Control Plate for Axial Piston Machine and Axial Piston Machine Having a Control Plate
20200063724 ยท 2020-02-27
Inventors
- Alexander Bidell (Waldstetten, DE)
- Christian Hoermann (Weissenhorn, DE)
- Marcus Herrmann (Elchingen, DE)
- Raimund Roth (Nersingen, DE)
Cpc classification
F03C1/0673
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03C1/0647
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/146
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/2092
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03C1/0636
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/2021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03C1/0694
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/328
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B1/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A control plate, for alternatingly fluidically connecting hydrostatic operating chambers, in particular of an oblique axis type axial piston machine, with pressure medium connections, includes a first end face, a second end face, at least a first recess, a first kidney-like control opening, and at least one through-recess. The first face extends transversely to a rotation axis. The second face faces away from the first face. The first recess is bounded in the first end face by the first control opening, and at least partially forms the at least one through recess, which extends toward the second end face from the first end face at an end portion of the first control opening, and which is arranged in or counter to a rotation direction of the rotation axis. An oblique axis construction type axial piston machine includes such a control plate.
Claims
1. A control plate, the control plate configured to alternatingly connect hydrostatic operating chambers of an oblique axis construction type axial piston machine to pressure medium connections of the axial piston machine in terms of pressure medium, the control plate comprising: a first end face extending transversely to a rotation axis, the first end face including: a first kidney-like control opening; and a first recess bounded in the first end face by the first kidney-like control opening, the first recess having a first wall portion at an end portion of the first kidney-like control opening, the first wall portion arranged in or counter to a rotation direction of the rotation axis, and the first wall portion extending so as to be at least partially positioned relative to the rotation axis; and a second end face directed away from the first end face, wherein the first recess at least partially forms at least one through recess extending from the first end face toward the second end face.
2. The control plate of claim 1, wherein at least the first wall portion is configured so as to be constant in terms of tangent.
3. The control plate of claim 2, wherein at least the first wall portion is configured so as to be constant in terms of curvature.
4. The control plate of claim 1, wherein the first wall portion has cross-sections that are arranged in planes that are oriented normal to the rotation axis.
5. The control plate of claim 4, wherein the cross-sections are circle portions with different or identical radii.
6. The control plate of claim 4, wherein the cross-sections have circle centers that form a constant curve.
7. The control plate of claim 1, wherein: the first end face further includes a second recess associated with the at least one first recess; the second recess forms a second slot-like control opening in the second end face; and the at least one through recess is at least partially formed by the second recess so as to extend from the second end face in a direction toward the first end face.
8. The control plate of claim 7, wherein the at least one first recess and the second recess form an intersection.
9. The control plate of claim 8, wherein the intersection is configured, at least partially, so as to have sharp edges or in a rounded fashion.
10. The control plate of claim 1, wherein the at least one first recess further has a second wall portion bounded by the first kidney-like control opening.
11. The control plate of claim 10, wherein the second wall portion extends parallel with the rotation axis.
12. The control plate of claim 7, wherein the second recess has, in a region of an end portion of the second slot-like control opening, a third wall portion arranged in a pivot direction, the third wall configured so as to be convex in a radial direction of a pivot axis of the control plate.
13. The control plate of claim 7, comprising two first kidney-like control openings and two second slot-like control openings that are arranged symmetrically relative to a first plane of symmetry defined by the rotation axis and a vertex of a pitch circle located between the two first kidney-like control openings.
14. The control plate of claim 13, wherein the control plate is symmetrical relative to a second plane of symmetry defined by the rotation axis, and that is normal relative to the first plane of symmetry.
15. An axial piston machine of oblique axis construction type, comprising: hydrostatic operating chambers; pressure medium connections; a control plate, the control plate configured to alternatingly connect the hydrostatic operating chambers to the pressure medium connections in terms of pressure medium, and the control plate including: a first end face extending transversely to a rotation axis, the first end face having: a first kidney-like control opening; and a first recess bounded in the first end face by the first kidney-like control opening, the first recess having a first wall portion at an end portion of the first kidney-like control opening, the first wall portion arranged in or counter to a rotation direction of the rotation axis, and the first wall portion extending so as to be at least partially positioned relative to the rotation axis; and a second end face directed away from the first end face, wherein the first recess at least partially forms at least one through recess extending from the first end face toward the second end face; a housing portion that includes pressure medium connections, wherein the second end face of the control plate abuts the housing portion in a fixed or slidable fashion.
