Connection Assembly with Feed Pump and Elastic Element
20190360484 ยท 2019-11-28
Inventors
Cpc classification
F04C2/344
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C15/0023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C15/0003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B23/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B23/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04C2/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A connection assembly for use in an axial piston machine has a feed pump and a main body. The main body is equipped with at least one fluid connection. The feed pump is configured as an internal gear pump or as a vane-type pump. A pump assembly defines a planar sealing surface which bears at least indirectly against the main body. The main body has a second recess in which the pump assembly is received at least in certain portions. A separate cover is provided which covers the second recess and the pump assembly in each case at least in certain portions. The cover bears against the main body. An elastic element is installed under preload between the cover and the receiving part such that a corresponding preload force is supported at least indirectly on the main body via the sealing surface.
Claims
1. A connection assembly for use in an axial piston machine, the connection assembly comprising: a feed pump configured as one of an internal gear pump and a vane-type pump; a main body equipped with at least one fluid connection; and a drive shaft received in the main body so as to be rotatable with respect to an axis of rotation, wherein: the feed pump has an inner part and an outer part, the inner part connected rotationally conjointly to the drive shaft, and the outer part annularly surrounding the inner part; a separate receiving part with a first recess is provided, and the outer part and the inner part are received in the first recess such that a pump assembly, comprising the inner part, the outer part and the receiving part, defines a planar sealing surface configured to bear at least indirectly against the main body; the main body has a second recess in which the pump assembly is received at least in certain portions; a separate cover is provided which is configured to cover the second recess and the pump assembly in each case at least in certain portions; said cover bears against the main body; and an elastic element is installed under preload between the cover and the receiving part such that a corresponding preload force is supported at least indirectly on the main body via the sealing surface.
2. The connection assembly according to claim 1, wherein the elastic element is a separate component.
3. The connection assembly according to claim 2, wherein the elastic element is a single piece.
4. The connection assembly according to claim 1, wherein the elastic element annularly surrounds the axis of rotation.
5. The connection assembly according to claim 4, wherein the elastic element is an ondular washer.
6. The connection assembly according to claim 4, wherein the elastic element is discontinuous in a circumferential direction.
7. The connection assembly according to claim 4, wherein the elastic element is received in a groove, which runs in encircling fashion annularly around the axis of rotation, in the receiving part.
8. The connection assembly according to claim 7, wherein the depth of the groove measured in the direction of the axis of rotation is smaller than the corresponding height of the unbraced elastic element.
9. The connection assembly according to claim 1, wherein: the pump assembly bears, via a separate closure plate, against the main body; the closure plate has at least two apertures which open out in each case between the inner part and the outer part; the closure plate is connected rotationally conjointly to the main body; and at least one aperture of the at least two apertures is fluidically connected to an associated fluid connection.
10. The connection assembly according to claim 9, wherein an outer circumferential surface of the closure plate and an outer circumferential surface of the receiving part are formed in alignment with one another in the direction of the axis of rotation.
11. The connection assembly according to claim 9, wherein at least one aperture of the at least two apertures is assigned a third recess which is arranged on the base of the first recess.
12. A collection comprising: at least two connection assemblies, each connection assembly including: a feed pump configured as one of an internal gear pump and a vane-type pump; a main body equipped with at least one fluid connection; and a drive shaft received in the main body so as to be rotatable with respect to an axis of rotation, wherein: the feed pump has an inner part and an outer part, the inner part connected rotationally conjointly to the drive shaft, and the outer part annularly surrounding the inner part; a separate receiving part with a first recess is provided, and the outer part and the inner part are received in the first recess such that a pump assembly, comprising the inner part, the outer part and the receiving part, defines a planar sealing surface configured to bear at least indirectly against the main body; the main body has a second recess in which the pump assembly is received at least in certain portions; a separate cover is provided which is configured to cover the second recess and the pump assembly in each case at least in certain portions; said cover bears against the main body; an elastic element is installed under preload between the cover and the receiving part such that a corresponding preload force is supported at least indirectly on the main body via the sealing surface; the main bodies, the covers, and the drive shaft of all connection assemblies are identical; the outer parts and the inner parts of the various connection assemblies differ; an external shape of the receiving part is identical in all connection assemblies; and an internal shape of the receiving part is different in the various connection assemblies.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The disclosure will be discussed in more detail below on the basis of the appended drawings, in which:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026]
[0027] The connection assembly 10 comprises a main body 20, which is produced for example in a casting process. The main body 20 forms at least one fluid connection 21, wherein, in
[0028] The connection assembly 10 according to the disclosure has the advantage that it can be adapted in a flexible manner to different feed pumps, which differ in particular with regard to the width of the inner and of the outer part 41; 42 in the direction of the axis of rotation 11. Here, the main body 20, the drive shaft 30 and the cover 80 may be of identical form in all structural variants. Differences arise only in the case of the inner and the outer part 41; 42 in order to realize the desired delivery capacity. The internal shape of the receiving part 50 is formed in a correspondingly adapted manner, wherein the external shape of the receiving part 50 is identical in all structural variants.
