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    • 3. 发明授权
    • Steam turbine inlet bell seal inspection apparatus and method
    • 蒸汽轮机入口钟密封检查仪器及方法
    • US06619109B1
    • 2003-09-16
    • US09669785
    • 2000-09-25
    • George F. DaileyMark FischerMichael J. MetalaJames A. Bauer
    • George F. DaileyMark FischerMichael J. MetalaJames A. Bauer
    • G01M1500
    • G01M3/2853F01D9/06F01D21/003F05D2220/31F05D2230/80G01M3/2869
    • An inspection apparatus (40) for in-situ leak testing of the bell seal (30) of a steam turbine (10). The apparatus includes a pair of inflatable bladders (48,52) for defining a sealed volume having the bell seal (30) as its only leakage path. The mass flow rate of pressurized air (70) at various pressures through the bell seal (30) is compared to the known flow rates through a similarly designed bell seal having various degrees of degradation. A camera (60) rotated by motor (62) between the bladders (48,52) provides an indication of the proper positioning of the inspection apparatus (40) and facilitates a visual inspection of the bell seal (30) and retaining nut (42). The inspection apparatus (40) may be inserted into an inlet to the turbine through a disassembled flow control valve without the need for any disassembly of the turbine.
    • 一种用于汽轮机(10)的钟形密封件(30)的现场泄漏测试的检查装置(40)。 该装置包括一对可充气气囊(48,52),用于限定具有喇叭密封件(30)作为其唯一泄漏路径的密封容积。 通过钟形密封件(30)的各种压力下的加压空气(70)的质量流量通过具有各种劣化程度的相似设计的钟形密封件与已知的流速进行比较。 由电动机(62)在气囊(48,52)之间旋转的照相机(60)提供了检查装置(40)的适当定位的指示,并且便于对钟形密封件(30)和保持螺母(42)的目视检查 )。 检查装置(40)可以通过拆卸的流量控制阀插入到涡轮机的入口,而不需要拆卸涡轮机。
    • 4. 发明授权
    • System and method for testing electrical generators
    • 用于发电机测试的系统和方法
    • US5557216A
    • 1996-09-17
    • US248907
    • 1994-05-25
    • George F. DaileyJames A. BauerMark W. Fischer
    • George F. DaileyJames A. BauerMark W. Fischer
    • F16L55/26G01R31/34
    • G01R31/34F16L55/26
    • A system and method for testing an electrical generator of the type having a rotor (14) and a stator (12) includes or utilizes a movable carriage (22) having testing equipment which is sized to fit between the rotor (14) and stator (12) and is positionable over a selected stator (12) slot so as to be able to axially traverse the selected stator (12) slot, at least one sensor for sensing whether the movable carriage (22) is centered in an optimum position with respect to the selected stator (12) slot; and structure for centering the movable carriage (22) with respect to the optimum position if the sensor indicates the movable carriage (22) is not so centered, whereby accuracy of any testing by the testing equipment is optimized.
    • 用于测试具有转子(14)和定子(12)的类型的发电机的系统和方法包括或利用具有测试设备的可移动滑架(22),该测试设备的尺寸适于安装在转子(14)和定子 12),并且可定位在选定的定子(12)槽上,以便能够轴向地横穿所选择的定子(12)狭槽,至少一个传感器用于感测可移动托架(22)是否位于相对于 到所选择的定子(12)槽; 如果传感器指示可移动托架(22)不是居中的,则可移动托架(22)相对于最佳位置居中的结构,从而优化了测试设备的任何测试的精度。
    • 7. 发明授权
    • Dynamoelectric machine with stator coil end turn support system
    • 带定子线圈终端转动支撑系统的电动机
    • US4488079A
    • 1984-12-11
    • US595025
    • 1984-03-30
    • George F. DaileyHomer W. Luzader
    • George F. DaileyHomer W. Luzader
    • H02K3/50H02K3/46
    • H02K3/505Y10S174/20Y10S174/27
    • A large turbine generator is provided with a stator end winding assembly that includes a large conical member outside the coils which is joined by banding with adjusting rings radially inside the coils, with an adjusting means for each banding location that includes a wedge extending through an aperture in a portion of the adjusting ring that extends away from the coil and having a fastener that is joined to the wedge so that upon the tightening of the fastener, the wedge will be forced in the axial direction bearing against the banding and hence tightening it; and in addition, the conical member is provided with projections serving as torque splines that fit within apertures of the core so as to prevent its rotational movement in operation.
