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    • 3. 发明授权
    • Iron base high temperature alloy
    • 铁基高温合金
    • US06524405B1
    • 2003-02-25
    • US09540403
    • 2000-03-31
    • Hui Lin
    • Hui Lin
    • C22C2800
    • C22C27/06C21D6/02C21D2201/00C21D2211/004C22C38/06C22C38/18F01D5/28
    • The present invention is directed to an iron, aluminum, chromium, carbon alloy and a method of producing the same, wherein the alloy has good room temperature ductility, excellent high temperature oxidation resistance and ductility. The alloy includes about 10 to 70 at. % iron, about 10 to 45 at. % aluminum, about 1 to 70 at. % chromium and about 0.9 to 15 at. % carbon. The invention is also directed to a material comprising a body-centered-cubic solid solution of this alloy, and a method for strengthening this material by the precipitation of body-centered-cubic particles within the solid solution, wherein the particles have substantially the same lattice parameters as the underlying solid solution. The ease of processing and excellent mechanical properties exhibited by the alloy, especially at high temperatures, allows it to be used in high temperature structural applications, such as a turbocharger component.
    • 本发明涉及铁,铝,铬,碳合金及其制造方法,其中该合金具有良好的室温延展性,优异的高温抗氧化性和延展性。 该合金包括约10至70at。 %铁,约10至45英寸。 %铝,约1至70 at。 %铬和约0.9至15at。 % 碳。 本发明还涉及一种包含该合金的体心立方固体溶液的材料,以及通过体内立方体沉淀固溶体来强化该材料的方法,其中颗粒基本上相同 晶格参数作为基础固溶体。 合金的易加工性和优异的机械性能,特别是在高温下,可以用于高温结构应用,如涡轮增压器部件。
    • 5. 发明授权
    • Oxidation and wear resistant rhenium metal matrix composites
    • 氧化和耐磨铼金属基复合材料
    • US06773663B2
    • 2004-08-10
    • US10138090
    • 2002-05-03
    • Robbie J. Adams
    • Robbie J. Adams
    • C22C2800
    • F16C17/24B22F7/008B22F2998/00F16C33/12H02K7/025H02K7/08H02K7/09Y02E60/16B22F2207/20
    • An alloy and metal matrix composite (MMC) based on a refractory metal such as rhenium resists oxidation by the inclusion of alloying substances with affinity for oxygen or other oxidizing substances. Rhenium enjoys excellent high temperature strength but oxidizes at a much lower temperature. This reduces its desirability for hot, stressed environments. The addition of substances, such as soluble metals, that attract oxygen may form a protective oxide layer over the remaining portion of the rhenium-alloy part or piece. Such soluble alloying constituents may include chromium, cobalt, nickel, titanium, thorium, aluminum, hafnium, vanadium, silicon, aluminum, and yttrium. The addition of second phase fiber or particulates such as carbides of silicon, tungsten, titanium and/or boron provides additional wear resistance in the formation of a resulting metal matrix composite (MMC).
    • 基于难熔金属如铼的合金和金属基复合材料(MMC)通过包含对氧气或其它氧化物质具有亲和性的合金物质来抵抗氧化。 铼具有优异的高温强度,但在低得多的温度下氧化。 这样就降低了对于受热应激环境的需求。 吸附氧气的物质如可溶性金属的添加可能在铼合金部件的剩余部分上形成保护性氧化物层。 这种可溶性合金成分可以包括铬,钴,镍,钛,钍,铝,铪,钒,硅,铝和钇。 第二相纤维或颗粒如硅,钨,钛和/或硼的碳化物的添加在形成所得金属基质复合材料(MMC)时提供额外的耐磨性。
    • 7. 发明授权
    • Ternary hydrogen storage alloy and process for production thereof
    • 三元储氢合金及其生产方法
    • US06207104B1
    • 2001-03-27
    • US09407066
    • 1999-09-28
    • Abdulkarim KadirItsuki UeharaTetsuo SakaiHideaki Tanaka
    • Abdulkarim KadirItsuki UeharaTetsuo SakaiHideaki Tanaka
    • C22C2800
    • H01M4/383C01B3/0031C01B3/0047C01B3/0052C01B3/0057H01M8/04216H01M10/345Y02E60/327Y02P70/56Y10S420/90
    • An AB2C2-type ternary hydrogen storage alloy comprising an AB2C2 phase as main ingredient, where A comprises at least one of a rare-earth element and Ca, B mainly comprises Mg, and C comprises at least one of transition metal elements of Cu, Ni, Co, Fe, Cr, Mn, Ti, V and Zn, and x and y represent values within the-ranges of 1.5≦x≦2.5 and 1.5 ≦y≦3.5, respectively; and an AB2C3-type ternary hydrogen storage alloy comprising an AB2C3 phase as a main ingredient, where A comprises at least one of a rare-earth element and Ca, B mainly comprises Mg, and C comprises at least one of transition metal elements of Cu, Ni, Co, Fe, Cr, Mn, Ti, V and Zn, each of which has large hydrogen storage capability and desorbing amount per unit weight and hydrogen storage characteristics excellent in reversibility of the hydrogen absorption and desorption and is provided by improving the stability in a hydride state of an alloy mainly comprising a lightweight metal element and increasing the hydrogen dissociation pressure of the hydride.
    • 一种包含AB2C2相作为主要成分的AB2C2型三元氢存储合金,其中A包括稀土元素和Ca,B中的至少一种,主要包括Mg,C包括Cu,Ni中的至少一种过渡金属元素 ,Co,Fe,Cr,Mn,Ti,V和Zn,x和y分别表示在1.5 <= x <= 2.5和1.5 <= y <= 3.5的范围内的值; 和包含AB2C3相作为主要成分的AB2C3型三元储氢合金,其中A包含稀土元素和Ca,B中的至少一种,主要包含Mg,C包括Cu的过渡金属元素中的至少一种 ,Ni,Co,Fe,Cr,Mn,Ti,V和Zn,其各自具有大的储氢能力和每单位重量的解吸量以及氢吸收和解吸的可逆性优异的氢储存特性,并且通过改善 主要包含轻金属元素的合金在氢化物状态下的稳定性,并且增加氢化物的氢解离压力。