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    • 2. 发明申请
    • INSTRUMENTED BEARING
    • 仪表轴承
    • US20140010488A1
    • 2014-01-09
    • US13934559
    • 2013-07-03
    • Francois NiarfeixAlexandre Taillepied
    • Francois NiarfeixAlexandre Taillepied
    • F16C41/00
    • F16C41/007F16C19/06F16C33/78F16C2226/74F16C2300/02G01P3/443
    • This instrumented bearing comprises a bearing and a sensor unit for sensing the angular position of the rotatable ring with respect to the fixed ring of the bearing, an encoder element which is fastened to the rotatable ring, and a sensing element fastened to the fixed ring, adapted to sense a parameter representative of the rotation speed of the rotatable ring. The sensing element is mounted in a casing fastened with the fixed ring. The casing provides a peripheral wall mounted on the fixed ring and which includes at least one snap portion adapted to be received in a recess of a surface of the fixed ring, and at least one axial blocking portion adapted to abut against a lateral surface of the fixed ring, perpendicular to the rotation axis of the instrumented bearing. Each snap portion and each blocking portion alternate around a central axis (X6).
    • 该仪表轴承包括轴承和用于感测可旋转环相对于轴承的固定环的角位置的传感器单元,固定到可旋转环的编码器元件和固定到固定环的感测元件, 适于感测表示可旋转环的转速的参数。 感测元件安装在与固定环紧固的壳体中。 壳体提供安装在固定环上的周壁,其包括适于容纳在固定环的表面的凹部中的至少一个卡扣部分,以及至少一个轴向阻挡部分,其适于抵靠固定环的侧表面 固定环,垂直于仪表轴承的旋转轴。 每个卡扣部分和每个阻挡部分围绕中心轴线(X6)交替。
    • 3. 发明授权
    • Instrumented bearing
    • 仪表轴承
    • US08950944B2
    • 2015-02-10
    • US13934559
    • 2013-07-03
    • Francois NiarfeixAlexandre Taillepied
    • Francois NiarfeixAlexandre Taillepied
    • F16C41/00G01P3/44
    • F16C41/007F16C19/06F16C33/78F16C2226/74F16C2300/02G01P3/443
    • This instrumented bearing comprises a bearing and a sensor unit for sensing the angular position of the rotatable ring with respect to the fixed ring of the bearing, an encoder element which is fastened to the rotatable ring, and a sensing element fastened to the fixed ring, adapted to sense a parameter representative of the rotation speed of the rotatable ring. The sensing element is mounted in a casing fastened with the fixed ring. The casing provides a peripheral wall mounted on the fixed ring and which includes at least one snap portion adapted to be received in a recess of a surface of the fixed ring, and at least one axial blocking portion adapted to abut against a lateral surface of the fixed ring, perpendicular to the rotation axis of the instrumented bearing. Each snap portion and each blocking portion alternate around a central axis (X6).
    • 该仪表轴承包括轴承和用于感测可旋转环相对于轴承的固定环的角位置的传感器单元,固定到可旋转环的编码器元件和固定到固定环的感测元件, 适于感测表示可旋转环的转速的参数。 感测元件安装在与固定环紧固的壳体中。 壳体提供安装在固定环上的周壁,其包括适于容纳在固定环的表面的凹部中的至少一个卡扣部分,以及至少一个轴向阻挡部分,其适于抵靠固定环的侧表面 固定环,垂直于仪表轴承的旋转轴。 每个卡扣部分和每个阻挡部分围绕中心轴线(X6)交替。
    • 7. 发明申请
    • SELF ADJUSTING INSTRUMENTED BEARING AND MECHANICAL SYSTEM EQUIPPED WITH SUCH A BEARING
    • 自动调节装有轴承的机械系统和配备这种轴承的机械系统
    • US20160319863A1
    • 2016-11-03
    • US15138496
    • 2016-04-26
    • Francois Niarfeix
    • Francois Niarfeix
    • F16C23/08F16C19/18
    • F16C23/082F16C19/18F16C19/183F16C19/38F16C23/086F16C41/007
    • The present invention relates to a self adjusting instrumented rolling bearing having an outer ring and an inner ring delimiting a rolling chamber and at least one row of rolling elements disposed therein, and a detection device including a sensor integral with the outer ring and a target integral with the inner ring, configured to detect a relative rotation between the outer ring and the inner ring around a central axis. The outer ring has an inner surface in the form of a spherical portion centered about a tilting center of the bearing and forming a rolling surface for the rolling elements. The radius of the inner surface of the outer ring is greater than a distance defined between the tilting center of the bearing and a specific position of the target that is the farthest from the tilting center.
    • 本发明涉及一种自调节装置的滚动轴承,其具有外圈和限定滚动室的内圈和设置在其中的至少一排滚动元件,以及检测装置,其包括与外圈一体的传感器和目标积分 所述内圈配置成检测围绕中心轴线的所述外环和所述内环之间的相对旋转。 外圈具有以轴承中心为中心的球形形状的内表面,并且形成用于滚动元件的滚动表面。 外圈的内表面的半径大于在轴承的倾斜中心和距倾斜中心最远的目标的特定位置之间限定的距离。