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    • 74. 发明申请
    • Hard metallic wire
    • 硬金属丝
    • US20040142197A1
    • 2004-07-22
    • US10752984
    • 2004-01-05
    • Daniel J. Branagan
    • B32B015/02
    • B22F5/12B22F7/08B22F9/002B22F2998/00B22F2999/00B23K9/04B23K35/3093C21D2201/03C22C38/22C22C38/32C22C45/02C23C4/04C23C4/131C23C30/00Y10T428/12021Y10T428/12097B22F9/008
    • The invention includes a method of producing a hard metallic material by forming a mixture containing at least 55% iron and at least one of B, C, Si and P. The mixture is formed into an alloy and cooled to form a metallic material having a hardness of greater than about 9.2 GPa. The invention includes a method of forming a wire by combining a metal strip and a powder. The strip and the powder are rolled to form a wire containing at least 55% iron and from 2-7 additional elements including at least one of C, Si and B. The invention also includes a method of forming a hardened surface on a substrate by processing a solid mass to form a powder, applying the powder to a surface to form a layer containing metallic glass, and converting the glass to a crystalline material having a nanocrystalline grain size.
    • 本发明包括通过形成含有至少55%铁和B,C,Si和P中的至少一种的混合物来生产硬质金属材料的方法。将该混合物形成合金并冷却以形成具有 硬度大于9.2GPa。 本发明包括通过组合金属带和粉末来形成线的方法。 将带材和粉末轧制以形成含有至少55%的铁和2-7个附加元素的线,包括C,Si和B中的至少一种。本发明还包括一种通过在基底上形成硬化表面的方法 加工固体以形成粉末,将粉末施加到表面以形成含有金属玻璃的层,并将玻璃转化为具有纳米晶粒度的结晶材料。
    • 75. 发明申请
    • Method for protecting a surface
    • 保护表面的方法
    • US20040140021A1
    • 2004-07-22
    • US10753168
    • 2004-01-05
    • Daniel J. Branagan
    • B22F005/12
    • B22F5/12B22F7/08B22F9/002B22F2998/00B22F2999/00B23K9/04B23K35/3093C21D2201/03C22C38/22C22C38/32C22C45/02C23C4/04C23C4/131C23C30/00Y10T428/12021Y10T428/12097B22F9/008
    • The invention includes a method of producing a hard metallic material by forming a mixture containing at least 55% iron and at least one of B, C, Si and P. The mixture is formed into an alloy and cooled to form a metallic material having a hardness of greater than about 9.2 GPa. The invention includes a method of forming a wire by combining a metal strop and a powder. The strip and the powder are rolled to form a wire containing at least 55% iron and from 2-7 additional elements including at lease one of C, Si and B. The invention also includes a method of forming a hardened surface on a substrate by processing a solid mass to form a power, applying the powder to a surface to forma a layer containing metallic glass, and converting the glass to a crystalline material having a nanocrystalline grain size.
    • 本发明包括通过形成含有至少55%铁和B,C,Si和P中的至少一种的混合物来生产硬质金属材料的方法。将该混合物形成合金并冷却以形成具有 硬度大于9.2GPa。 本发明包括通过组合金属丝和粉末来形成丝的方法。 将带材和粉末轧制以形成含有至少55%的铁和2-7个额外的元素的钢丝,其中包括C,Si和B中的至少一种。本发明还包括一种在基材上形成硬化表面的方法, 处理固体物质以形成动力,将粉末施加到表面以形成含有金属玻璃的层,并将玻璃转化为具有纳米晶粒度的结晶材料。
    • 77. 发明授权
    • Overlay welding alloy and engine valve overlayed therewith
    • 叠加焊接合金和发动机阀盖
    • US06248292B1
    • 2001-06-19
    • US09256296
    • 1999-02-24
    • Kimihiko AndoAkio YasudaAkira ManabeEiji Ito
    • Kimihiko AndoAkio YasudaAkira ManabeEiji Ito
    • C22C3844
    • F01L3/04B23K35/3093B23K35/32C22C1/045C22C27/04C22C33/0285C22C38/04C22C38/08C22C38/52
    • An overlaying alloy containing no Cr or a reduced amount of Cr, in which an effective amount of Mo oxide is formed even in a weak oxidizing atmosphere such as a combustion atmosphere of diesel engines and engines using CNG, LPG or other gases as a fuel to provide an improved non-damaging property and wear resistance. An overlaying alloy comprising 20-70 wt % Mo, 0.5-3 wt % C, 5-40 wt % Ni, and the balance being Fe and unavoidable impurities, which contains no Cr to facilitate formation of Mo oxide and is advantageously applied to the parts on which an oxide coating is not easily formed such as the engine parts subject to a lower temperature combustion atmosphere. An overlaying alloy comprising 20-60 wt % Mo, 0.2-3 wt % C, 5-40 wt % Ni, 0.1-10 wt % Cr, and the balance of Fe and unavoidable impurities, which contains a small amount of Cr to control formation of Mo oxide and is advantageously applied to the parts on which an oxide coating is relatively easily formed. Other alloying elements such as Mn, Co, Si, Nb may be added in the alloy in accordance with need.
    • 即使在诸如使用CNG,LPG或其他气体作为燃料的柴油发动机和发动机的燃烧气氛的弱氧化气氛中也形成有效量的Mo氧化物的不含Cr或减少量的Cr的覆盖合金, 提供改进的非破坏性和耐磨性。 包含20-70重量%的Mo,0.5-3重量%的C,5-40重量%的Ni,余量是Fe和不可避免的杂质的叠层合金,其不含Cr以促进Mo氧化物的形成,并且有利地应用于 不容易形成氧化物涂层的部件,例如受到较低温度燃烧气氛的发动机部件。 包含20-60重量%Mo,0.2-3重量%C,5-40重量%Ni,0.1-10重量%Cr,余量为Fe和不可避免的杂质,其含有少量的Cr以控制 形成Mo氧化物,并且有利地施加到氧化物涂层相对容易形成的部分上。 可以根据需要在合金中添加Mn,Co,Si,Nb等其他合金元素。