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    • 1. 发明授权
    • Extrusion of metal honeycombs
    • 金属蜂窝挤出
    • US5466415A
    • 1995-11-14
    • US326380
    • 1994-10-20
    • Kevin R. BrundageLawrence S. Rajnik
    • Kevin R. BrundageLawrence S. Rajnik
    • B22F3/20B28B3/20B22F7/02B29C47/00
    • B28B3/269
    • Thick-skinned extruded metal honeycomb structures, and a method and apparatus for making them, are disclosed wherein a plasticized powder metal extrusion batch is extruded though a die assembly comprising a die and annular mask, the mask having a central outlet for extrusion of the skin and honeycomb core and an extrudate reservoir adjacent the central outlet, the die and mask cooperating to form a skinforming gap fed by the die and by the extrudate reservoir, such that batch material supplied from the reservoir and directly from the die combines to form a thickened outer skin which is integral with, and resistant to separation from, the honeycomb core.
    • 公开了一种厚皮挤出金属蜂窝结构体及其制造方法和装置,其中增塑粉末金属挤出批料通过包含模头和环形掩模的模具组件挤出,该掩模具有用于挤出皮肤的中心出口 以及与中心出口相邻的蜂窝芯和挤出物储存器,所述模具和掩模协作以形成由模具和挤出物储存器供给的成形间隙,使得从储存器供应并直接从模具组合的批次材料组合以形成增厚的 外壳与蜂窝芯一体,并且与蜂窝芯分离。
    • 9. 发明授权
    • Production of porous mullite bodies
    • 生产多孔莫来石体
    • US06254822B1
    • 2001-07-03
    • US09410248
    • 1999-09-30
    • Kevin R. Brundage
    • Kevin R. Brundage
    • B28B320
    • C04B35/185C04B38/064C04B2111/00793
    • Porous sintered ceramic materials having mullite as its primary phase and a method for producing them. The method includes preparing a plasticizable raw material mixture comprised, by weight, of 75-99% of the mullite powder and 1.0 to 25% of the water swelling clay and 5-25% of the alumina and/or alumina-yielding precursor, adding an organic binder system to the mixture and mixing the mixture to form an extrudable mixture, and extruding the mixture to form a substrate of the desired configuration. The green body is dried and fired for a time and at temperature sufficient to form a sintered mullite structure having an acid/base exposure strength loss of less than about 20%.
    • 具有莫来石作为其主相的多孔烧结陶瓷材料及其制造方法。 该方法包括制备可塑性原料混合物,该混合物包含75-99%的莫来石粉末和1.0-25%的水溶性粘土和5-25%的氧化铝和/或产生氧化铝的前体,加入 将有机粘合剂体系混合到混合物中并混合以形成可挤出的混合物,并挤出混合物以形成所需构型的基材。 将生坯干燥并煅烧一段时间并且在足以形成具有小于约20%的酸/碱暴露强度损失的烧结莫来石结构的温度下。
    • 10. 发明授权
    • Sintered metal bodies and manufacturing method therefor
    • 烧结金属体及其制造方法
    • US5427601A
    • 1995-06-27
    • US767889
    • 1991-09-30
    • Takashi HaradaYoshihiro FujiwaraFumio AbeTsuneaki OhashiHiroshige MizunoKevin R. BrundageSrinivas H. SwaroopDavid F. ThompsonRaja R. WusirikaDavid S. Weiss
    • Takashi HaradaYoshihiro FujiwaraFumio AbeTsuneaki OhashiHiroshige MizunoKevin R. BrundageSrinivas H. SwaroopDavid F. ThompsonRaja R. WusirikaDavid S. Weiss
    • B22F1/00B01D53/94B01J23/86B22F3/11B22F5/00C22C32/00C22C33/02C22C38/00C22C29/12B22F3/00
    • C22C32/0026B01D53/945B01J23/862C22C33/0285Y02T10/22Y10T428/12611
    • A sintered metal body is disclosed of composition consisting essentially of in weight percent about 5 to 40 Cr, about 2 to 30 Al, 0 to about 5 special metal, 0 to about 4 rare earth oxide additive, and the balance Fe group metal and unavoidable impurities,the composition including at least one component selected from component A and/or component B, component A being special metal, and component B being at least an effective amount of rare earth oxide additive,the special metal being a first special metal component, and optionally, a second special metal component when rare earth oxide additive is 0, the first special metal component consisting of at least one of: Y, lanthanides, Zr, Hf, Ti, Si, and B, and the second special metal component consisting of at least one of: alkaline earth metal, Cu, and Sn, and the special metal being a third special metal component when rare earth oxide additive is >0, the third special metal component consisting of at least one of Y, lanthanides, Zr, Hf, Ti, Si, alkaline earth metal, B, Cu, and Sn.The body is excellent in oxidation resistance at high temperatures, heat resistance, and corrosion resistance, and can be suitably used by itself as a carrier for catalysts, for exhaust gas purification, etc., or as a monolith catalyst comprising catalyst carrier and catalyst supported thereon, and as a heater or catalytic converter by providing electrodes on the body.
    • 公开了一种烧结金属体,其组成主要包括重量百分比约5至40 Cr,约2至30种Al,0至约5种特殊金属,0至约4种稀土氧化物添加剂,余量为Fe族金属,不可避免 杂质,所述组合物包含选自组分A和/或组分B中的至少一种组分,组分A为特殊金属,组分B为至少有效量的稀土氧化物添加剂,所述特殊金属为第一特殊金属组分, 以及任选地,当稀土氧化物添加剂为0时的第二特殊金属组分,所述第一特殊金属组分由以下中的至少一种组成:Y,镧系元素,Zr,Hf,Ti,Si和B,并且所述第二特殊金属组分 的碱土金属,Cu和Sn中的至少一种,当稀土氧化物添加剂为> 0时,特殊金属是第三种特殊金属组分,第三种特殊金属组分由Y,镧系元素,Zr中的至少一种组成 , H f,Ti,Si,碱土金属,B,Cu和Sn。 本体在高温下的耐氧化性,耐热性和耐腐蚀性优异,可以适合用作催化剂载体,废气净化等,或作为包含催化剂载体和催化剂的整料催化剂 以及作为加热器或催化转化器,通过在主体上设置电极。