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    • 3. 发明授权
    • Apparatus and method of continuously measuring the wear of a wall of a metallurgical vessel
    • 连续测量冶金容器壁的磨损的装置和方法
    • US06208128B1
    • 2001-03-27
    • US09255776
    • 1999-02-23
    • Franck BraconnierAnne DezClaude GrisvardDaniel Pernet
    • Franck BraconnierAnne DezClaude GrisvardDaniel Pernet
    • G01N2700
    • G01B7/06
    • A probe is provided for measuring the wear of a wall in a metallurgical vessel. The probe includes at least two electrically conducting elements which extend generally mutually parallel, and a tubular sheath wherein the electrically conducting elements extend interiorly of said sheath, and are mutually insulated via a refractory insulator. The probe is adapted to be implanted in the transverse direction in the wall of a metallurgical vessel with the distal end of each of the two electrically conducting elements being disposed at the interior surface of said wall. A measurement system is connected to the opposite proximal ends of the electrically conducting elements for measuring an electrical characteristic of the circuit formed by said elements that depends on the length of the elements. The probe has a diameter less than 1 mm achieved by stretching after the components have been assembled into an intermediate assembly having a larger cross sectional area than the final cross section.
    • 提供了用于测量冶金容器中的壁的磨损的探针。 探针包括至少两个大致相互平行延伸的导电元件和管状护套,其中导电元件在所述护套的内部延伸,并且经由耐火绝缘体相互绝缘。 探针适于在冶金容器的壁中沿横向植入,两个导电元件中的每一个的远端设置在所述壁的内表面。 测量系统连接到导电元件的相对的近端,用于测量由所述元件形成的电路的电特性,该电特性取决于元件的长度。 在组件组装成具有比最终横截面更大的横截面积的中间组件之后,探针具有通过拉伸实现的直径小于1mm的直径。
    • 4. 发明授权
    • Method for producing austenitic iron-carbon-manganese metal sheets, and sheets produced thereby
    • 制造奥氏体铁碳 - 锰 - 锰金属片的方法和由此制造的片材
    • US07799148B2
    • 2010-09-21
    • US11814329
    • 2006-01-10
    • Colin ScottPhilippe CugyMaurita RosciniAnne DezDominique Cornette
    • Colin ScottPhilippe CugyMaurita RosciniAnne DezDominique Cornette
    • C23C8/22C22C38/04C21D8/02
    • C21D6/00C21D8/02C21D8/04C21D9/46C22C38/04
    • Iron-carbon-manganese austenitic steel sheet, the chemical composition of which comprises, the contents being expressed by weight: 0.45%≦C≦0.75%; 15%≦Mn≦26%; Si≦3%; Al≦0.050%; S≦0.030%; P≦0.080%; N≦0.1%; at least one metal element chosen from vanadium, titanium, niobium, chromium and molybdenum, where 0.050%≦V≦0.50%; 0.040%≦Ti≦0.50; 0.070%≦Nb≦0.50%; 0.070%≦Cr≦2%; 0.14%≦Mo≦2%; and, optionally, one or more elements chosen from 0.0005%≦B≦0.003%; Ni≦1%; Cu≦5%, the balance of the composition consisting of iron and inevitable impurities resulting from the smelting, the amounts of said at least one metal element in the form of precipitated carbides, nitrides or carbonitrides being: 0.030%≦Vp≦0.150%; 0.030%≦Tip≦0.130%; 0.040%≦Nbp≦0.220%; 0.070%≦Crp≦0.6%; 0.14%≦Mop≦0.44%.
    • 铁 - 碳 - 锰奥氏体钢板,其化学组成包含,其含量以重量计:0.45%≦̸ C< lE; 0.75%; 15%≦̸ Mn≦̸ 26%; Si≦̸ 3%; Al≦̸ 0.050%; S≦̸ 0.030%; P≦̸ 0.080%; N≦̸ 0.1%; 选自钒,钛,铌,铬和钼中的至少一种金属元素,其中0.050%&NlE; V< In; 0.50%; 0.040%≦̸ Ti≦̸ 0.50; 0.070%≦̸ Nb≦̸ 0.50%; 0.070%≦̸ Cr≦̸ 2%; 0.14%≦̸ Mo≦̸ 2%; 和任选的一种或多种选自0.0005%和百万分之一的元素; B& E; 0.003%; Ni≦̸ 1%; Cu + nIE; 5%,由冶炼产生的铁和不可避免的杂质组成的组成的余量,沉淀的碳化物,氮化物或碳氮化物形式的所述至少一种金属元素的量为:0.030%& NlE; Vp&NlE; 0.150% ; 0.030%≦̸ Tip≦̸ 0.130%; 0.040%≦̸ Nbp≦̸ 0.220%; 0.070%≦̸ Crp≦̸ 0.6%; 0.14%≦̸ Mop≦̸ 0.44%。