Auxiliary drive device

10340769 ยท 2019-07-02

Assignee

Inventors

Cpc classification

International classification

Abstract

The invention relates to an auxiliary drive device (1) comprising an electric motor (10, 11); and a mechanical clutch, wherein the electric motor (10, 11) and the mechanical clutch have the same axis of rotation (R), the mechanical clutch is designed as a fluid-friction clutch (20), and the electric motor (10, 11) and the fluid-friction clutch (20) are mechanically connected to one another.

Claims

1. An auxiliary drive device comprising an electric motor having a rotor, which is rotatable about an axis, and a stator that is received within the rotor; and a viscous clutch having a housing, a clutch disk and a reservoir, the housing being coupled to the rotor for common rotation about the axis, the clutch disk being received in the housing and being rotatable about the axis relative to the housing, the housing and the clutch disk forming a working chamber, the reservoir being coupled in fluid communication to the working chamber.

2. The auxiliary drive of claim 1, wherein the fluid-friction clutch includes a bidirectionally functioning drainage pump that fluidly couples a radially outward end of the working chamber to the reservoir.

3. The auxiliary drive of claim 2, wherein the drainage pump includes two drainage pumping elements that are incorporated into the housing opposite one another, the drainage pumping elements being coupled to the housing and being in fluidic connection with assigned drainage pump channels, the drainage pump channels extending toward the reservoir.

Description

(1) Additional details, features, and advantages of the present invention arise from the subsequent description of an embodiment with reference to the drawings:

(2) FIG. 1 shows a schematically slightly simplified sectional view of an auxiliary drive device according to the invention, and

(3) FIGS. 2, 3 show in conjunction the depiction of a bidirectionally functioning drainage pump device in a top view and in a perspective view.

(4) FIG. 1 clarifies an auxiliary drive device 1 according to the invention which comprises an axis of rotation R.

(5) Auxiliary drive device 1 further has a fluid-friction clutch 20 which comprises a housing, which is usually composed from a housing cover 2 and a housing body 3.

(6) A clutch disk 4 is arranged in housing 2, 3 and is fixed on an end of a shaft 6 which is mounted centrally in housing 2, 3 via bearing 15, 16.

(7) Furthermore, fluid-friction clutch 20 of auxiliary drive device 1 according to the invention has a working chamber 8 between housing 2 and 3 and clutch disk 4.

(8) Working chamber 8 has, as per usual, working gaps which enable, on the basis of a shear effect, a transmission of torque to clutch fluid supplied to working chamber 8.

(9) Furthermore, a reservoir chamber 9 is provided for the clutch fluid and is connected to working chamber 8 via a feed channel and thereby forms the flow line.

(10) The particularly preferred embodiment of auxiliary drive device 1 according to the invention depicted in FIG. 1 further has a valve mechanism 5 which is connected to an armature 14 via a tappet 7 arranged in the center of housing 2, 3.

(11) As further components, auxiliary drive device 1 according to the invention has an electric motor, which has the same axis of rotation R as fluid-friction clutch 20 or is arranged concentrically like fluid-friction clutch 20 around drive shaft 6.

(12) This electric motor comprises a rotor 11 which is connected rotationally fixed to housing part 3 and thus has a mechanical connection to the secondary side of fluid-friction clutch 20. The electric motor has, in addition to rotor 11, a stator 10 arranged within rotor 11 and a coil 12.

(13) Using this arrangement, an extremely compact structure, as already explained in the beginning, is to be realized, and it is additionally possible to operate the electric motor and fluid-friction clutch 20 respectively alone or also to carry out a combined operating method, in particular, if large losses are to be expected in fluid-friction clutch 20.

(14) Auxiliary drive device 1 according to the invention may interact with a plurality of functional elements, such as, in particular, fan wheels or pump wheels. Furthermore, auxiliary drive device 1 or fluid-friction clutch 20 thereof may interact via a suitable connection, such as, for example, a belt drive, with a drive motor, in particular, an internal combustion engine in a motor vehicle, not shown in more detail in FIG. 1.

(15) As a special feature, auxiliary drive device 1 according to the invention furthermore has a bidirectionally functional drainage pump device 13. This drainage pump device 13 is designed to be bidirectional as, in certain operating states, the electric motor may drive fluid-friction clutch 20, which is normally reversed as the secondary rotational speed is lower than the primary rotational speed which, as previously explained, may, however, also be reversed in auxiliary drive device 1 according to the invention.

(16) Correspondingly, drainage pump device 13 has the components visible in FIGS. 2 and 3. In this case, this includes two drainage pumping elements 17, 18, which are visible in FIG. 2 and integrated into housing part 2 and connected rotationally fixed with the same. As FIG. 2 clarifies, drainage pumping elements 17 and 18 hereby contact one another back to back and interact with two drainage openings 19 and 23 which, as clarified in FIG. 3, are in fluidic connection with drainage pump channels 21 and 22, which in turn may lead to reservoir chamber 9 and may drain clutch fluid into the same.

(17) In addition to the previous written disclosure of the invention, reference is explicitly made here to the graphic depiction of the invention in FIGS. 1 through 3 as supplemental to this disclosure.

LIST OF REFERENCE NUMERALS

(18) 1 Auxiliary drive device 2, 3 Housing/housing components 4 Clutch disk 5 Valve mechanism 6 Drive shaft 7 Tappet 8 Working chamber 9 Reservoir chamber (arranged radially inward, thus closer to axis of rotation R than the working chamber 8) 10 Stator 11 Rotor 12 Coil 13 Drainage pump device 14 Armature 15, 16 Bearing 17, 18 Drainage pumping elements 19, 23 Drainage openings 20 Fluid-friction clutch 21, 22 Drainage channels