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    • 73. 发明授权
    • Production of large-area bulk metallic glass sheets by spinning
    • 通过旋转生产大面积块状金属玻璃板
    • US09108243B2
    • 2015-08-18
    • US13803745
    • 2013-03-14
    • Crucible Intellectual Property, LLC
    • Joseph W. Stevick
    • B22D13/04C30B11/00B22D25/06
    • B22D13/04B22D25/06C21D2201/03C22C45/00C22F1/002C30B11/008
    • Disclosed herein is a device comprising: vacuum chamber; a stage configured to receive BMG in a molten state or a BMG feedstock, configured to spin, and located in the vacuum chamber; a heater configured to melt the BMG feedstock or to keep BMG in a molten state molten; wherein the stage comprises one or more conduits therein and the conduits are configured to accommodate a cooling fluid. Also disclosed herein is a method of forming a solid BMG sheet, the method comprising: disposing BMG in a molten state onto a stage; spreading the BMG in a molten state into a sheet of BMG in a molten state by spinning the stage; cooling the sheet of BMG in a molten state to form a solid BMG sheet.
    • 本文公开了一种装置,包括:真空室; 配置成接收处于熔融状态的BMG或构造成旋转并位于真空室中的BMG原料的级; 被配置为熔化BMG原料或使BMG保持熔融状态的加热器熔化; 其中所述平台包括其中的一个或多个导管,并且所述导管构造成容纳冷却流体。 本文还公开了一种形成固体BMG片的方法,所述方法包括:将处于熔融状态的BMG置于载物台上; 将熔融状态的BMG通过纺丝阶段将熔融状态的BMG分散成熔融状态的BMG片; 将熔融状态的BMG片材冷却,形成固体BMG片材。
    • 74. 发明申请
    • NI SUPERALLOY COMPONENT PRODUCTION METHOD
    • NI超级组件生产方法
    • US20150225828A1
    • 2015-08-13
    • US14614732
    • 2015-02-05
    • ROLLS-ROYCE PLC
    • Neil John D'SOUZAKevin GOODWINMartin Richard PERRY
    • C22F1/10C22C19/05C22F1/00C22F1/02C23C8/10C23C8/80
    • C22F1/10C22C19/057C22F1/002C22F1/008C22F1/02C23C8/10C23C8/80
    • Producing a Ni superalloy component in which the superalloy has a γ phase matrix containing intermetallic γ′ precipitates. Providing a Ni superalloy casting of the component; solutioning the component by heat treating the casting under vacuum and/or in an inert atmosphere at a temperature above the γ′ solvus to homogenise the γ phase; quenching and ageing the solutioned component to grow intermetallic γ′ precipitates in the homogenised γ phase. Before the solutioning step: heat treating the casting to produce a thermally grown oxide on the surface, oxide adherent to supress volatilisation of Ni from the surface of the casting during the solutioning heat treatment. Performing the solutioning step under a Ni vapour pressure which is sufficient to supress volatilisation of Ni from the surface of the casting during the solutioning heat treatment. During the solutioning heat treatment the component is encapsulated in a container protecting the casting from Si-doped contaminants.
    • 生产Ni超合金组分,其中超合金具有含有金属间γ'析出物的γ相基体。 提供组件的Ni超合金铸件; 通过在真空和/或在惰性气氛中在高于γ'solvus的温度下热处理铸件来使组分溶解以均化γ相; 淬火和老化溶液中的组分以在匀质γ相中生长金属间γ'析出物。 在解决步骤之前:对铸件进行热处理以在表面上产生热生长的氧化物,氧化物粘附以在溶液热处理期间从铸件的表面抑制Ni的挥发。 在Ni蒸汽压力下进行溶解步骤,其足以抵抗在溶液热处理期间来自铸件表面的Ni的挥发。 在固溶热处理期间,将组分封装在保护铸件免受Si掺杂污染物的容器中。
    • 80. 发明申请
    • LOW-COST HIGH-PLASTICITY WROUGHT MAGNESIUM ALLOY AND ITS PREPARATION METHOD
    • 低成本高强度镁合金及其制备方法
    • US20150000800A1
    • 2015-01-01
    • US14286919
    • 2014-05-23
    • Chongqing University
    • Fusheng PANJia SHEAitao TANGJian PENGXianhua CHEN
    • C22C23/02C22F1/00C22C23/00C22F1/06
    • C22C23/02B22D1/00B22D7/005C22C23/00C22F1/002C22F1/06
    • The invention belongs to magnesium alloy design field, and relates to a low-cost high-plasticity wrought magnesium alloy. The magnesium alloy is made from the raw materials with components as follows: between 0.10% and 1.00% by mass of tin, between 0.10% and 3.00% by mass of aluminum, between 0.10% and 1.00% by mass of manganese, and commercially pure magnesium and inevitable impurities in balance. The magnesium alloy is prepared by the steps of: melting magnesium and aluminum, adding tin and then adding microalloyed element manganese, stirring, refining, casting to form ingots followed by homogenized heat treatment, and extruding to obtain a corresponding profile; or directly extruding to obtain a corresponding profile without homogenization. The invention is characterized by controlling the content of the high-cost raw material tin through using the raw material aluminum that is low in cost and low in melting point to obtain a low-cost high-plasticity wrought magnesium alloy.
    • 本发明属于镁合金设计领域,涉及一种低成本的高塑性锻造镁合金。 镁合金由原料制成,成分如下:锡的0.10〜1.00质量%,铝的0.10〜3.00质量%,锰的0.10〜1.00质量%,商业纯 镁和不可避免的杂质平衡。 通过以下步骤制备镁合金:熔融镁和铝,加入锡,然后加入微合金元素锰,搅拌,精炼,铸造,形成锭,然后均质热处理,挤出得到相应的轮廓; 或直接挤出以获得相应的轮廓而不进行均匀化。 本发明的特征在于通过使用成本低且熔点低的原料铝来控制高成本原料锡的含量,以获得低成本的高塑性锻造镁合金。