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    • 1. 发明授权
    • Contactless measurement of the stress of rotating parts
    • 非接触式测量旋转部件的应力
    • US07043999B2
    • 2006-05-16
    • US10486590
    • 2002-08-09
    • Josef BernhardJoachim HeringRainer WanschSven GempperWolfram Strauss
    • Josef BernhardJoachim HeringRainer WanschSven GempperWolfram Strauss
    • G01N29/04
    • G01L5/0009G01L3/10
    • The invention relates to a method for measuring mechanical stresses of a rotating part (1) in an essentially closed metal housing. The rotating part comprises a sensor (2) which reflects electromagnetic waves and which can be measurably deformed as a result of a mechanical stress exerted on said rotating part (1) The two antennas (A1, A2) receiving the reflected signals of the sensor (2) are arranged in the bearing housing (10) in such a way that they cannot rotate in relation to the sensor and are distanced (α). Said antennas emit receiving signals (a1,a2) which are sent to an electronic evaluation system (20,21) which measures the mechanical stresses of the rotating part (1) on the basis of both receiving signals (a1,a2).
    • 本发明涉及一种用于测量基本上封闭的金属外壳中的旋转部件(1)的机械应力的方法。 旋转部件包括反射电磁波的传感器(2),并且由于施加在所述旋转部件(1)上的机械应力而可测量地变形。两个天线(A 1,A 2)接收 传感器(2)以这样的方式布置在轴承壳体(10)中,使得它们不能相对于传感器旋转并且是距离(α)。 所述天线发射接收信号(a 1,a 2),其发送到电子评估系统(20,21),该电子评估系统基于两个接收信号(a 1,a 2)测量旋转部分(1)的机械应力 )。
    • 5. 发明授权
    • Method and computer programme for detecting the stationary state of a roller bearing and a roller bearing which may be analyzed thus
    • 用于检测滚动轴承和滚子轴承的静止状态的方法和计算机程序,可以由此分析
    • US07860689B2
    • 2010-12-28
    • US11572857
    • 2005-07-26
    • Alfred PecherSven Gempper
    • Alfred PecherSven Gempper
    • H03F1/26H04B15/00
    • G01P13/00
    • The invention relates to a method and a computer programme for detecting the stationary state of a roller bearing, comprising z rolling bodies, where z is a whole number, preferably an even number, to which a sensor arrangement is fixed, delivering a sinusoidal signal, dependent on the rotational position of the bearing on the rotation of the roller bearing. Said sinusoidal signal is sampled, whereupon sampled values are determined. According to the invention, a first average value (MW1) of the sampled values of a first time interval (J1) is determined (S120), whereupon the corresponding average value (MW2, MW3) of other time intervals (J2, J3) is determined (S132). The roller bearing is considered stationary as long as A) the corresponding average value (MW2, MW3) of the other time intervals (J2, J3) does not differ (S134) significantly from the first average value (MW1) and/or B) the gradient between the first average value (MW1) and the corresponding average value (MW2, MW3) of the other time intervals does not differ significantly from 0 (S335). The invention further relates to a roller bearing, provided with an analytical device for carrying out the inventive method or the computer programme.
    • 本发明涉及一种用于检测滚动轴承的静止状态的方法和计算机程序,其包括z个滚动体,其中z是固定传感器装置的整数,优选为偶数,传递正弦信号, 取决于轴承在滚动轴承旋转时的旋转位置。 对所述正弦信号进行采样,由此确定采样值。 根据本发明,确定第一时间间隔(J1)的采样值的第一平均值(MW1)(S120),于是其他时间间隔(J2,J3)的相应平均值(MW2,MW3)为 确定(S132)。 只要A)其他时间间隔(J2,J3)的相应平均值(MW2,MW3)与第一平均值(MW1)和/或B)显着不相同(S134),滚子轴承被认为是静止的 第一平均值(MW1)与其他时间间隔的对应平均值(MW2,MW3)之间的梯度与0没有显着差异(S335)。 本发明还涉及一种具有用于实施本发明的方法或计算机程序的分析装置的滚子轴承。
    • 6. 发明申请
    • Method and Computer Programme for Detecting the Stationary State of a Roller Bearing and a Roller Bearing Which May be Analyzed Thus
    • 用于检测滚动轴承的静止状态的方法和计算机程序以及可能被分析的滚子轴承
    • US20080317396A1
    • 2008-12-25
    • US11572857
    • 2005-07-26
    • Alfred PecherSven Gempper
    • Alfred PecherSven Gempper
    • F16C32/04G01B1/00
    • G01P13/00
    • The invention relates to a method and a computer programme for detecting the stationary state of a roller bearing, comprising z rolling bodies, where z is a whole number, preferably an even number, to which a sensor arrangement is fixed, delivering a sinusoidal signal, dependent on the rotational position of the bearing on the rotation of the roller bearing. Said sinusoidal signal is sampled, whereupon sampled values are determined. According to the invention, a first average value (MW1) of the sampled values of a first time interval (J1) is determined (S120), whereupon the corresponding average value (MW2, MW3) of other time intervals (J2, J3) is determined (S132). The roller bearing is considered stationary as long as A) the corresponding average value (MW2, MW3) of the other time intervals (J2, J3) does not differ (S134) significantly from the first average value (MW1) and/or B) the gradient between the first average value (MW1) and the corresponding average value (MW2, MW3) of the other time intervals does not differ significantly from 0 (S335). The invention further relates to a roller bearing, provided with an analytical device for carrying out the inventive method or the computer programme.
    • 本发明涉及一种用于检测滚动轴承的静止状态的方法和计算机程序,其包括z个滚动体,其中z是固定传感器装置的整数,优选为偶数,传递正弦信号, 取决于轴承在滚动轴承旋转时的旋转位置。 对所述正弦信号进行采样,由此确定采样值。 根据本发明,确定第一时间间隔(J1)的采样值的第一平均值(MW1)(S120),于是其他时间间隔(J2,J3)的相应平均值(MW2,MW3)为 确定(S132)。 只要A)其他时间间隔(J2,J3)的相应平均值(MW2,MW3)与第一平均值(MW1)和/或B)显着不相同(S134),滚子轴承被认为是静止的 第一平均值(MW1)与其他时间间隔的对应平均值(MW2,MW3)之间的梯度与0没有显着差异(S335)。 本发明还涉及一种具有用于实施本发明的方法或计算机程序的分析装置的滚子轴承。