[0029] The inner part 41, the outer part 42 and the receiving part 50 together form a pump assembly 12, wherein all of the stated parts have a common planar sealing surface 13. The receiving part 50 is received in a second recess 22 of the main body, which is preferably of circular cylindrical form with respect to the axis of rotation 11. By means of a cylindrical pin 55, the receiving part 50 is secured against rotation about the axis of rotation 11. In the present case, the sealing surface 13 bears, via a separate closure plate 70, against the planar base of the second recess 22, wherein said sealing surface may also bear directly against said base. The closure plate 70 is formed in the manner of a planar plate of constant thickness, which is composed for example of brass. It is likewise secured against rotation by means of the cylindrical pin 55 (see
[0030] The outer part 42 is received in a first recess 51 in the receiving part 50. The first recess 51 is of circular cylindrical form, wherein it is arranged eccentrically with respect to the axis of rotation 11. In the case of the present internal gear pump, the outer part 42 is received rotatably there. In the case of a vane-type pump, the outer part, specifically the stroke ring, is received rotationally fixedly there.
[0031] The receiving part 50 is covered at least in certain portions by a cover 80, wherein the cover 80 is screwed to the main body 20. The cover 80 may, as illustrated here, have an opening, such that a through drive to a directly mounted hydraulic machine is possible. The cover may however also be a closed cover. Between the cover 80 and the main body 20, there is installed a sealing ring 81 for preventing an escape of fluid. The elastic element 60 according to the disclosure is installed under preload between the cover 80 and the receiving part 50. The corresponding preload force acts in the direction of the axis of rotation 11, wherein said preload force is supported on the cover 80 and, by way of the physical contact, on the sealing surface 13. The receiving part 50 has, in the direction of the axis of rotation 11, a certain movement clearance in the second recess 22, such that the entire pump assembly 12 with its sealing surface 13 is pressed against the closure plate 70, and this in turn is pressed against the base of the second recess 22. A fluid-tight seal is accordingly provided there.
[0032] The cover 80 is, by means of a circular cylindrical centering projection 56, oriented transversely with respect to the axis of rotation 11. In the direction of the axis of rotation 11, said cover bears against a planar surface of the main body 20. In the region of the receiving part 50, the cover 80 is formed with a spacing to the receiving part 50, such that the discussed movement clearance is realized.
[0033]
[0034]
[0035]
[0036] Reference is also made to the kidney-shaped third recesses 53, which are each arranged in alignment, in the direction of the axis of rotation 11, with an associated aperture on the closure plate. The third recesses 53 have a planar base surface which is oriented perpendicular to the axis of rotation 11. The depth of said third recesses is accordingly constant.
[0037]
[0038]
[0039]
REFERENCE DESIGNATIONS
[0040] 10 Connection assembly [0041] 11 Axis of rotation [0042] 12 Pump assembly [0043] 13 Sealing surface [0044] 20 Main body [0045] 21 Fluid connection [0046] 22 Second recess [0047] 30 Drive shaft [0048] 31 First shaft part [0049] 32 Second shaft part [0050] 33 Slide ring [0051] 40 Feed pump [0052] 41 Inner part [0053] 42 Outer part [0054] 43 External toothing of the inner part [0055] 44 Internal toothing of the outer part [0056] 50 Receiving part [0057] 51 First recess [0058] 52 Groove (for elastic element) [0059] 53 Third recess [0060] 54 Outer circumferential surface of the receiving part [0061] 55 Cylindrical pin [0062] 56 Centering projection [0063] 57 Bore for cylindrical pin [0064] 58 Bore for holding plug [0065] 59 Aperture for drive shaft [0066] 60 Elastic element [0067] 61 Undulation portion [0068] 62 Discontinuity [0069] 63 Height of the elastic element [0070] 64 Contact region [0071] 70 Closure plate [0072] 71 Aperture [0073] 72 Outer circumferential surface of the closure plate [0074] 73 Holding plug [0075] 80 Cover [0076] 81 Sealing ring