The invention relates to a lubricant or hydraulic pump for delivering oil or the like with a housing, an inlet provided on or in the housing, a drive element mounted rotatably in the housing, and at least one pump element, which interacts with the drive element for delivering oil or the like.
Such pumps are used for delivering lubricant to lubricating points of machines or for delivering a hydraulic fluid. For example, such pumps are used for presses, in particular, packing presses. The configuration of such pumps is complicated, in part, by many different components. This makes the production of such pumps more expensive. In addition, it is often not possible to quickly adapt the number of pump elements in use to the individual requirements of the application, so that the possible applications of known pumps are somewhat limited.
The task of the present invention is therefore to create a lubricant or hydraulic pump of the type named above, which can be produced in an especially economical way and which can have various uses.
In general, this invention is directed to a lubricant or hydraulic pump for delivering oil or the like. The pump comprises a housing formed from two housing shells which are of at least substantially similar or identical construction, an inlet provided on or in the housing, and a drive element rotatably mounted in the housing. The drive element comprises a swash plate. The pump also includes at least one pump element which interacts with the drive element for delivering oil or the like.
Other advantages and possible applications of the invention result from the following description of embodiments and the figures. In this case, all described and/or graphically illustrated characteristics form the object of the invention individually or in arbitrary combinations, namely regardless of their combination in the claims or their reference to other characteristics.
The lubricant and hydraulic pump shown in the figures has a housing 1 which is built from two housing shells 2 and 3. The two housing shells 2 and 3 are structurally identical or similar at least before assembly of the housing and have several openings closed by predetermined breakage points comprising break-away portions 2a, 3a of the housing shells configured to be broken away from respective shells to form openings 4 for installation of one or more pump elements, drive or driven shafts, and/or inlets or outlets, as described below. As illustrated in
Thus, as is visible, in particular, from
The two housing shells 2 and 3 are joined to each other in a mirror-image arrangement and are connected to each other by a screw attachment 8. Sealing rings 9 are provided between the two housing shells 2, 3 in order to seal the housing 1.
As is visible from
On the drive shaft 10, a drive pinion 16 is arranged by means of a securing ring 14 and a sleeve 15. The drive pinion 16 engages with teeth provided on the outer periphery of a swash plate 17, which is supported rotatably on a shaft 18 in the housing 1. The drive pinion 16 and the swash plate 17 thus form an input gear unit of the pump.
The swash plate 17 has two tracks 19 concentric with the shaft 18 as a rotary-linear conversion gear unit, and these tracks have a height that varies in the peripheral direction. The pump element 5 is in contact with the inner of the two tracks 19, as is visible from
For receiving the force, which is exerted by at least one pump element 5 on the tracks 19 of the swash plate 17 and which acts in the axial direction of the shaft 18, a sliding plate 20 is arranged between the swash plate 17 and the housing 1.
In the shown embodiment, only a single pump element 5 is illustrated. However, after opening the predetermined breakage points, additional pump elements 5 can also be inserted into other openings 4.
As emerges, in particular, from the sectional view of
It will be observed from the foregoing that a lubricant or hydraulic pump of this invention can be produced in an economical way and can have various uses. These advantages are achieved according to the invention essentially in that the housing is formed from two housing shells, which are of at least substantially similar construction and in which the drive element that is formed, for example, as a swash plate is arranged in such a way that one or more pump elements can be driven for delivering, for example, oil or the like. Through the use of structurally identical housing shells, the number of components to be maintained in the design of such a pump is significantly reduced. In this way, the costs for the production of a pump can be reduced.
If the housing shells are also constructed in such a way that a varying large number of pump elements can be provided, then the number of possible uses for the pump is increased.
In a refinement of the concept of the invention, it is provided that the housing is formed from two housing shells, which are, in particular, screwed to each other and which are identical at least before assembly of the housing. The two housing shells, which can be fixed to each other, in particular, in a mirror-image arrangement, can be produced especially economically by the large number of pieces. If necessary, for preparation or during assembly of the housing, one or two housing shells can be adapted individually to the conditions of use.
According to a preferred embodiment, the housing shells of the lubricant or hydraulic pump according to the invention each have several openings that are closed by means of predetermined breakage points before the assembly of the housing for installation of pump elements, drive or driven shafts, and/or inlets or outlets, and/or ventilation openings. Through the shaping of the housing shells with openings closed by means of predetermined breakage points, the housing shells can be completely closed, for example, before the assembly of the housing. In this case, during the assembly of the housing, only the openings required, for example, for inlets or outlets, shaft or pump elements, are opened at the predetermined breakage points. The other openings can remain closed, without having to provide separate closure plugs or the like. This simplifies the construction of the pump. However, it is also possible, for a change in the conditions of use, to reclose individual openings by means of plugs or the like or to open up new openings at the predetermined breakage points. The pump thus can have various uses.
It has proven especially advantageous if the housing shells have several openings for installation of pump elements. Thus, for example, four, six, eight, ten, twelve, or more openings that are advantageously closed by means of predetermined breakage points before assembly of the housing can be provided for the pump elements. Thus, the position of a pump element on the housing can be adapted to the conditions of use and the number of pump elements can also be varied. The housing shells can be used for a plurality of various pumps and can be produced especially economically in this way.
In particular, it is preferred if the openings in the housing shells, which are provided for the installation of pump elements, lie on at least one and, preferably, two paths concentric with the axis of the drive element. For such a construction of the housing shells, the driven element, which is constructed advantageously as a swash plate, can have at least one, in particular, two tracks arranged concentric with the axis of the drive element, with which tracks the at least one pump element interacts for delivering oil or the like. Thus, each pump element is moved back and forth at least once for one revolution of the drive element as a function of the shape of the tracks.
An especially economical and cost-effective production of the housing shells can be achieved in that these are formed as plastic injection-molded parts. Here, it is especially preferred if the housing shells can be easily removed from the die inserts of the injection-molding die. To allow this, the housing shells are formed, in particular, free from undercuts.
Within the lubricant and hydraulic pump according to the invention, an up-conversion gear unit or a down-conversion gear unit can be provided as a function of the conditions of use. Thus, on its outer peripheral surface, the drive element advantageously has teeth that engage with teeth of a drive pinion fixed on the drive shaft, so that an input gear unit is formed.
According to another embodiment of the invention, the drive element is arranged on a shaft with a free shaft end projecting out from the housing. The extension of the shaft of the drive element allows another pump, for example, a grease pump, to be driven with the free end of the shaft. Thus, several pumps can be connected in series.
Refinements, advantages, and possible applications of the invention emerge from the above description and the drawing. Here, all of the described and/or graphically illustrated features for themselves or in any combination form the subject matter of the invention, independent of their summarization in the claims or their relationship.
Number | Date | Country | Kind |
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20 2006 005 682 U | Apr 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2007/002299 | 3/15/2007 | WO | 00 | 3/17/2010 |
Publishing Document | Publishing Date | Country | Kind |
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WO2007/112837 | 10/11/2007 | WO | A |
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20100166581 A1 | Jul 2010 | US |