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    • 7. 发明授权
    • Gradient function material
    • 梯度功能材料
    • US5943546A
    • 1999-08-24
    • US564777
    • 1995-11-29
    • Hirotaka IshibashiKoichi HayashiHiroyuki Nagayama
    • Hirotaka IshibashiKoichi HayashiHiroyuki Nagayama
    • B22F3/22B22F7/02B22F7/06B28B1/00B28B1/26B28B17/00C04B35/622C22C1/10H01J61/36B22F3/00
    • C22C1/1026B22F3/22B22F7/02B22F7/06B28B1/008B28B1/26B28B17/0018C04B35/622H01J61/363B22F2998/00B22F2999/00Y10T428/12021Y10T428/12028Y10T428/12049Y10T428/12056Y10T428/12139Y10T428/12146
    • A disclosed gradient function material is produced by molding and thereafter firing a slurry which contains a plurality of groups of particles having different specific gravities. The plurality of groups of particles include at least a first group of particles and a second group of particles. The first group of particles comprises a group of non-metal particles having a specific gravity ranging from about 3 to 7 and a maximum particle diameter equal to or smaller than a deflocculation limit, said non-metal particles being made of one or more materials selected from the group consisting of an oxide, a carbide, a nitride, and an oxynitride. The second group of particles comprises a group of metal particles having a specific gravity which is about 1.5 times the specific gravity of said first group of particles, and particle diameters distributed across the deflocculation limit. The gradient function material is manufactured by preparing a slurry containing a plurality of groups of particles and/or a plurality of slurries, and supplying the slurry or slurries into a porous mold to form a deposited region in the porous mold initially primarily influenced by way of attraction of the porous mold and subsequently primarily influenced by a deflocculating effect of the particles in the slurry or slurries or under the influence of the gravity.
    • 所公开的梯度功能材料是通过模塑制造的,然后焙烧含有多组具有不同比重的颗粒的浆料。 多组颗粒包括至少第一组颗粒和第二组颗粒。 第一组颗粒包括比重范围为约3至7并且最大粒径等于或小于抗絮凝极限的一组非金属颗粒,所述非金属颗粒由选自下列的一种或多种材料制成: 由氧化物,碳化物,氮化物和氮氧化物组成的组中。 第二组颗粒包括一组比重约为所述第一组颗粒比重的约1.5倍的金属颗粒,并且分布于整个抗絮凝极限的颗粒直径。 梯度功能材料是通过制备含有多组颗粒和/或多种浆料的浆料制造的,并将浆料或浆料供应到多孔模具中,以在多孔模具中形成沉积区域,最初主要受多孔模具 吸引多孔模具,随后主要受到颗粒在浆料或浆料中或在重力影响下的抗絮凝作用的影响。
    • 8. 发明授权
    • Gradient function material seal cap for discharge lamp bulb
    • 梯度功能材料密封帽用于放电灯泡
    • US5972067A
    • 1999-10-26
    • US134823
    • 1998-08-17
    • Hirotaka IshibashiKoichi HayashiHiroyuki Nagayama
    • Hirotaka IshibashiKoichi HayashiHiroyuki Nagayama
    • B22F3/22B22F7/02B22F7/06B28B1/00B28B1/26B28B17/00C04B35/622C22C1/10H01J61/36
    • C22C1/1026B22F3/22B22F7/02B22F7/06B28B1/008B28B1/26B28B17/0018C04B35/622H01J61/363B22F2998/00B22F2999/00Y10T428/12021Y10T428/12028Y10T428/12049Y10T428/12056Y10T428/12139Y10T428/12146
    • A disclosed gradient function material seal cap for discharge lamp bulb is produced by molding and thereafter firing a slurry which contains a plurality of groups of particles having different specific gravities. The plurality of groups of particles include at least a first group of particles and a second group of particles. The first group of particles comprises a group of non-metal particles having a specific gravity ranging from about 3 to 7 and a maximum particle diameter equal to or smaller than a deflocculation limit, said nonmetal particles being made of one or more materials selected from the group consisting of an oxide, a carbide, a nitride, and an oxynitride. The second group of particles comprises a group of metal particles having a specific gravity which is about 1.5 times the specific gravity of said first group of particles, and particle diameters distributed across the deflocculation limit. The gradient function material seal cap is manufactured by preparing a slurry containing a plurality of groups of particles and/or a plurality of slurries, and supplying the slurry or slurries into a porous mold to form a deposited region in the porous mold initially primarily influenced by way of attraction of the porous mold and subsequently primarily influenced by a deflocculating effect of the particles in the slurry or slurries or under the influence of the gravity.
