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    • 1. 发明申请
    • DAMPING DEVICE
    • 阻尼装置
    • US20140231197A1
    • 2014-08-21
    • US14347198
    • 2011-10-19
    • Yoshihito WatanabeRyoji TomonoHidenori KidaShigeki NakaminamiHisaya Tanaka
    • Yoshihito WatanabeRyoji TomonoHidenori KidaShigeki NakaminamiHisaya Tanaka
    • F16F9/12
    • F16F9/12E04H9/023F16F2232/06
    • The damping device includes: a fixed cylinder that is configured to be fixed to a first structural body and formed into a cylindrical shape so as to comprise a hollow portion; a shaft member that is configured to be fixed to a second structural body, the shaft member being housed in the hollow portion of the fixed cylinder and having an outer peripheral surface provided with a helical thread groove; a nut member that is threadedly engaged with the shaft member, and converts an axial motion of the shaft member into a rotational motion; a rotor member that is formed into a cylindrical shape so as to cover the fixed cylinder and to form a cylindrical accommodation chamber between the rotor member and an outer peripheral surface of the fixed cylinder, and is rotated by the nut member; and viscous fluid that is sealed in the cylindrical accommodation chamber.
    • 阻尼装置包括:固定筒,其被构造成固定到第一结构体并形成为包括中空部的圆筒形状; 轴构件,其被构造成固定到第二结构体,所述轴构件容纳在所述固定筒的中空部分中,并且具有设置有螺旋形螺纹槽的外周面; 螺母构件,其与所述轴构件螺纹接合,并且将所述轴构件的轴向运动转换为旋转运动; 转子部件,其形成为圆筒形状以覆盖固定筒体,并且在转子部件与固定筒体的外周面之间形成圆筒形容纳室,并由螺母部件旋转; 以及密封在圆柱形容纳室中的粘性流体。
    • 4. 发明授权
    • Alloy coated metal base substrates, such as coated ferrous metal plates
    • 合金涂覆的金属基底,如涂覆黑色金属板
    • US5375759A
    • 1994-12-27
    • US171022
    • 1993-12-21
    • Masahiro HiraishiYoshihito Watanabe
    • Masahiro HiraishiYoshihito Watanabe
    • B22F7/08B22F5/12B23K1/00B23K1/008B23K35/30B23K35/32C23C26/02B23K31/00
    • C23C26/02B23K1/0008B23K1/008B23K35/327B23K35/304Y10T29/4981
    • A method is provided for applying a self-fluxing, self-bonding alloy coating of a hard facing alloy in powder form to a ferrous metal plate or substrate of melting point substantially higher than that of the hard facing alloy. The method comprises providing a plate of a ferrous metal substrate to be coated in which a surface of the plate to be coated is cleaned, e.g., by grit blasting. A retaining bank is formed substantially about a predetermined periphery of the plate by forming a ridge of a predetermined height on the clean surface to provide a confining zone into which a powder of the hard facing alloy is smoothly applied to a predetermined thickness to provide a composite of the alloy powder and the substrate. The powder may have an average particle size ranging from about 40 mesh to about 400 mesh (U.S. Standard) e.g., about 80 mesh to about 325 mesh. Following the application of the alloy powder to the confining zone to provide a composite, the composite is heated under substantially non-oxidizing conditions at a temperature sufficiently high to melt the alloy powder but below the melting temperature of the metal substrate, and thereby provide a dense alloy coating bonded to the ferrous metal plate or substrate. The coated plate is then cooled under substantially non-oxidizing conditions to solidify the coating.
    • 提供了一种将粉末形式的硬质合金的自熔自熔合金涂层施加到基本上高于硬质合金的熔点的黑色金属板或基材的方法。 该方法包括提供将要被涂覆的黑色金属基底的板,其中待涂覆的板的表面例如通过喷砂处理被清洁。 通过在清洁表面上形成预定高度的脊,基本上围绕板的预定周边形成保持堤,以提供限制区域,将硬质合金的粉末平滑地施加到该限制区域中以提供复合材料 的合金粉末和基材。 粉末可以具有约40目至约400目(美国标准)的平均粒度,例如约80目至约325目。 在将合金粉末施加到限制区域以提供复合材料之后,将复合材料在足够高的温度下在基本上非氧化条件下加热以熔化合金粉末但低于金属基材的熔融温度,从而提供 致密合金涂层粘合到黑色金属板或基板上。 然后将涂覆的板在基本上非氧化条件下冷却以固化涂层。