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    • 1. 发明授权
    • High toughness amorphous alloy strip and production thereof
    • 高韧性非晶态合金带及其生产
    • US06830636B2
    • 2004-12-14
    • US10286734
    • 2002-11-01
    • Hiroaki SakamotoToshio YamadaTakashi Sato
    • Hiroaki SakamotoToshio YamadaTakashi Sato
    • C22C4502
    • C22C33/003C22C45/02
    • A process of producing a high toughness iron-based amorphous alloy strip, using a single roll liquid quenching method, the strip having a thickness of more than 55 &mgr;m up to 100 &mgr;m and a width of 20 mm or more and having a fracture strain &egr;f satisfying the relationship &egr;f>0.1 where &egr;f=t/(D−t), t=thickness of the strip, and D=bent diameter upon fracture, &egr;f being determined by bending the strip with a free cooling surface thereof facing outward, the process comprising the steps of: ejecting a molten metal alloy through a nozzle; applying the ejected molten metal alloy to a surface of a rotating roll; allowing the applied molten metal alloy to be quenched by the roll surface to form an amorphous strip of the metal alloy, the strip being quenched at a cooling rate, determined at a free surface thereof, of 103° C./sec or more in a temperature range of from 500° C. to 200° C.; and continuously coiling the quenched strip at a temperature of 200° C. or lower.
    • 使用单辊液体淬火法制造高韧性铁基非晶态合金带的方法,该厚度大于55μm至100μm,宽度为20mm以上且具有断裂应变ε 满足epsilonf> 0.1的关系,其中epsilonf = t /(Dt),t =条带的厚度,D =断裂时的弯曲直径,ε是通过将带材的自由冷却表面向外弯曲而确定的,该方法包括 步骤:通过喷嘴喷射熔融金属合金; 将喷出的熔融金属合金施加到旋转辊的表面; 允许施加的熔融金属合金被辊表面淬火以形成金属合金的非晶带,该条以其自由表面确定的冷却速率淬火10℃/秒或 更多在500℃至200℃的温度范围内。 并在200℃或更低的温度下连续卷绕淬火的条带。
    • 4. 发明授权
    • Fe-based amorphous alloy thin strip with ultrathin oxide layer
    • 具有超薄氧化物层的Fe基非晶态合金薄带
    • US06420042B1
    • 2002-07-16
    • US09405341
    • 1999-09-24
    • Hiroaki SakamotoToshio YamadaYoshiharu Inoue
    • Hiroaki SakamotoToshio YamadaYoshiharu Inoue
    • B32B1504
    • B32B15/04B32B15/18C22C33/003C22C45/02Y10T428/12438
    • The present invention provides a low iron-loss Fe-based amorphous alloy thin strip having an ultrathin oxide layer with a controlled thickness and/or a segregated layer containing either or both P and S at the lower section of an ultrathin oxide layer, as well as an Fe-based amorphous alloy thin strip fabricated with an ultrathin oxide layer with a controlled structure on the thin strip surface, wherein the ultrathin oxide layer is formed with a two-layer structure on the thin strip surface to reduce iron loss. Specifically, there is provided an Fe-based amorphous alloy thin strip characterized by being a quenched metal thin strip obtained by ejecting a molten metal onto a moving substrate through a casting nozzle with a slot-shaped opening and quenching it to solidity, and by having ultrathin oxide layer with a thickness of from 5 nm to 20 nm on at least one surface of the thin strip. There is further provided an Fe-based amorphous alloy thin strip characterized by being a quenched metal thin strip obtained by ejecting a molten metal onto a moving substrate through a casting nozzle with a slot-shaped opening and quenching it to solidity, by having an ultrathin oxide layer on at least one surface of the thin strip, and by having a segregated layer containing either or both P and S at the lower section of the oxide layer.
    • 本发明提供一种低铁损Fe基非晶合金薄带,其具有在超薄氧化物层的下部具有受控厚度的超薄氧化物层和/或含有P和S两者或两者的分离层,以及 作为在薄带表面上具有受控结构的超薄氧化物层制造的Fe基非晶态合金薄带,其中在薄带表面上形成具有两层结构的超薄氧化物层以减少铁损。 具体地说,提供了一种Fe基非晶合金薄带,其特征在于:通过具有槽形开口的铸造喷嘴将熔融金属喷射到移动的基板上并淬火成固态而获得的淬火金属薄带,并且通过 在薄带的至少一个表面上具有5nm至20nm厚度的超薄氧化物层。 还提供了一种Fe基非晶合金薄带,其特征在于:通过具有槽形开口的铸造喷嘴将熔融金属喷射到移动的基板上并通过具有超薄 在薄带的至少一个表面上的氧化物层,以及在氧化物层的下部具有含有P和S中的任一个或两者的偏析层。
    • 9. 发明申请
    • Polishing Pad Conditioner
    • 抛光垫调理剂
    • US20090275274A1
    • 2009-11-05
    • US11992327
    • 2006-08-17
    • Hiroaki SakamotoToshiya Kinoshita
    • Hiroaki SakamotoToshiya Kinoshita
    • B24B53/12B24D3/06
    • B24B53/12B24B53/017B24D3/06
    • The invention provides a polishing pad conditioner that enables stabilization of brazing metal melting point, minimization of abrasive grain detachment by uniformizing and stabilizing abrasive grain brazing condition, and enhancement of flatness by minimizing thermal deformation of the metal support. The polishing pad conditioner is fabricated by brazing multiple abrasive grains to the surface of a metal support with brazing metal, wherein the composition of the brazing metal expressed in mass % is such that 70%≦Ni+Fe≦90% (provided that 0≦Fe/(Ni+Fe)≦0.4), 1%≦Cr≦25%, 2%≦Si+B≦15% (provided that 0≦B/(Si+B)≦0.8), and 0.1%≦P≦8%.
    • 本发明提供一种抛光垫调理剂,其能够稳定钎焊金属熔点,通过均匀化和稳定磨粒钎焊条件来最小化磨粒剥离,并通过最小化金属载体的热变形来提高平坦度。 抛光垫调节剂是通过钎焊金属将多个磨料颗粒钎焊到金属支撑体的表面上制造的,其中以质量%表示的钎焊金属的组成使得70%<= Ni + Fe <= 90%(条件是 0 <= Fe /(Ni + Fe)<= 0.4),1%<= Cr <= 25%,2%<= Si + B <= 15%(条件是0 <= B /(Si + B) = 0.8),0.1%<= P <= 8%。