    • 公开了一种用于放电灯泡的梯度功能材料密封盖,其通过模制并随后焙烧含有多组具有不同比重的颗粒的浆料来制备。 多组颗粒包括至少第一组颗粒和第二组颗粒。 第一组颗粒包括比重范围为约3至7并且最大粒径等于或小于抗絮凝极限的一组非金属颗粒,所述非金属颗粒由选自以下的一种或多种材料制成: 由氧化物,碳化物,氮化物和氮氧化物组成的组。 第二组颗粒包括一组比重约为所述第一组颗粒比重的约1.5倍的金属颗粒,并且分布于整个抗絮凝极限的颗粒直径。 梯度功能材料密封帽是通过制备含有多组颗粒和/或多种浆料的浆料制造的,并将浆料或浆料供应到多孔模具中,以在多孔模具中形成初始主要受 多孔模具的吸引方式,随后主要受到颗粒在浆料或浆料中或在重力影响下的抗絮凝作用的影响。
    • 9. 发明授权
    • Sealing structure for light-emitting bulb assembly and method of
manufacturing same
    • 发光灯泡组件的密封结构及其制造方法
    • US5742123A
    • 1998-04-21
    • US869877
    • 1997-06-05
    • Hiroyuki Nagayama
    • Hiroyuki Nagayama
    • H01J9/26H01J61/30H01J61/36H01J5/04
    • H01J9/266H01J61/302H01J61/363H01J61/366H01J61/82
    • A sealing structure for a light-emitting bulb assembly includes a closure, having a core which serves as an electrode for sealing an open end of a bulb. The closure includes a bulb-side region disposed adjacent to the open end of the bulb and made of a compositional ingredient having a coefficient of thermal expansion which is substantially the same as that of the bulb, a core-side region disposed adjacent to the core and made of a compositional ingredient having a coefficient of thermal expansion which is substantially the same as that of the core, and an intermediate region disposed between the bulb-side region and the core-side region and made of a compositional ingredient having compositional proportions adjusted such that a coefficient of thermal expansion thereof varies gradually from the coefficient of thermal expansion of the bulb-side region toward the coefficient of thermal expansion of the core-side region. The bulb-side region and the core-side region are separated from each other by the intermediate region and comprise a bulb-side region layer and a core-side region layer, respectively, which are independent of each other. The intermediate region comprises at least one layer whose coefficient of thermal expansion varies gradually from the bulb-side region toward the core-side region. The layers of the closure are progressively thicker from the bulb-side region layer toward the core-side region layer.
    • 用于发光灯泡组件的密封结构包括具有用作密封灯泡的开口端的电极的芯的封闭件。 所述封闭件包括灯泡侧区域,所述灯泡侧区域邻近所述灯泡的开口端设置并且由具有与所述灯泡的热膨胀系数基本相同的热膨胀系数的组成成分制成,与所述灯芯相邻设置的芯侧区域 并且由具有与芯的热膨胀系数基本相同的热膨胀系数的组成成分构成,以及设置在灯泡侧区域和芯侧区域之间的中间区域,并且由组成成分调整成分的组成成分 使得其热膨胀系数从灯泡侧区域的热膨胀系数朝向芯侧区域的热膨胀系数逐渐变化。 灯泡侧区域和芯侧区域通过中间区域彼此分离,并且分别包括彼此独立的灯泡侧区域层和芯侧区域层。 中间区域包括至少一个热膨胀系数从灯泡侧区域朝向芯侧区域逐渐变化的层。 封闭层从灯泡侧区域层朝向芯侧区域层逐渐变厚。
    • 10. 发明授权
    • Methods of manufacturing gradient function material
    • 制造梯度功能材料的方法
    • US5653924A
    • 1997-08-05
    • US246134
    • 1994-05-19
    • Hirotaka IshibashiKoichi HayashiHiroyuki Nagayama
    • Hirotaka IshibashiKoichi HayashiHiroyuki Nagayama
    • B22F3/22B22F7/02B22F7/06B28B1/00B28B1/26B28B17/00C04B35/622C22C1/10H01J61/36B01D21/00B03D3/00
    • C22C1/1026B22F3/22B22F7/02B22F7/06B28B1/008B28B1/26B28B17/0018C04B35/622H01J61/363B22F2998/00B22F2999/00Y10T428/12021Y10T428/12028Y10T428/12049Y10T428/12056Y10T428/12139Y10T428/12146
    • A disclosed gradient function material is produced by molding and thereafter firing a slurry which contains a plurality of groups of particles having different specific gravities. The plurality of groups of particles include at least a first group of particles and a second group of particles. The first group of particles comprises a group of nonmetal particles having a specific gravity ranging from about 3 to 7 and a maximum particle diameter equal to or smaller than a deflocculation limit, said nonmetal particles being made of one or more materials selected from the group consisting of an oxide, a carbide, a nitride, and an oxynitride. The second group of particles comprises a group of metal particles having a specific gravity which is about 1.5 times the specific gravity of said first group of particles, and particle diameters distributed across the deflocculation limit. The gradient function material is manufactured by preparing a slurry containing a plurality of groups of particles and/or a plurality of slurries, and supplying the slurry or slurries into a porous mold to form a deposited region in the porous mold initially primarily influenced by way of attraction of the porous mold and subsequently primarily influenced by a deflocculating effect of the particles in the slurry or slurries or under the influence of the gravity.
    • 所公开的梯度功能材料是通过模塑制造的,然后焙烧含有多组具有不同比重的颗粒的浆料。 多组颗粒包括至少第一组颗粒和第二组颗粒。 第一组颗粒包括比重范围为约3至7并且最大粒径等于或小于抗絮凝极限的一组非金属颗粒,所述非金属颗粒由选自以下的一种或多种材料制成: 的氧化物,碳化物,氮化物和氧氮化物。 第二组颗粒包括一组比重约为所述第一组颗粒比重的约1.5倍的金属颗粒,并且分布于整个抗絮凝极限的颗粒直径。 梯度功能材料是通过制备含有多组颗粒和/或多种浆料的浆料制造的,并将浆料或浆料供应到多孔模具中,以在多孔模具中形成沉积区域,最初主要受多孔模具 吸引多孔模具,随后主要受到颗粒在浆料或浆料中或在重力影响下的抗絮凝作用的影响。