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    • 1. 发明公开
    • DÄMPFEREINRICHTUNG UND VERFAHREN ZUR STEUERUNG
    • 阻尼装置和控制方法
    • EP3298300A1
    • 2018-03-28
    • EP16727965.2
    • 2016-05-18
    • Inventus Engineering GmbH
    • MAYER, MarkusPÖSEL, JürgenELSENSOHN, GernotBATTLOGG, Stefan
    • F16F15/00
    • F16F15/002F16F9/3292F16F9/535
    • A damper device (100) and method for controlling the damping of a relative movement of two connection units (101, 102) that can move relative to one another, a controllable damper (1) comprising a damping valve (8) with a magnetorheological fluid being provided between the connection units in order to damp the relative movement. A magnetic field generation device (11) is associated with the damping valve (8) in order to generate and control a magnetic field. Measurement data records (90, 91) relating to a relative movement of the connection units (101, 102) to one another are detected and processed using a filter device (80). A data record (92, 93) derived from the detected measurement data record (90, 91) is stored in a memory device (45). The derived data record (92, 93) comprises a speed signal (28) and an acceleration signal (29) for the relative movement of the connection units (101, 102). The stored data record (92, 93) is analyzed and a filter parameter record (82, 83) is determined in accordance with the result of the analysis. For low-value speed signals (28) and acceleration signals (29), the control device (46) selects a filter parameter record with a higher degree of filtering and for higher-value speed signals (28) or acceleration signals (29) a filter parameter record with a lower degree of filtering. The filter parameter record (82, 83) is used to derive a control data record (94, 95) from the measurement data record (90, 91). The control data record (94, 95) is used to control the damper device (100).
    • 7. 发明公开
    • MAGNETORHEOLOGISCHE ÜBERTRAGUNGSVORRICHTUNG
    • 磁流变传动装置
    • EP2893213A2
    • 2015-07-15
    • EP13774061.9
    • 2013-09-04
    • Inventus Engineering GmbH
    • BATTLOGG, StefanELSENSOHN, Gernot
    • F16F9/53F16D37/02F16F9/10H01F1/44F16F9/36
    • F16F9/535F16D37/02F16F9/103F16F9/368H01F1/44
    • Transmission apparatus comprising at least two couplable components, which move in translatory fashion in relation to one another, wherein a coupling gap extends between a first and a second end between the components. The coupling gap is provided with a magnetorheological medium. A magnetic field generation device for generating at least one magnetic field in at least part of the coupling gap is provided in order to influence coupling between the couplable components. The coupling gap is configured and sealed off from the outside in the translatory direction at the first end and at the second end in such a way that the magnetorheological medium remains in the coupling gap as a type of controllable friction lining independently of a coupling between the couplable components in order to influence the coupling via shear forces between the couplable components corresponding to the magnetic field present in the coupling gap. A plurality of radially extending arms on one of the components is provided, which arms are each equipped with a magnetic field generation device. Each magnetic field generation device comprises an electrical coil having at least one winding. The winding extends in each case completely next to the central axis and spaced apart from the central axis. Different poles of the magnetic field generation devices are provided at the adjacent ends of adjacent arms of a component. The coupling gap is connected to a reservoir for magnetorheological medium.