    • 一个大型涡轮发电机设置有一个定子端部绕组组件,该定子端部绕组组件包括线圈周围的大的圆锥形构件,该圆锥形构件通过在线圈内部径向地配合调节环而接合,每个带状位置的调节装置包括一个延伸穿过孔 在调节环的远离线圈的部分中并且具有连接到楔形件的紧固件,使得在紧固紧固件时,楔形件将被迫在轴向方向上抵靠带状物并因此紧固; 此外,锥形构件设置有用作装配在芯的孔内的扭矩花键的突起,以防止其在操作中的旋转运动。
    • 8. 发明授权
    • Tool for forming rectangular cross-sectional conduit ends
    • 用于形成矩形横截面导管端的工具
    • US4138873A
    • 1979-02-13
    • US875669
    • 1978-02-06
    • George F. DaileyJames S. Koroly
    • George F. DaileyJames S. Koroly
    • B21D39/08B21D41/02
    • B21D39/08B21D41/026
    • A tool for forming substantially rectangular cross sections on conduits. Two mateable collars are disposable about the exterior of a conduit and have forming surfaces which can be pressed against the conduit's wall to predetermined extents to cause the conduit to assume the desired outside rectangular dimensions. Such pressing is provided by two threaded fasteners, each of which extend through one of the collar members and into threaded engagement with the mateable collar. The assembled collar configuration may be disengaged from, rotated about, and reclamped on the exterior of the conduit so as to provide uniform wall formation if the shape of the desired conduit permits such collar rotation. To assure complete contact between the conduit's exterior and the forming surfaces of the collar, two wedge members are axially inserted in the conduit's opening.
    • 用于在管道上形成基本上矩形横截面的工具。 两个可配套的套环围绕导管的外部是一次性的,并且具有能够以预定范围压靠导管的壁的成形表面,以使导管呈现所需的外部矩形尺寸。 这种按压由两个螺纹紧固件提供,每个螺纹紧固件延伸穿过套环构件中的一个并与可配合的套环螺纹接合。 组装的套圈构造可以在导管的外部脱离,旋转并且被重新放置在管道的外部,以便如果期望的管道的形状允许这种轴环旋转,则提供均匀的壁形成。 为了确保导管的外部和套环的成形表面之间的完全接触,两个楔形构件被轴向地插入导管的开口中。
    • 10. 发明授权
    • Through-bolt insulating boot
    • 通螺栓绝缘靴
    • US07223920B2
    • 2007-05-29
    • US11156339
    • 2005-06-17
    • George F. DaileyLouis R. Rubio
    • George F. DaileyLouis R. Rubio
    • H05K7/14
    • F16B37/14H02K1/16H02K3/42
    • The present invention provides for an insulating boot 20 for ends of through-bolts 12 in electric generators that comprises a shaped insulating boot. The boot has an inner surface and an outer surface and an opening, where the inner surface is substantially free of protrusions. The inner surface of the shaped boot 20 is within 0.01 to 0.5 inches (0.025–1.3 cm) larger than the shape of the end of a through-bolt 12 to which the shaped boot will be applied. The shaped insulating boot has a breakdown voltage of at least 10 kV, and more particularly at least 30 kV, and the shaped boot is placed over the end of a through-bolt of an electric generator.
    • 本发明提供一种用于发电机中的贯穿螺栓12的端部的绝缘套管20,其包括成形的绝缘套管。 靴子具有内表面和外表面和开口,其中内表面基本上没有突起。 成形靴子20的内表面比成形靴子将要施加的贯穿螺栓12的端部的形状大0.01至0.5英寸(0.025-1.3厘米)。 成形的绝缘靴具有至少10kV,更特别是至少30kV的击穿电压,并且成形护罩放置在发电机的贯穿螺栓的端部之上。