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    • 61. 发明申请
    • VALVE EXTENSION HANDLE
    • 阀门伸缩手柄
    • US20140027659A1
    • 2014-01-30
    • US13558629
    • 2012-07-26
    • Mukesh Kumar
    • Mukesh Kumar
    • F16K31/44
    • F16K31/465A47J37/0713F16K31/46G05G1/08
    • A valve extension handle is disclosed in the present invention. Said valve extension handle is comprised of a extension member with opposed first and second ends, a clamping member connected to the first end of the extension member, and a control member connected to the second end of the extension member. Said clamping member can be attached to the gas tank valve. When the control member connected to the second end of the extension member is turned, the clamping member attached to gas tank valve moves gas tank valve to turn on or shut off the gas flow from said tank.
    • 在本发明中公开了一种阀延伸手柄。 所述阀延伸手柄包括具有相对的第一和第二端的延伸构件,连接到延伸构件的第一端的夹紧构件和连接到延伸构件的第二端的控制构件。 所述夹紧构件可以附接到气罐阀。 当连接到延伸构件的第二端的控制构件转动时,附接到气罐阀的夹紧构件移动气罐阀,以打开或关闭来自所述罐的气体流。
    • 69. 发明申请
    • METHODS FOR COATING IMPLANTS
    • 涂层的方法
    • US20110143127A1
    • 2011-06-16
    • US12636379
    • 2009-12-11
    • Gautam GuptaMukesh KumarRobert M. Ronk
    • Gautam GuptaMukesh KumarRobert M. Ronk
    • B32B15/04C23C28/00B05D1/08C23C4/08C23C16/00
    • A61L27/32A61L27/30A61L27/306A61L27/3604A61L27/365A61L27/54A61L2420/02A61L2420/08Y10T428/265
    • An implant and method for applying an osteoconductive coating on a non-conductive surface of an implant. The method includes depositing an electroconductive interlayer on at least a portion of a non-conductive implant surface. A secondary process is applied to the interlayer and an osteoconductive coating is thereby formed on the implant. In various embodiments, the electroconductive interlayer is deposited as a non-structural film and comprises a dense, non-porous metal such as titanium, titanium alloys, cobalt, cobalt alloys, chromium, chromium alloys, tantalum, tantalum alloys, iron alloys, stainless steel, and mixtures thereof. The osteoconductive coating may include a metal, a porous metal, or calcium phosphate. The osteoconductive coating may include additional agents, such as bone product, growth factor, bioactive agent, antibiotic, or combinations thereof.
    • 用于在植入物的非导电表面上施加骨传导性涂层的植入物和方法。 该方法包括在非导电植入物表面的至少一部分上沉积导电中间层。 将二次方法应用于中间层,由此在植入物上形成骨传导性涂层。 在各种实施方案中,导电中间层作为非结构膜沉积并且包含致密的非多孔金属如钛,钛合金,钴,钴合金,铬,铬合金,钽,钽合金,铁合金,不锈钢 钢及其混合物。 骨传导性涂层可以包括金属,多孔金属或磷酸钙。 骨传导性涂层可以包括另外的试剂,例如骨产品,生长因子,生物活性剂,抗生素或其组合。
    • 70. 发明授权
    • Wing ice protection heater element network
    • 翼冰保护加热器元件网络
    • US07922120B2
    • 2011-04-12
    • US11939313
    • 2007-11-13
    • Mukesh KumarEdwin Wing-Kwong YueDavid Lazarovich
    • Mukesh KumarEdwin Wing-Kwong YueDavid Lazarovich
    • B64D15/14
    • B64D15/14
    • An ice prevention network comprising a plurality of non-overlapping heater elements arranged in a grid along an airfoil is provided, powered by a multiphase power source, each phase powering selected heater elements that can selectively be powered on and powered off. The grid has a number of zones extending along the airfoil perpendicular to the airflow over the airfoil and a number of sections extending along the surface of the airfoil parallel to the airflow over the airfoil. Each of the heater elements is assigned to a single power phase and arranged such that an arbitrary section may be deactivated without causing a phase imbalance of more than one heating unit and such that a single zone may be activated without causing a phase imbalance of more than one heating unit.
    • 提供了一种防冰网络,其包括沿着翼型布置在格栅中的多个非重叠的加热器元件,由多相电源供电,每相为所选择的加热器元件供电,所述加热器元件可选择性地通电并断电。 格栅具有沿机翼垂直于机翼上方的气流延伸的多个区域,以及沿翼型表面平行于翼型上的气流延伸的多个部分。 每个加热器元件被分配到单个电力相位并且被布置成使得任意部分可以被去激活而不引起多于一个加热单元的相位不平衡,并且使得单个区域可以被激活而不引起相位不平衡 一个加热单元。