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    • 3. 发明申请
    • Method and apparatus for wind turbine air gap control
    • 风力发电机气隙控制的方法和装置
    • US20060152014A1
    • 2006-07-13
    • US11031259
    • 2005-01-07
    • James GrantBharat BagepalliPatrick JansenPaul DiMascioAniruddha GadreRonghai Qu
    • James GrantBharat BagepalliPatrick JansenPaul DiMascioAniruddha GadreRonghai Qu
    • F03D9/00H02P9/04
    • F03D9/25F03D15/20F03D80/70F05B2220/7066H02K7/1838Y02E10/725
    • Methods and apparatus for assembling a wind turbine generator are provided. The wind turbine generator includes a core and a plurality of stator windings circumferentially spaced about a generator longitudinal axis, a rotor rotatable about the generator longitudinal axis wherein the rotor includes a plurality of magnetic elements coupled to a radially outer periphery of the rotor such that an airgap is defined between the stator windings and the magnetic elements and the plurality of magnetic elements including a radially inner periphery having a first diameter. The wind turbine generator also includes a bearing including a first member in rotatable engagement with a radially inner second member, the first member including a radially outer periphery, a diameter of the radially outer periphery of the first member being substantially equal to the first diameter, the rotor coupled to the stator through the bearing such that a substantially uniform airgap is maintained.
    • 提供了组装风力涡轮发电机的方法和装置。 风力涡轮发电机包括一个铁芯和围绕发电机纵向轴线周向隔开的多个定子绕组,围绕发电机纵向轴线可转动的转子,其中转子包括耦合到转子的径向外周边的多个磁性元件, 在定子绕组和磁性元件之间限定气隙,并且多个磁性元件包括具有第一直径的径向内周边。 风力涡轮发电机还包括轴承,其包括与径向内部第二构件可旋转接合的第一构件,第一构件包括径向外周边,第一构件的径向外周的直径基本上等于第一直径, 所述转子通过所述轴承联接到所述定子,使得保持基本均匀的气隙。
    • 4. 发明申请
    • METHOD FOR FORMING A PROTECTIVE COATING WITH ENHANCED ADHESION BETWEEN LAYERS
    • 在层之间形成具有增强粘合力的保护涂层的方法
    • US20070178247A1
    • 2007-08-02
    • US11307266
    • 2006-01-30
    • David BucciDaniel NowakPaul Dimascio
    • David BucciDaniel NowakPaul Dimascio
    • B05D3/00B05D7/00B05D1/08
    • C23C10/60C23C10/06C23C10/48C23C26/00Y10T428/12472
    • A method for forming a protective coating on a substrate comprising, applying a bond coating to the substrate, the bond coating having a first surface roughness, ionizing an inert gas which flows into the surface of the bond coating so as to impart a second surface roughness to the bond coating greater than the first surface roughness, wherein the inert gas is ionized and caused to flow into the surface of the bond coating by a reverse polarity current supplied to an electrode which removes at least one electron from the inert gas, and applying a top coating to the bond coating. Additionally, a method for preparing a surface to receive and adhere to a coating comprising roughening the surface to create a micro-roughening network on the surface. In addition, a method of improving strain tolerance and cyclic spallation life of a protective coating.
    • 一种在基材上形成保护涂层的方法,包括:向所述基材施加粘合涂层,所述粘合涂层具有第一表面粗糙度,电离惰性气体,所述惰性气体流入所述粘结涂层的表面,以赋予第二表面粗糙度 到大于第一表面粗糙度的粘结涂层,其中惰性气体被电离并通过提供给从惰性气体中除去至少一个电子的电极的反极性电流流入粘合涂层的表面,并施加 粘合涂层的顶部涂层。 另外,一种制备表面以接收和粘附到涂层上的方法,包括使表面变粗糙以在表面上产生微粗糙化网络。 另外,提高保护涂层的耐应变性和循环剥落寿命的方法。