16. The axial piston machine of claim 15, wherein: the first end face further includes a second recess associated with the at least one first recess; the second recess forms a second slot-like control opening in the second end face; the at least one through recess is at least partially formed by the second recess so as to extend from the second end face in a direction toward the first end face; and the housing portion further includes a pressure medium duct having at least one end portion, produced via cutting, that is directed toward the second slot-like control opening or the pressure medium connection.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0045] One embodiment of an axial piston machine according to the disclosure and a control plate according to the disclosure are illustrated in the drawings. The disclosure will now be explained in greater detail with reference to the Figures of these drawings.
[0046] In the drawings:
[0047]
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
DETAILED DESCRIPTION
[0054] According to
[0055] The displacement volume of the axial piston machine 1 is adjustable, which is brought about by the pivotability of the cylinder drum 14 and the control plate 31 about a pivot axis 32. To this end, a hydrostatic adjustment device 34 is provided. A journal 36 which engages in a central through-hole or bearing hole 38 of the control plate 31 is articulated thereby.
[0056] The control plate 31 has a first spherical end face 40 which is adapted to the end face 26 of the cylinder drum 14. As a result of the spherical configuration of the two mentioned end faces, the cylinder drum 14 is centered on the control plate 31 with respect to the rotation axis 24 thereof. At the side of the connection plate 6, the control plate 31 has a substantially circular-cylindrical-portion-like second end face 42.
[0057]
[0058] Before the additional configuration of the connection plate 6 according to
[0059] The control plate 31 which is illustrated as a perspective view in
[0060] In other words, tangential planes of the first wall portion 66 are positioned relative to the rotation axis 24.
[0061] In comparison with conventional wall portions of conventional first recesses which extend cylindrically or partially cylindrically from the first end face as far as the second end face at the other side, the first wall portion 66 which is positioned according to the disclosure allows a more favorable flow behavior in the sense of smaller occurrences of turbulence and pressure losses.
[0062] From the first end face 40 and the bounding or control opening 60 thereof, the first recess 62 extends with a second wall portion 68 which extends parallel with the rotation axis 24 and consequently cylindrically. The second wall portion 68 extends in this case completely circumferentially around the first control opening 60.
[0063] In order to minimize pressure peaks or pressure shocks during control, the control openings 60 have control notches 70, 72 in the region of vertex points of the end portions thereof relative to the rotation direction. In the embodiment shown according to
[0064] The first recesses 62 are each subdivided into two part-recesses via a central web 74 which is recessed relative to the first end face 40 and the second end face.
[0065]
[0066] In this case, one of the second recesses 76 is associated with each first recess 62.
[0067] The second recesses 76 are also subdivided via the central web 74 into two part-recesses. In this manner, the part-recesses of the first recesses 62 and second recesses 76 together form the respective through-recesses.
[0068] At each end portion of the second control opening 78 which is arranged in a pivot direction, the second recesses 76 each have a third wall portion 80 which, in a manner positioned relative to the rotation axis 24, falls away at a shallow angle relative to the second end face 42. The third wall portions 80 form with the first wall portions 66 according to
[0069] With reference to
[0070] According to the section A-A in
[0071]
[0072] There is disclosed a control plate for an axial piston machine, in particular of an oblique axis construction type. In this case, the control plate has at least one through-recess. This through-recess serves to connect in terms of pressure medium hydrostatic operating chambers of the axial piston machine which pass over them to a fixed pressure medium connection of the axial piston machine. In this case, at least one wall portion of the through-recess is positioned relative to the rotation axis in order to optimize the flow.
[0073] There is further disclosed an axial piston machine having such a control plate.
LIST OF REFERENCE NUMERALS
[0074] 1 Axial piston machine [0075] 2 Housing [0076] 4 Housing portion [0077] 6 Connection plate [0078] 8 Drive shaft [0079] 10 Drive shaft flange [0080] 12 Drive mechanism [0081] 14 Cylinder drum [0082] 16 Cylinder bore [0083] 18 Operating piston [0084] 20 Ball head [0085] 22 Central piston [0086] 24 Rotation axis [0087] 26 End-face cylinder drum [0088] 28 Operating chamber opening [0089] 30 Operating chamber [0090] 31 Control plate [0091] 32 Pivot axis [0092] 34 Hydrostatic adjustment device [0093] 36 Journal [0094] 38 Through-hole [0095] 40 First end face [0096] 42 Second end face [0097] 44 Inner housing space [0098] 46 Pivot bearing receiving member [0099] 48 Cylinder bore [0100] 50 Access recess [0101] 52, 54 Pressure medium connection receiving member [0102] 58 Control region [0103] 60 First kidney-like control opening [0104] 62 First recess [0105] 64 Pitch circle [0106] 66 First wall portion [0107] 68 Second wall portion [0108] 70, 72 Control notch [0109] 74 Central web [0110] 76 Second recess [0111] 78 Second control opening [0112] 80 Third wall portion [0113] 82 Intersection [0114] 84 Pressure medium duct [0115] 86 Central portion