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    • 15. 发明授权
    • System and method for estimating operating temperature of turbo machinery
    • 涡轮机械运行温度估算系统及方法
    • US08974180B2
    • 2015-03-10
    • US13299114
    • 2011-11-17
    • Jason Robert ParoliniJunyoung ParkCanan Uslu HardwickeAndrew Joseph Detor
    • Jason Robert ParoliniJunyoung ParkCanan Uslu HardwickeAndrew Joseph Detor
    • G01N33/00F01D25/00G01K3/04G01K11/06G01K13/02
    • G01K3/04G01K11/06G01K13/02G01K2013/024
    • A method for estimating an operating temperature of component in turbo machinery includes providing body detachably affixed to component, operating machinery, stopping operation of machinery, and removing body. The method includes obtaining concentration profile by determining final concentration of at least one species in first material and in second material, and determining a transient concentration of at least one species between first material and second material. The method includes determining an operating temperature by correlating concentration profile to corresponding operating temperature for system. A system including body is also provided. Body includes at least one species, a first material having a starting first concentration of the species, a second material arranged to permit migration of the species from first material to second material. Species migrates from first material to second material during operation of turbo machinery allowing body to estimate temperature during operation.
    • 用于估计涡轮机械中的部件的工作温度的方法包括提供可拆卸地固定到部件,操作机械,停止机械操作和移除主体的主体。 该方法包括通过确定第一材料和第二材料中的至少一种物质的最终浓度并确定第一材料和第二材料之间的至少一种物质的瞬时浓度来获得浓度分布。 该方法包括通过将浓度分布与系统的相应操作温度相关联来确定操作温度。 还提供了包括身体的系统。 身体包括至少一种物质,具有物种起始第一浓度的第一种物质,被布置成允许物质从第一物质迁移到第二物质的第二物质。 在涡轮机械运行期间,物种从第一种材料迁移到第二种材料,允许物体在运行过程中估计温度。
    • 16. 发明授权
    • Harsh environment sensor system and detection methods
    • 恶劣的环境传感器系统和检测方法
    • US08924182B2
    • 2014-12-30
    • US12510302
    • 2009-07-28
    • Ertugrul BerkcanCanan Uslu Hardwicke
    • Ertugrul BerkcanCanan Uslu Hardwicke
    • H04Q9/00G01D21/00
    • H04Q9/00G01D21/00G08C2201/10H04Q2209/40H04Q2209/86
    • A system for measuring a plurality of operating parameters of an object in a harsh environment is provided. The system includes a first energy transceiver system configured to transceive energy signals. The system also includes a transcieved modulant coupled to the first energy transceiver system. The system further includes a second energy transceiver system at least partially disposed on the object and capable of being interrogated by the first energy transceiver system. The second energy transceiver system still further includes a sensing system. The system also includes a processor coupled to the first energy transceiver system. The processor is configured to determine of the plurality of the operating parameters of the object in the harsh environment based upon the transceived modulant.
    • 提供了一种用于在恶劣环境中测量对象的多个操作参数的系统。 该系统包括被配置为收发能量信号的第一能量收发器系统。 该系统还包括耦合到第一能量收发器系统的收发式调制器。 该系统还包括至少部分地设置在物体上并且能够被第一能量收发器系统询问的第二能量收发器系统。 第二能量收发器系统还包括感测系统。 该系统还包括耦合到第一能量收发器系统的处理器。 处理器被配置为基于收发的调制器在恶劣环境中确定对象的多个操作参数。
    • 20. 发明申请
    • SLURRY DIFFUSION ALUMINIDE COATING COMPOSITION AND PROCESS
    • 浆料扩散铝铝涂料组合物和工艺
    • US20090126833A1
    • 2009-05-21
    • US11940507
    • 2007-11-15
    • Dennis William CavanaughCanan Uslu HardwickeMatthew James OConnellTodd Steven Moran
    • Dennis William CavanaughCanan Uslu HardwickeMatthew James OConnellTodd Steven Moran
    • C23C22/05C09D5/00
    • C23C10/20C23C10/60
    • A slurry and slurry coating process for forming a diffusion aluminide coating on a substrate, including internal surfaces within the substrate. The process involves preparing a slurry of a powder containing a metallic aluminum alloy having a melting temperature higher than aluminum, an activator capable of forming a reactive halide vapor with the metallic aluminum, and a binder containing an organic polymer. The slurry is applied to surfaces of the substrate, which is then heated to burn off the binder, vaporize and react the activator with the metallic aluminum to form the halide vapor, react the halide vapor at the substrate surfaces to deposit aluminum on the surfaces, and diffuse the deposited aluminum into the surfaces to form a diffusion aluminide coating. The process can be tailored to selectively produce an inward or outward-type coating. The binder burns off to form an ash residue that can be readily removed.
    • 用于在基底上形成扩散铝化物涂层的浆料和浆料涂覆方法,包括在基底内的内表面。 该方法包括制备含有熔融温度高于铝的金属铝合金粉末的粉末,能够与金属铝形成反应性卤化物蒸气的活化剂和含有机聚合物的粘合剂。 将浆料施加到基材的表面,然后将其加热以烧掉粘合剂,使活化剂与金属铝蒸发并使其反应以形成卤化物蒸气,使基材表面上的卤化物蒸气反应以在表面上沉积铝, 并将沉积的铝扩散到表面中以形成扩散铝化物涂层。 可以调整该方法以选择性地产生向内或向外的涂层。 粘合剂烧掉形成可以容易地除去的灰渣。