The present invention generally relates to embodiments of a compressor for generating compressed air in a vehicle, including as per the preamble of claim 1. The compressor can be separated from or connected to a drive by means of a clutch device, for example a shut-off clutch.
A generic compressor is known for example from DE 20 2006 019 190 U1.
The use of the known shut-off clutch on compressors has the advantage that the compressor can be separated from a drive, for example the drive engine of the vehicle, in order to save energy when no compressed air generation is required. Without such a shut-off clutch, it has hitherto been conventional for the compressor to always be driven along by the drive engine and to merely be switched into a pneumatically neutral state in phases in which no compressed air generation was required.
In the case of known compressors, it was necessary for these to be structurally adapted to the clutch device such that the compressor and clutch device form a unit. An adaptation of the structure of the compressor however requires in each case a relatively expensive and complex change of the production facilities, in particular of the casting moulds.
Therefore, it is an object of the invention to improve the interface between the compressor and the clutch device such that the adaptation expenditure is reduced.
This object can be achieved by means of the inventive embodiments recited in the independent claims. The dependent claims recite further advantageous features.
The inventive embodiments have the advantage of specifying a modular concept for the compressor and the clutch device. The compressor may be used and sold both without and with a clutch device. The clutch device may be connected to the compressor as a separate auxiliary module. In this way, compressors can be produced with a uniform housing for applications both with and without a clutch device, which leads to a rationalization in terms of production.
According to an embodiment of the present invention, an annular, pot-shaped receiving element is provided, which can be produced and provided as a separate component. The pot-shaped receiving element is adapted in terms of its shape to the interface region of the compressor and can be mounted thereon in a simple manner. Through the use of different pot-shaped receiving elements as adapters, it is possible for different combinations of compressors and clutch devices to be connected to one another. The relatively complex adaptation of the compressor housing or of parts of the clutch device is thereby made superfluous.
Furthermore, the pot-shaped receiving element can be of cylinder-shaped design. The pot-shaped receiving element is designed for receiving a piston, which can be acted on with pressure medium, for actuating the clutch device. As pressure medium, consideration is given for example to compressed air or pressurized oil. In this way, the pot-shaped receiving element serves additionally for the integration of the piston required for the actuation of the clutch. It is advantageously possible for an actuating piston pre-mounted in the receiving element to be arranged as a structural unit on the compressor. In this way, the clutch device can be arranged on the compressor in an easy-to-assemble manner. Furthermore, use may be made of a structural unit, which has been checked for functionality in advance, composed of pot-shaped receiving element and actuating piston, which reduces the testing expenditure for the finished compressor-clutch unit.
In one advantageous embodiment of the invention, the pot-shaped receiving element can be fixed in a depression of the compressor housing by means of a corrugated locking ring. The use of a corrugated locking ring permits not only secure fastening but at the same time also play-free mounting of the pot-shaped receiving element. As a result of the corrugated contour of the locking ring, a certain preload is imparted to the pot-shaped receiving element, such that the latter is held in a play-free manner.
In another embodiment of the invention, the clutch device can be fastened on the crankshaft by means of a collar nut. It is advantageously possible here for a relatively flat collar nut to be used. Simple and simultaneously space-saving mounting of the clutch device on the crankshaft is possible in this way.
Further embodiments of the invention will be explained in more detail below with reference to the drawings, with further advantages being specified.
The invention will be explained in more detail below on the basis of exemplary embodiments, with reference to drawings, in which:
In the figures, the same reference numerals are used for corresponding elements.
The compressor 1 has a first cylinder 8 and a second cylinder 9. A first piston 6 is arranged in the first cylinder 8. A second piston 7 is arranged in the second cylinder 9. The first piston 6 is connected to the crankshaft 12 via a first connecting rod 10 and corresponding bearings. The second piston 7 is connected to the crankshaft 12 via a second connecting rod 11 and likewise via corresponding bearings. The mounting of the pistons 6, 7 and of the crankshaft 12 in the corresponding bearing eyes of the connecting rods 10, 11 is illustrated merely schematically in
Arranged on the cylinder housing 4 is a valve and control block 5, which comprises for example the inlet and outlet valves for the compressed-air induction and for the compressed-air discharge to downstream units such as for example compressed-air storage reservoirs. The valve block 5 may be designed, in terms of detail, for example as per DE 197 451 18 A1.
For lubrication of the pistons 6, 7 in the respective cylinders 8, 9, the compressor 1 has a lubricant supply. As lubricant, use is made for example of oil, for example the engine oil of the vehicle engine. The lubricant supply of the compressor 1 has a lubricant port 14 for connecting to the engine oil supply of the vehicle engine. From the lubricant port 14, a first lubricant duct 15 leads through the housing 2 to a lubricant supply groove 16, which runs around the crankshaft 12. The lubricant supply groove 16 is connected to a lubricant supply duct section 13, which runs in the form of a hollow duct within the crankshaft 12. The duct section 13 is connected to outlet points for the lubricant in the region of the connecting rods 10, 11. The use of the encircling lubricant supply groove 16 has the advantage that the lubricant can disperse over the circumference of the crankshaft 12 and thereby be introduced relatively quickly and uniformly into the lubricant duct section 13.
The lubricant is conventionally pressurized and is at a pressure of approximately 3 to 4 bar. In this way, a supply of lubricant is possible independently of the movement of the compressor, that is to say even when the compressor is stationary.
As can also be seen from
The region 20 bordered by a dashed line in
The pot-shaped receiving element 22 simultaneously serves as a cylinder for a compressed-air-actuable piston 19. The compressed-air-actuable piston 19 is sealed off with respect to the pot-shaped receiving element 22 by means of seals 35, 36 at the inside and at the outside. Also situated on the outside of the piston 19 is a guide belt 37. The piston 19 serves for actuating the clutch device 3. When subjected to compressed air loading, the piston 19 is deployed to the right in the illustration of
As can also be seen from
The clutch device 3 is fastened on the crankshaft 12 by means of the collar nut 29.
As is evident from the above explanations, the pot-shaped receiving element 22 constitutes a significant improvement in the region of the interface between a compressor and a clutch device. The pot-shaped receiving element is, so to speak, a multifunctional part which integrates a multiplicity of structural improvements together in the interface region 40. The pot-shaped receiving element may advantageously be produced relatively cheaply as a metal deep-drawn part. The inventive embodiments can be realized cheaply in this way.
Number | Date | Country | Kind |
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10 2009 020 070.3 | May 2009 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2010/000227 | 1/16/2010 | WO | 00 | 11/7/2011 |