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    • 1. 发明授权
    • Built-up gas turbine component and its fabrication
    • 建立燃气轮机组件及其制造
    • US06679680B2
    • 2004-01-20
    • US10107026
    • 2002-03-25
    • Jae Y. UmCraig CarmichaelDavid E. BudingerJoshua L. MillerRonald L. GalleyDouglas M. Carlson
    • Jae Y. UmCraig CarmichaelDavid E. BudingerJoshua L. MillerRonald L. GalleyDouglas M. Carlson
    • F01D1108
    • F01D11/122B23K1/0008B23K2101/001C23C26/02F01D11/12Y02T50/671
    • A built-up gas turbine component is prepared by providing a gas turbine component having a component surface and being made of a component base metal having a component base metal composition. A buildup tape is supplied having a net metallic buildup composition different from the component base metal composition. The buildup tape includes a first metallic constituent having a first melting point, and a second metallic constituent having a second melting point. The first metallic constituent and second metallic constituent together have the net metallic buildup composition. A nonmetallic binder binds together the first metallic constituent and the second metallic constituent. The buildup tape is applied to the component surface and heated to a brazing temperature greater than the first melting point and less than the second melting point. The first metallic constituent melts and fuses the first metallic constituent and the second metallic constituent to the component surface as a buildup deposit on the built-up gas turbine component.
    • 通过提供具有组分表面并由具有组分贱金属组分的组分贱金属制成的燃气轮机组件来制备组合式燃气轮机部件。 提供了具有不同于组分母材组合物的净金属堆积组合物的堆积带。 积层带包括具有第一熔点的第一金属成分和具有第二熔点的第二金属成分。 第一金属成分和第二金属成分一起具有净金属堆积组合物。 非金属粘合剂将第一金属成分和第二金属成分结合在一起。 将积层带施加到部件表面并加热到大于第一熔点并小于第二熔点的钎焊温度。 第一金属构件将第一金属成分和第二金属成分熔化并熔合到组分表面,作为积聚燃气轮机部件上的积聚沉积物。
    • 5. 发明授权
    • High performance gas cooling system and method
    • 高性能气体冷却系统及方法
    • US06167947A
    • 2001-01-02
    • US09215531
    • 1998-12-18
    • Karl HokansonDouglas M. CarlsonWilliam Berg
    • Karl HokansonDouglas M. CarlsonWilliam Berg
    • F28F700
    • H05K7/20754F28D1/0477G06F1/20
    • The present invention relates to an improved system and method for cooling electronic devices. The present system is particularly adapted for cooling computer equipment. The system comprises a sealed enclosure which houses one or more heat generating electronic devices; a blower; and a heat exchanger. The sealed enclosure may be pressurized with a gas medium such as dry nitrogen up to a pressure of approximately two atmospheres. The elevated pressure increases the gas density, effectively increasing the mass flow rate and heat carrying capacity of the gas. The blower is also a constant volume device such that it can move the same volume of gas regardless of density. Accordingly, for a given heat load, the size of the blower may be reduced. Or, alternatively, a given blower can cool a device having a higher heat load. Finally, by pressurizing the enclosure, the present invention eliminates the need to size a forced air cooling system based on high elevation requirements.
    • 本发明涉及一种用于冷却电子设备的改进的系统和方法。 本系统特别适用于冷却计算机设备。 该系统包括容纳一个或多个发热电子装置的密封外壳; 鼓风机 和热交换器。 密封的外壳可以用诸如干燥氮气的气体介质加压至大约两个大气压的压力。 升高的压力增加了气体密度,有效地提高了气体的质量流量和承载能力。 鼓风机也是恒定体积装置,使得它可以移动相同体积的气体,而不管密度如何。 因此,对于给定的热负荷,可以减小鼓风机的尺寸。 或者,替代地,给定的鼓风机可以冷却具有较高热负荷的装置。 最后,通过对外壳进行加压,本发明消除了对基于高仰角要求的强制空气冷却系统的尺寸的需要。
    • 6. 发明授权
    • Porous metal heat sink
    • 多孔金属散热器
    • US6018459A
    • 2000-01-25
    • US971179
    • 1997-11-17
    • Douglas M. CarlsonEdward A. Malosh
    • Douglas M. CarlsonEdward A. Malosh
    • F28F13/00H01L23/367H01L23/373H01L23/467H05K7/20
    • H01L23/467F28F13/003H01L23/3733H01L23/367H01L2924/0002
    • A heat sink is disclosed having an elongate, porous metal structure, including multiple sets of thermally conductive members. The members, which are interwoven, direct heat away from a heat producing component. The elongate structure of the matrix structure can be formed in a variety of predetermined forms, including a coiled structure or an elliptically coiled structure. Alternatively, the matrix structure is plated for added thermal conductivity between the sets of members. In addition, air flow is directed over the heat sink for added convection of heat. The heat sink is fabricated using a mesh of thermally conductive material such as copper or aluminum and can be provided with a plurality of protuberances. The heat sink is thermally bonded to the heat producing component. Alternatively, the heat sink has a ledge for sealing with a duct.A method for cooling a heat producing component is also disclosed. The method includes the steps of providing a heat sink structure as above, thermally coupling the heat sink structure to a heat producing component, and directing a fluid flow over the heat sink structure.
    • 公开了一种散热器,其具有细长的多孔金属结构,包括多组导热构件。 交织的构件将热量远离发热部件。 矩阵结构的细长结构可以以各种预定形式形成,包括螺旋结构或椭圆盘状结构。 或者,对基体结构进行电镀以在组件之间增加导热性。 此外,气流被引导到散热器上以增加热量的对流。 散热器使用诸如铜或铝的导热材料的网格来制造,并且可以设置有多个突起。 散热器热粘合到发热部件上。 或者,散热器具有用于与管道密封的凸缘。 还公开了一种用于冷却发热部件的方法。 该方法包括以下步骤:提供如上所述的散热器结构,将散热器结构热耦合到发热部件,以及引导流体流过散热器结构。