This application is a national phase application based on PCT/US13/47238 filed Jun. 24, 2013, which claims priority from European Application No. 12004767.5, filed Jun. 26, 2012, the content of all of which is incorporated herein by reference in their entirety.
The present invention relates to viscous clutch fan drives and more particularly to systems for increasing the efficiency of such fan drives.
Such a fluid friction clutch is known from EP 1 731 787 B1, the disclosure of which is hereby made through explicit reference to the disclosure of the present application.
The object of the present invention is to create a fluid friction clutch of the type which affords a simple way of increasing the clutch efficiency.
The invention includes the provision of a rotatably supported supply pump element, which defines a shear gap with the housing, and using a differential speed between the pump element and the housing or the secondary side of the fluid friction clutch, and producing a volumetric flow from the storage chamber into the working chamber that varies as a function of the differential speed.
One of the particular advantages of the fluid friction clutch according to the invention firstly lies in the fact that only a small quantity of clutch fluid is required, since, owing to the arrangement previously explained, an active feed pump is formed in the oil reservoir, which is advantageous with regard to the quantity of clutch fluid compared to the known reliance on centrifugal forces for filling the working chamber.
The fluid friction clutch according to the invention moreover has a faster response characteristic due to the smaller proportion of clutch fluid.
Furthermore, an extremely compact construction results, since the outside diameter of the storage chamber or the reservoir can be made larger than the inside diameter of the working chamber.
To sum up, therefore, it can be established that an outstanding clutch performance can be achieved owing to the fact that the supply pump element rotates at primary speed (speed of the shaft) and skims off clutch fluid opposite the housing.
The dependent claims contain advantageous developments of the invention.
The clutch performance can be further improved by providing a return pump, which rotates at secondary or primary speed and skims off clutch fluid owing to its arrangement between the clutch disk and the housing.
Further details, advantages and features of the present invention are set forth in the following description of exemplary embodiments, referring to the drawing, in which:
A clutch disk 4, which is rotatable relative to the housing 2, 3, is arranged in the housing 2, 3. The clutch disk 4, rotatable relative to the housing 2, 3, is here arranged, rotationally fixed, at one end 5 of a shaft 6 centrally supported inside the housing 2, 3. A drivable operative element 7, represented in slightly simplified schematic form, which may be embodied as a fan wheel, for example, is fixed to the housing 2, 3.
A working chamber 9, which, as can be seen from
A storage chamber 10 is provided for said clutch fluid, a feed duct 11a, 11b leading from the storage chamber 10 to the working chamber 9 and thereby forming the supply feed.
According to the invention, a return pumping system or a return pump 16 is furthermore provided, which serves for returning the clutch fluid from the working chamber 9 to the storage chamber 10. This return pump is formed either by the resulting centrifugal force, which pumps out fluid to the storage chamber 10 in order to evacuate the working chamber 9, or alternatively by the possible provision of a separate component in the form of an active return pump, as is indicated schematically in the hydraulics diagram in
The fluid friction clutch 1 further comprises a stationary clutch part 13, which is rotatable relative to the housing 2, 3 and is preferably embodied as a magnet, in particular a solenoid.
As is apparent from the representation in
A return flow barrier 19 is furthermore provided, which is arranged between the valve 17 and the reservoir 18. This return flow barrier 19 may be a small tube, for example, which projects above the fluid level into the reservoir 18.
As can also be seen from
The valve 17, preferably embodied as a multiway valve, comprises a valve element 24, which has a passage 25 and a fluid inlet recess 26 for introducing fluid into the working chamber 9, which can be seen in particular from
An actuator 27 is furthermore provided for actuating the valve 17 and the return valve 20. The actuator 27 preferably comprises an armature 28, rotatable relative to the shaft 26 and a flux ring 29, which is rotatable with the shaft 6 and which can be excited by the stationary clutch part in the form of the magnet 13 (see
The actuator 27 may also be moved by a bimetal strip (not shown) instead of the armature and the magnet.
In an especially preferred embodiment, the storage chamber 10 is provided on the secondary side of the fluid friction clutch 1 and the internal chamber 18 on the primary side of the fluid friction clutch 1.
Finally, in an alternative embodiment according to
In addition to the written disclosure of the invention above, explicit reference is hereby made to the graphic representation of the invention in
While preferred embodiments of the present invention have been shown and described herein, numerous variations and alternative embodiments will occur to those skilled in the art. Accordingly, it is intended that the invention is not limited to the preferred embodiments described herein but instead limited to the terms of the appended claims.
Number | Date | Country | Kind |
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12004767 | Jun 2012 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/US2013/047238 | 6/24/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2014/004338 | 1/3/2014 | WO | A |
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Number | Date | Country | |
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20150144452 A1 | May 2015 | US |