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    • 1. 发明申请
    • SENSOR MOUNT
    • 传感器安装
    • WO2012028165A1
    • 2012-03-08
    • PCT/EP2010/005403
    • 2010-09-03
    • AKTIEBOLAGET SKFDOORNENBAL, Jan
    • DOORNENBAL, Jan
    • G01P1/02G01P3/44G01P3/487G01P3/488G01P15/08G01K7/00G01K13/00
    • G01P1/023B61F15/20F16C19/26F16C33/80F16C41/007F16C43/04F16C2326/10G01K13/08G01P1/026G01P3/443G01P3/487G01P3/488G01P15/08
    • The present invention relates to a device for mounting a sensor to a curved component surface. The mounting device (170) has a first side at which the sensor (180) is attached and a second side which has a radius of curvature. Further, the mounting device has an aperture that is shaped to receive an insert part (185) of the sensor, and a first sealing element (191) is provided around the aperture, at the first side of the device. According to the invention, the first sealing element is provided on a first recessed surface of the mounting device, which is defined between a first upstanding rim and a second upstanding rim. The first and second rims extend in a circumferential direction of the device and provide a contact surface for an attachment part (183) of the sensor. In addition, the first and second rims retain the first sealing element in both axial directions.
    • 本发明涉及一种用于将传感器安装到弯曲部件表面上的装置。 安装装置(170)具有安装传感器(180)的第一侧和具有曲率半径的第二侧。 此外,安装装置具有成形为容纳传感器的插入部分(185)的孔,并且在装置的第一侧上围绕孔设置第一密封元件(191)。 根据本发明,第一密封元件设置在安装装置的第一凹陷表面上,其限定在第一直立边缘和第二直立边缘之间。 第一和第二轮辋在装置的圆周方向上延伸并提供用于传感器的附接部分(183)的接触表面。 此外,第一和第二边缘沿两个轴向保持第一密封元件。
    • 2. 发明申请
    • METHOD OF CONDITION MONITORING AND DEVICE THEREFORE
    • 条件监测方法及其设备
    • WO2011085737A1
    • 2011-07-21
    • PCT/EP2010/000169
    • 2010-01-14
    • AKTIEBOLAGET SKFDU PLESSIS, Louwrens TheodorLARSSON, Jan-Olof
    • DU PLESSIS, Louwrens TheodorLARSSON, Jan-Olof
    • G01H1/00G01M13/02
    • G01H1/003G01H1/16G01M13/028
    • A condition monitoring system receives vibration data from one or more sensors that are attached to a machine having cyclical components, such as a gearbox. Samples (431, 432, 433, 434 435, 436, 437, 438) of the vibration data are time stamped based on a cycle time of a component focused on. A number of segments (410, 412, 414) are created each with a time extension based on the cycle time of the component focused on. The samples are split into the segments (410, 412, 414) based on matching a sample's time stamp to be within a segment's time extension. For each segment, the samples of the segment are summed and divided by the number of samples split into the segment. This will allow a degree of speed fluctuation of a monitored machine. The results are presented as a cycle of the component focused on.
    • 状态监测系统从一个或多个传感器接收振动数据,该传感器附接到具有循环部件的机器,例如齿轮箱。 振动数据的样本(431,432,433,434 435,436,437,438)基于关注的组件的周期时间被加时间戳。 基于所关注的组件的周期时间,创建多个段(410,412,414),每个段具有时间延长。 基于将样本的时间戳匹配在段的时间延长内,样本被分割成段(410,412,414)。 对于每个段,将段的样本相加并除以被分割成段的样本数。 这将允许受监控机器的速度波动程度。 结果作为组件的周期呈现。
    • 3. 发明申请
    • WIRELESS SENSOR WITH ENERGY SCAVENGER
    • 无线传感器与能源扫帚
    • WO2011060798A1
    • 2011-05-26
    • PCT/EP2009/008220
    • 2009-11-18
    • AKTIEBOLAGET SKFWIT de, FrankTATAR, Florin
    • WIT de, FrankTATAR, Florin
    • B60C23/04H02J7/00
    • H02J7/32H02J7/345H02J9/005Y10T307/527
    • An apparatus (100) comprises a wireless sensor system (102) with electronic circuitry (104) and a power supply (106) for powering the electronic circuitry. The power supply comprises a primary cell (108) and an energy scavenger (110). The energy scavenger scavenges ambient energy and converts the scavenged ambient energy into electric energy. The sensor system is configured for having the primary cell power the electronic circuitry when the energy scavenger is inactive. The system is configured for performing at least one of having the energy scavenger power the electronic circuitry via the primary cell when the energy scavenger is active, using a capacitance of the primary cell as a buffer for the electric energy; and having the energy scavenger recharge the primary cell.
