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    • 2. 发明申请
    • PISTON ASSEMBLY
    • 活塞装配
    • US20060130644A1
    • 2006-06-22
    • US10905137
    • 2004-12-17
    • Omar Kabir
    • Omar Kabir
    • F01B29/00
    • F04B39/0005F16J1/12
    • Apparatus and methods for assembling a piston assembly that comprises a piston comprising a head end flange and a crank end flange and a rod having a head end shoulder and a crank end shoulder. The head end shoulder of the rod contacts the head end flange of the piston and the crank end shoulder of the rod contacts the crank end flange of the piston. A nut engages the rod such that the head end flange of the piston is disposed between the nut and the head end shoulder of said rod. A collar engages the piston such that the crank end shoulder of the rod is disposed between the collar and the crank end flange of the piston.
    • 一种用于组装活塞组件的装置和方法,该活塞组件包括一个活塞,该活塞包括头端凸缘和曲柄端凸缘以及具有头端肩部和曲柄端肩部的杆。 杆的头端肩接触活塞的头端凸缘,杆的曲柄端肩接触活塞的曲柄端凸缘。 螺母接合杆,使得活塞的头端凸缘设置在螺母和所述杆的头端肩部之间。 套环接合活塞,使得杆的曲柄端肩部设置在套环和活塞的曲柄端凸缘之间。
    • 5. 发明申请
    • Regulating device
    • 调节装置
    • US20060006355A1
    • 2006-01-12
    • US10525926
    • 2003-09-01
    • Klaus Biester
    • Klaus Biester
    • F16K31/44
    • F16K31/047F16K31/53H02K7/06H02K16/00
    • A regulating device for the linear regulation of an actuating element is connected for movement to a ball spindle drive for the conversion of a rotational movement into a linear movement. The rotational movement can be transferred to the spindle drive from at least one motor via a gear unit. The gear unit exhibits a self-locking, helically toothed spur-wheel gear, which is formed as a double helical gear with at least one first and second spiral-toothed gearwheel. In each case at least one motor is arranged at both ends of the ball spindle drive and each motor is connected for movement with a second spiral-toothed gearwheel.
    • 用于线性调节致动元件的调节装置被连接以移动到球轴驱动器,用于将旋转运动转换成线性运动。 旋转运动可以通过齿轮单元从至少一个马达传递到主轴驱动器。 齿轮单元呈现自锁的螺旋齿形正齿轮,其形成为具有至少一个第一和第二螺旋形齿轮的双斜齿轮。 在每种情况下,至少一个电动机布置在球轴驱动器的两端,并且每个电动机连接用于与第二螺旋形齿轮一起运动。
    • 7. 发明申请
    • Absolute position encoder
    • 绝对位置编码器
    • US20050275564A1
    • 2005-12-15
    • US10506221
    • 2003-02-28
    • Peter KunowKlaus Biester
    • Peter KunowKlaus Biester
    • G01D5/249H03M1/22
    • G01D5/2492G01D5/2495
    • A transducer, a method and a coding pattern for determining a kinematic measurable variable are disclosed. A transducer comprises a first device part which is moveable in or through a corresponding device for oil or natural gas production and a second device part which is stationary relative to said first device part. To detect both the directions of movement and the respective position in a simple constructional and inexpensive way without the need for return movement up to ends of the range of movement, the first and/or second device part comprises a coding pattern which is changing along a direction of movement and of which position-specific patterns can be scanned by a scanning means which is arranged on the respective other device part. By scanning such a specific coding pattern during mutual relative movement of said objects or device parts a corresponding scanning signal can then be converted by an evaluation unit into a kinematic measurable variable. The corresponding coding pattern comprises a plurality of single patterns wherein neighboring single patterns differ from one another by at least one characteristic feature and/or said single pattern has at least one characteristic feature that is changing in the direction of movement.
    • 公开了用于确定运动学可测量变量的换能器,方法和编码模式。 换能器包括第一装置部分,其可在适于用于油或天然气生产的相应装置中移动或穿过其中,以及相对于所述第一装置部分静止的第二装置部分。 为了以简单的结构和廉价的方式检测运动方向和相应位置,而不需要返回运动直到运动范围的终点,第一和/或第二装置部分包括沿着沿着运动方向改变的编码图案 可以通过布置在相应的其他设备部分上的扫描装置来扫描哪个位置特定图案。 通过在所述对象或设备部件的相对相对运动期间扫描这样的特定编码模式,相应的扫描信号然后可以由评估单元转换成运动学可测量变量。 相应的编码模式包括多个单个模式,其中相邻的单个模式通过至少一个特征特征彼此不同,和/或所述单个模式具有在移动方向上变化的至少一个特征特征。
    • 8. 发明申请
    • Drive device
    • 驱动装置
    • US20050252316A1
    • 2005-11-17
    • US10525937
    • 2003-09-01
    • Klaus Biester
    • Klaus Biester
    • F16K31/04H02K7/06H02K16/00E21B34/04
    • F16H37/065F16K31/047H02K7/06H02K16/00Y10T74/18056Y10T74/18576Y10T74/18624Y10T74/19051Y10T74/19828
    • A drive device serves for adjusting an operating element for a valve, a throttle, a blow-out preventor or the like, in particular in the field of gas and oil production, the operating element being actively connected to at least one driving motor via a drive train, and at least one transmission changing unit being arranged in the drive train for converting a revolution of the driving motor into a revolution of the operating element and/or a revolution/linear motion converter being arranged for converting the revolution of the driving motor into a linear motion of the operating element. In order to also have a very compact design in case of a high possible performance and to simultaneously permit a good thermal distribution within the drive device, so that separate cooling devices for carrying off the generated lost heat are superfluous, the drive train comprises at least one essentially disk- or wheel-shaped revolution introducing device which is actively connected with at least two drive shafts driven by separate driving motors.
    • 驱动装置用于调节阀门,节流阀,防喷器等的操作元件,特别是在气体和油的生产领域中,操作元件主动地通过一个驱动马达经由 传动系,并且至少一个变速单元布置在所述传动系中,用于将所述驱动电动机的转数转换为所述操作元件的转速,和/或转/线性运动转换器被布置成用于转换所述驱动电动机的转速 变成操作元件的线性运动。 为了在具有高可能性能的情况下还具有非常紧凑的设计,并且同时允许驱动装置内的良好的热分布,使得用于传送所产生的热量的分开的冷却装置是多余的,所述传动系至少包括 一个基本上是盘形或轮状的转动引导装置,其与由分开的驱动电机驱动的至少两个驱动轴主动连接。