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    • 2. 发明授权
    • Method of automatically adjusting the speed controller in elastomechanical systems
    • 自动调节弹性机械系统速度控制器的方法
    • US06347255B1
    • 2002-02-12
    • US09216452
    • 1998-12-18
    • Roland MoserHans-Peter Tröndle
    • Roland MoserHans-Peter Tröndle
    • G05B1302
    • G06F17/14
    • Various filter options in the current setpoint channel are available for optimal adjustment of a drive system to an elastomechanical system. The present method permits optimal adjustment of the speed controller through measurement of the speed control system by automatically determining possible parameters for a filter setting which may optionally be necessary. In a simulation calculation in the frequency range which relies on data from the measured system, a check is performed to determine whether the speed controller must be equipped with filters. In addition, the possible control parameters for the gain and the reset time of the speed controller are determined.
    • 当前设定值通道中的各种过滤器选项可用于将驱动系统优化到弹性机械系统。 本方法允许通过自动确定可能需要的过滤器设置的可能参数来通过速度控制系统的测量来最佳地调节速度控制器。 在频率范围内的模拟计算中,依赖于测量系统的数据,执行检查以确定速度控制器是否必须配备过滤器。 此外,确定速度控制器的增益和复位时间的可能控制参数。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR THE DETECTION OF CRACKS IN THE TEETH OF GENERATOR ROTORS
    • 用于检测发电机转子中裂纹的方法和装置
    • US20090071254A1
    • 2009-03-19
    • US12212681
    • 2008-09-18
    • James KnowlesRoland Moser
    • James KnowlesRoland Moser
    • G01N29/04
    • G01N29/11G01N29/265G01N2291/044G01N2291/104G01N2291/263G01N2291/2693
    • A method for non-destructive testing the teeth of a high power electrical generator rotor includes the steps of: providing a plurality of ultrasonic pulse echo transducers (22, . . . ,25) being arranged in an array (20), and being positioned and aligned in such a way as to provide a range of different inspection angles for the tooth geometry; positioning the array (20) on top of the rotor tooth; exciting at least one of the plurality of ultrasonic pulse echo transducers (22, . . . ,25) to produce a transmission beam for the interrogation of wedge angle on the underside of the tooth; and conditioning the acquired data from the at least one of the plurality of ultrasonic pulse echo transducers (22, . . . ,25) to capture reflection from the flaws within the tooth.
    • 一种用于对大功率发电机转子的齿进行非破坏性测试的方法包括以下步骤:提供布置在阵列(20)中的多个超声脉冲回波换能器(22 ...,25),并且被定位 并且以这样的方式对准,以便为牙齿几何形状提供一系列不同的检查角度; 将阵列(20)定位在转子齿的顶部; 激励多个超声波脉冲回波换能器(22 ...,25)中的至少一个,以产生用于在齿的下侧询问楔角的透射束; 以及调节来自所述多个超声波脉冲回波换能器(22 ...,25)中的至少一个的所获取的数据,以捕获来自所述牙齿内的缺陷的反射。
    • 7. 发明授权
    • Method and device for pin removal in a confined space
    • 在密闭空间内针销拆卸的方法和装置
    • US08235772B2
    • 2012-08-07
    • US12604862
    • 2009-10-23
    • Roland MoserChristopher John Hulme
    • Roland MoserChristopher John Hulme
    • B24C7/00
    • B23P6/002B24C1/045B26F3/004F01D5/005F01D5/3053Y10T83/0591Y10T83/364
    • A method for drilling or cutting a pin surrounded by solid material includes the use of a water jet tool having a nozzle that is arranged at an angle with respect to a main body of the water jet tool. The water jet is directed over a portion of the surface of the pin, and removes that portion thereby fragmenting the pin. In order to minimize damage to the surrounding material, the portions removed touches the interface between the pin and the surrounding solid material at a minimal number of points and over a minimal extent of the interface. The method is applicable in particular to the removal of pins used in a press-fit for the securing of blades on a turbine rotor. The method facilitates “in situ” removal of pins within a confined space in a short time and at reduced cost.
    • 用于钻或切割由固体材料包围的销的方法包括使用具有相对于喷水工具的主体成角度设置的喷嘴的喷水工具。 水射流引导销的表面的一部分,并且去除该部分,从而使销分裂。 为了最小化对周围材料的损害,所消除的部分以最小数量的点和界面的最小程度触及销和周围固体材料之间的界面。 该方法特别适用于拆卸用于压配合的用于将叶片固定在涡轮转子上的销。 该方法有助于在短时间内以降低的成本在有限空间内“原位”去除销。
    • 8. 发明授权
    • Gap inspection apparatus
    • 间隙检查装置
    • US08220345B2
    • 2012-07-17
    • US12422341
    • 2009-04-13
    • Roland MoserNiklaus HugiBernhard MarkPhilipp IslerSimon HonoldJosef Erni
    • Roland MoserNiklaus HugiBernhard MarkPhilipp IslerSimon HonoldJosef Erni
    • G01D21/00
    • G01R31/34H02K11/20
    • An apparatus for inspection of a gap between two surfaces, at least one of which is ferromagnetic, for example in a generator, includes a sensor platform (26) for one or more sensors (26a) and an elongated mount (23), which can be moved out, for the sensor platform (26). The mount (23) can be moved in and out of the gap through an access opening, can be moved out over the length of the gap and can be rolled up outside the gap by a drive (24). In its moved-out state, the mount (23) has a curvature in a lateral cross section. In addition, the mount (23) has a plurality of magnets (27) by which the mount (23) is brought into contact with a ferromagnetic surface. The magnets (27) are attached to the side of the mount (23) facing away from the ferromagnetic surface, ensuring that the mount (23) slides along a ferromagnetic surface. The apparatus allows inspection of gaps from a height of 4 mm and is distinguished by a simple and physically small design.
    • 一种用于检查两个表面之间的间隙的装置,其中至少一个是铁磁的,例如在发电机中,包括用于一个或多个传感器(26a)和细长安装件(23)的传感器平台(26),其可以 移出传感器平台(26)。 安装件(23)能够通过进入开口移入和移出间隙,可以在间隙的长度上移出,并且可以通过驱动器(24)在间隙外卷起。 在其移出状态下,安装件(23)具有横截面的曲率。 另外,安装座23具有多个磁铁27,安装部23与铁磁体接触。 磁体(27)被安装在背离铁磁表面的安装件(23)的侧面,确保安装件(23)沿铁磁表面滑动。 该装置允许从4mm的高度检查间隙,并且通过简单且物理上小的设计来区分。