layer of not less than approximately 0.20 and a depth of not less than approximately 15 μm. In addition, the melted and re-solidified layers can be formed by using a laser.
    • 本发明提供一种低磁损耗方向性电磁钢板,它不会使磁通密度明显变差并且空间系数降低,并且可以承受应力消除退火。 可以在方向性电磁钢板的沿着与轧制方向垂直的方向(例如,沿其宽度方向)延伸的方向的一个或两个表面上形成熔融和再固化的层, 循环间隔在轧制方向上不小于约2mm至小于约5mm。 可以在晶粒取向电工钢板的各表面上设置熔融再固化层,其长宽比为熔融再结合层的深度与宽度之比不小于 约0.20,深度不小于约15μm。 此外,可以通过使用激光形成熔融和再固化的层。