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    • 1. 发明申请
    • Sensing coil assembly and method for attaching a sensing coil in a fiber optic gyroscope
    • 传感线圈组件和用于在光纤陀螺仪中附接感测线圈的方法
    • US20060268278A1
    • 2006-11-30
    • US11139348
    • 2005-05-27
    • Michael MalkinWesley WilliamsEdward Summers
    • Michael MalkinWesley WilliamsEdward Summers
    • G01C19/72
    • G01C19/722
    • A sensing coil assembly and method for attaching a sensing coil to a support structure are provided for a fiber optic gyroscope. The method comprises affixing a first support surface of the support structure to a first mounting surface of the sensing coil via a first preformed adhesive, and affixing a second support surface of the support structure to a second mounting surface of the sensing coil via a second preformed adhesive. The sensing coil assembly comprises a support structure having first and second support surfaces and having a substantially cylindrical hub coupled between the first and second opposing surfaces, an optical fiber coil surrounding at least a portion of the substantially cylindrical hub, and first and second preformed adhesive patterns affixing the optical fiber coil to the first and second opposing surfaces. The first support surface opposes the second support surface.
    • 为光纤陀螺仪提供了用于将感测线圈附接到支撑结构的感测线圈组件和方法。 该方法包括将支撑结构的第一支撑表面经由第一预成型粘合剂固定到感测线圈的第一安装表面,并且将支撑结构的第二支撑表面经由第二预成型的粘合剂固定到感测线圈的第二安装表面 胶粘剂。 感测线圈组件包括具有第一和第二支撑表面并且具有联接在第一和第二相对表面之间的基本上圆柱形的毂的支撑结构,围绕基本圆柱形轮毂的至少一部分的光纤线圈以及第一和第二预制粘合剂 将光纤线圈固定在第一和第二相对表面上的图案。 第一支撑表面与第二支撑表面相对。
    • 4. 发明授权
    • Sensing coil assembly and method for attaching a sensing coil in a fiber optic gyroscope
    • 传感线圈组件和用于在光纤陀螺仪中附接感测线圈的方法
    • US07369245B2
    • 2008-05-06
    • US11139348
    • 2005-05-27
    • Michael M. MalkinWesley H. WilliamsEdward Summers
    • Michael M. MalkinWesley H. WilliamsEdward Summers
    • G01C19/72
    • G01C19/722
    • A sensing coil assembly and method for attaching a sensing coil to a support structure are provided for a fiber optic gyroscope. The method comprises affixing a first support surface of the support structure to a first mounting surface of the sensing coil via a first preformed adhesive, and affixing a second support surface of the support structure to a second mounting surface of the sensing coil via a second preformed adhesive. The sensing coil assembly comprises a support structure having first and second support surfaces and having a substantially cylindrical hub coupled between the first and second opposing surfaces, an optical fiber coil surrounding at least a portion of the substantially cylindrical hub, and first and second preformed adhesive patterns affixing the optical fiber coil to the first and second opposing surfaces. The first support surface opposes the second support surface.
    • 为光纤陀螺仪提供了用于将感测线圈附接到支撑结构的感测线圈组件和方法。 该方法包括将支撑结构的第一支撑表面经由第一预成型粘合剂固定到感测线圈的第一安装表面,并且将支撑结构的第二支撑表面经由第二预成型的粘合剂固定到感测线圈的第二安装表面 胶粘剂。 感测线圈组件包括具有第一和第二支撑表面并且具有联接在第一和第二相对表面之间的基本上圆柱形的毂的支撑结构,围绕基本圆柱形轮毂的至少一部分的光纤线圈以及第一和第二预制粘合剂 将光纤线圈固定在第一和第二相对表面上的图案。 第一支撑表面与第二支撑表面相对。
    • 6. 发明申请
    • Superfinishing Large Planetary Gear Systems
    • 超精加工大行星齿轮系统
    • US20080108470A1
    • 2008-05-08
    • US11932368
    • 2007-10-31
    • Mark MichaudEdward Summers
    • Mark MichaudEdward Summers
    • F16H57/04F03D11/02
    • F16H57/0463B24B31/073F16H55/06F16H57/0006F16H57/04F16H57/08Y02B10/30Y10T29/49467
    • Disclosed herein is a new improved large planetary gear system used on the input stage of wind turbine power generators. This improved planetary gear system reduces or eliminates lubricant debris traditionally generated from the gear teeth, thereby eliminating an initiating source for bearing failure. To achieve these results, some and preferably all of the gear teeth within the planetary gear system are superfinished using chemically accelerated vibratory finishing to a surface roughness of approximately 0.25 micron or less. Several objects and advantages of the invention are to provide a gearbox with reduced metal debris, improved bearing life, reduced wear, reduced vibro-frictional noise, improved contact fatigue, improved fretting resistance, improved lubrication, to simplify the run-in process, and to enhance the durability and efficiency of the gearbox.
    • 这里公开了一种用于风力发电机输入级的新的改进的大型行星齿轮系统。 这种改进的行星齿轮系统减少或消除了传统上从齿轮产生的润滑剂碎屑,从而消除了轴承故障的起动源。 为了实现这些结果,行星齿轮系统中的一些并且优选地所有的齿轮齿都使用化学加速的振动整理进行超精加工,其表面粗糙度大约为0.25微米或更小。 本发明的几个目的和优点是提供具有减少的金属碎片,改善的轴承寿命,减少的磨损,降低的振动 - 摩擦噪声,改善的接触疲劳,改善的耐磨性,改善润滑,简化磨合过程的齿轮箱,以及 以提高齿轮箱的耐久性和效率。
    • 7. 发明申请
    • Superfinishing large planetary gear systems
    • 超精加工大行星齿轮系统
    • US20050014597A1
    • 2005-01-20
    • US10856534
    • 2004-05-28
    • Mark MichaudEdward Summers
    • Mark MichaudEdward Summers
    • B24B31/00F16H55/06F16H57/00F16H57/04F16H57/08
    • F16H57/0463B24B31/073F16H55/06F16H57/0006F16H57/04F16H57/08Y02B10/30Y10T29/49467
    • Disclosed herein is a new improved large planetary gear system used on the input stage of wind turbine power generators. This improved planetary gear system reduces or eliminates lubricant debris traditionally generated from the gear teeth, thereby eliminating an initiating source for bearing failure. To achieve these results, some and preferably all of the gear teeth within the planetary gear system are superfinished using chemically accelerated vibratory finishing to a surface roughness of approximately 0.25 micron or less. Several objects and advantages of the invention are to provide a gearbox with reduced metal debris, improved bearing life, reduced wear, reduced vibro-frictional noise, improved contact fatigue, improved fretting resistance, improved lubrication, to simplify the run-in process, and to enhance the durability and efficiency of the gearbox.
    • 这里公开了一种用于风力发电机输入级的新的改进的大型行星齿轮系统。 这种改进的行星齿轮系统减少或消除了传统上从齿轮产生的润滑剂碎屑,从而消除了轴承故障的起动源。 为了实现这些结果,行星齿轮系统中的一些并且优选地所有的齿轮齿都使用化学加速的振动整理进行超精加工,其表面粗糙度大约为0.25微米或更小。 本发明的几个目的和优点是提供具有减少的金属碎片,改善的轴承寿命,减少的磨损,降低的振动 - 摩擦噪声,改善的接触疲劳,改善的耐磨性,改善润滑,简化磨合过程的齿轮箱,以及 以提高齿轮箱的耐久性和效率。