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    • 4. 发明授权
    • Method for profile-kneading workplaces
    • 轮廓揉搓工件的方法
    • US6094962A
    • 2000-08-01
    • US263180
    • 1999-03-05
    • Holger EisentrautHeinrich Wolf
    • Holger EisentrautHeinrich Wolf
    • B21J7/16
    • B21J7/16
    • For the profile kneading of workpiece in strand from (semiproducts) which are transported along a central axis into a working station (profile kneading machine) at least two dies situated opposite one another in pairs for working on the surface of the workpiece are driven by rams at their extremity remote from the axis; the rams are driven radially toward the axis by rolls (cylinders, balls) moving on a circular path relative to outer guiding surfaces of the rams; at the same time at least two pairs of dies, whose radial driving directions are displaced from one another by a given angle (90.degree.), are driven successively by the rolls in a radial direction by means of the guiding surfaces of the rams; the edge length of the dies in each working step is greater than the targeted edge length of the workpiece (semiproduct) that is to be worked.
    • 为了将沿着中心轴线输送的工件(半成品)的工件的型材揉合到加工工位(型材捏合机)中,至少两个模具成对地相对设置,用于在工件表面上进行加工, 远离轴线; 通过相对于公柱的外部引导表面在圆形路径上移动的辊(圆柱体,滚珠)径向地向着轴移动, 同时,其径向驱动方向相互偏移给定角度(90°)的至少两对模具通过该公柱的引导表面在径向方向上由辊连续地驱动; 每个工作步骤中的模具的边缘长度大于待加工的工件(半成品)的目标边缘长度。
    • 5. 发明授权
    • Process for making an indium-tin-oxide shaped body
    • 制造氧化铟锡体的方法
    • US06080341A
    • 2000-06-27
    • US310310
    • 1999-05-12
    • Bernd StengerMarek GorywodaDavid Francis LuptonWolfram GrafWolfgang Jablonski
    • Bernd StengerMarek GorywodaDavid Francis LuptonWolfram GrafWolfgang Jablonski
    • C04B35/457C04B35/622C23C14/34C04B35/64
    • C23C14/3414C04B35/457C04B35/622
    • A process for making an indium-tin-oxide shaped body, comprising: (a) filling an indium-tin-oxide powder into a first flexible mold, the indium-tin-oxide powder having a specific BET surface of at most 3 m.sup.2 /g with a mean primary particle size of 0.03 .mu.m to 1.0 .mu.m and/or having a density of at least 40% of theoretical density after cold pressing at a pressure of 100 MPa and/or the indium-tin-oxide powder being made by reacting at least two reaction partners comprising a molten indium-tin-metal alloy as a first reaction partner and oxygen as a second reaction partner in a plasma arc in a plasma chamber provided with an inlet opening for the reaction partners and an outlet with a gas-supply device to obtain a material, and quenching the material at the outlet opening of the plasma chamber with a gas stream which cools the material at a cooling rate of 10.sup.5 K/s to 10.sup.8 K/s to +50.degree. C. to +400.degree. C.; (b) cold pressing the indium-tin-oxide powder at a minimum pressure of 100 MPa; (c) placing the cold compact released from the first mold in a ceramic powder in a second mold, the ceramic powder having a maximum particle diameter of 250 .mu.m, and a melting point and a sintering temperature higher than +800.degree. C., the melting point of the second mold being higher than 800.degree. C. and the second mold being ductile under the conditions of a hot isostatic pressing; (d) sealing the second mold in a gastight manner; and (e) subjecting the wetted cold compact to hot isostatic pressing at a minimum temperature of +800.degree. C. and a minimum pressure of 20 MPa.
    • 一种制造铟锡氧化物成形体的方法,包括:(a)将铟锡氧化物粉末填充到第一柔性模具中,所述铟锡氧化物粉末具有至多3m 2 / g,平均一次粒径为0.03μm〜1.0μm,和/或在100MPa的压力下冷压后具有至少40%的理论密度的密度和/或制造的氧化铟锡粉末 通过使等离子体室中的至少两个包含熔融的铟 - 锡 - 金属合金作为第一反应伴侣的氧和作为第二反应配对的氧反应,所述等离子体室具有用于反应配体的入口和具有 气体供给装置,以获得材料,并且以105K / s至108K / s至+ 50℃的冷却速率将材料冷却的气流淬火在等离子体室的出口处的材料, +400℃。 (b)在100MPa的最小压力下冷压氧化铟锡粉末; (c)将从第一模具释放的冷压实体放置在第二模具中的陶瓷粉末中,所述陶瓷粉末的最大粒径为250μm,熔点和烧结温度高于+800℃, 第二模具的熔点高于800℃,第二模具在热等静压的条件下是延性的; (d)以气密方式密封第二模具; 和(e)在+ 800℃的最低温度和20MPa的最小压力下对湿润的冷成型体进行热等静压。