    • 装置(100)包括具有电子电路(104)的无线传感器系统(102)和用于为电子电路供电的电源(106)。 电源包括主电池(108)和能量清除器(110)。 能量清除剂清除环境能量,并将清除的环境能量转化为电能。 传感器系统被配置为当能量清除器不活动时使主电池供电电子电路。 该系统被配置为使用主电池的电容作为电能的缓冲器,当能量清除器处于活动状态时,执行至少一个能量清除器通过主电池供电电路; 并且能量清除剂对原细胞再充电。
    • 6. 发明申请
    • LOAD-MEASURING BEARING UNIT
    • 负载测量轴承单元
    • WO2010139457A1
    • 2010-12-09
    • PCT/EP2010/003333
    • 2010-06-02
    • SKF BVZAAIJER, ErikVISSERS, Cornelius, Petrus, Antonius
    • ZAAIJER, ErikVISSERS, Cornelius, Petrus, Antonius
    • F16C19/52F16C27/04G01L5/00
    • G01L5/0019F16C19/522F16C19/54G01L1/2231
    • A bearing unit (20) for measuring forces exerted on the bearing unit, comprising an inner member (3) concentrically arranged around an outer member (2), at least one rolling element bearing (4, 5) and at least one load measuring device (8, 9) with a cylindrical bore. The load measuring device (8, 9) is mounted to one of the members (3) and supports the rolling element bearing (4, 5) relatively to this member (3). The rolling element bearing (4, 5) is mounted to the other of the members (2) and supports this member (2) relatively to the load measuring device (8, 9). Thus, a force acting on the bearing unit is transferred from one of the inner and outer members (2, 3) to the other of the inner and outer members (2, 3) via the at least one load measuring device (8, 9). According to the invention, the at least one load measuring device (8, 9) and the at least one rolling element bearing (4, 5) are arranged laterally to each other in a radial gap between the inner and outer members (2, 3).
    • 一种用于测量施加在所述轴承单元上的力的轴承单元(20),包括围绕外部构件(2)同心布置的内部构件(3),至少一个滚动元件轴承(4,5)和至少一个负载测量装置 (8,9)具有圆柱形孔。 负载测量装置(8,9)相对于该构件(3)安装到构件(3)中的一个并且支撑滚动体轴承(4,5)。 滚动体轴承(4,5)相对于负载测量装置(8,9)安装到另一个构件(2)并支撑该构件(2)。 因此,作用在轴承单元上的力经由至少一个负载测量装置(8,9)从内部件和外部构件(2,3)中的一个转移到内部和外部构件(2,3)中的另一个, )。 根据本发明,至少一个负载测量装置(8,9)和至少一个滚动元件轴承(4,5)在内部和外部构件(2,3)之间的径向间隙中彼此横向地布置 )。
    • 10. 发明申请
    • METHOD AND DEVICE OF A POSITION ENCODER
    • 位置编码器的方法和装置
    • WO2010072391A1
    • 2010-07-01
    • PCT/EP2009/009181
    • 2009-12-21
    • AB SKFDOORNENBAL, Jan, Jansen
    • DOORNENBAL, Jan, Jansen
    • G01D3/02G01D5/249
    • G01D5/2448
    • A device and a method of aligning a full or partial turn absolute rotary position encoder (310) with a predetermined desired rotary position of an axle (302). A trigger (335) is generated when the axle is in a predetermined triggering rotary position. The trigger initiates acquiring a position signal (315) from the absolute rotary position encoder (310). This acquired position signal is a base for determining a correction factor (355). The correction factor is then used to transform subsequent position signals (315) from the absolute rotary position encoder (310) into aligned position signals (365). The aligned position signals are equivalent to position signals the absolute rotary position encoder (310) would have generated had the absolute rotary position encoder been physically aligned with the predetermined desired rotational position on the motor axle (302).
    • 将全部或部分转动绝对旋转位置编码器(310)与轴(302)的预定期望旋转位置对准的装置和方法。 当轴处于预定的触发旋转位置时产生触发器(335)。 触发器从绝对旋转位置编码器(310)开始获取位置信号(315)。 该获取的位置信号是用于确定校正因子的基础(355)。 校正因子然后用于将来自绝对旋转位置编码器(310)的后续位置信号(315)转换成对准的位置信号(365)。 如果绝对旋转位置编码器与电动机轴(302)上的预定期望旋转位置物理对准,则对准位置信号等效于绝对旋转位置编码器(310)将产生的位置信号。