Hydraulic control valve for a longitudinally adjustable connecting rod with an end-face control piston
11486299 · 2022-11-01
Assignee
Inventors
- Malte Heller (Munich, DE)
- Kai Arens (Munich, DE)
- Zoltán Riba (Olching, DE)
- Martin Bodensteiner (Munich, DE)
- Steffen Latz (Munich, DE)
- Bernhard Kometter (Judendorf, AT)
- Helmut Melde-Tuczai (Graz, AT)
Cpc classification
International classification
Abstract
A longitudinally adjustable connecting rod for a piston engine, where the connecting rod includes a first connecting rod end for receiving a piston pin and a second connecting rod end for receiving a crankshaft journal, where the distance between the piston pin and the crankshaft journal is adjustable in the longitudinal direction (A) of the connecting rod by way of a hydraulic control device with a hydraulic control valve. The hydraulic control valve comprises a control cylinder and a control slide which is guided in a slidable manner in the control cylinder and which can be pressurized, and at least one outlet valve which can be actuated by the control slide. The control slide comprises a control piston which is arranged on the end face, with a control pressure surface which can be subjected to the hydraulic control pressure and which defines a control pressure chamber in the control cylinder. The use of such a longitudinally adjustable connecting rod with a hydraulic control device in a piston engine as well as a corresponding piston engine is also provided.
Claims
1. A longitudinally adjustable connecting rod for a piston engine, where said connecting rod comprises a first connecting rod end for receiving a piston pin and a second connecting rod end for receiving a crankshaft journal, where the distance between said piston pin and said crankshaft journal is adjustable in a longitudinal direction (A) of said connecting rod by way of a control device with a hydraulic control valve, and said hydraulic control valve comprises a control cylinder, a control slide which is guided in a slidable manner in said control cylinder and which can be pressurized with a hydraulic control pressure, and at least one outlet valve which can be actuated by said control slide, wherein said control slide comprises a control piston arranged on an end face, where said control piston comprises a control pressure surface which can be subjected to the hydraulic control pressure and which defines a control pressure chamber in said control cylinder.
2. The longitudinally adjustable connecting rod according to claim 1, wherein said control pressure surface which can be subjected to the hydraulic control pressure is arranged on the end face of said control piston of said control slide.
3. The longitudinally adjustable connecting rod according to claim 1, wherein said control slide comprises a slide tappet, where said slide tappet extends from said control piston arranged at the end face through said control cylinder for actuating said at least one outlet valve.
4. The longitudinally adjustable connecting rod according to claim 3, wherein said slide tappet extends in the direction of a control slide axis through said control cylinder.
5. The longitudinally adjustable connecting rod according to claim 3, wherein said slide tappet comprises a switching contour for actuating said at least one outlet valve.
6. The longitudinally adjustable connecting rod according to claim 1, wherein at least two outlet valves which can be actuated by said control slide are provided.
7. The longitudinally adjustable connecting rod according to claim 6, wherein said at least two outlet valves are arranged inclined relative to a control slide axis.
8. The longitudinally adjustable connecting rod according to claim 6, wherein said at least two outlet valves are arranged on oppositely disposed sides of a control slide axis.
9. The longitudinally adjustable connecting rod according to claim 6, wherein said at least two outlet valves can be actuated alternately by the control slide.
10. The longitudinally adjustable connecting rod according to claim 1, wherein said hydraulic control device comprises a return spring for retaining said control slide in a first initial position or to return it to the first initial position.
11. The longitudinally adjustable connecting rod according to claim 1, wherein said control slide is arranged inclined relative to the longitudinal direction (A) of said connecting rod and inclined to the normal to the longitudinal direction (A) of said connecting rod.
12. The longitudinally adjustable connecting rod according to claim 1, wherein two connecting rod members are provided, where the first connecting rod member comprises said first connecting rod end and the second connecting rod member comprises said second connecting rod end and where said first connecting rod member is movable.
13. The longitudinally adjustable connecting rod according to claim 12, wherein at least one cylinder-piston unit hydraulically connected to said hydraulic control device is provided for moving said first connecting rod member relative to said second connecting rod member, where said first connecting rod member is connected to an adjustable piston of said cylinder-piston unit and said second connecting rod member comprises a cylinder bore of said cylinder-piston unit.
14. A use of a longitudinally adjustable connecting rod with a hydraulic control valve in a piston engine, where said hydraulic control valve of said control device comprises a control cylinder, a pressurized control slide, and at least two outlet valves, and said control slide comprises a control piston arranged on the end face, where said control piston comprises a control pressure surface which defines a control pressure chamber in said control cylinder, where the use of the longitudinally adjustable connecting rod comprises guiding the control slide in a slidable manner in said control cylinder and pressurizing the control slide, and subjecting the control pressure surface to the hydraulic control pressure.
15. A piston engine with at least one engine cylinder, a reciprocating piston moving in said engine cylinder, and at least one adjustable compression ratio in said engine cylinder, and with a longitudinally adjustable connecting rod connected to said reciprocating piston according to claim 1.
16. The longitudinally adjustable connecting rod according to claim 4, wherein said slide tappet is formed to be rotationally symmetrical to said control slide axis.
17. The longitudinally adjustable connecting rod according to claim 7, wherein said at least two outlet valves are arranged perpendicular to said control slide axis.
18. The longitudinally adjustable connecting rod according to claim 8, wherein said at least two outlet valves are arranged perpendicular to said control slide axis.
19. The longitudinally adjustable connecting rod according to claim 10, wherein said return spring is arranged around said control slide.
20. The longitudinally adjustable connecting rod according to claim 11, wherein said control slide is arranged inclined relative to the longitudinal direction (A) of said connecting rod and inclined to the normal to the longitudinal direction (A) of said connecting rod at an angle between 15° and 75°.
21. The longitudinally adjustable connecting rod according to claim 12, wherein said first connecting rod member is telescopically movable relative to said second connecting rod member in the longitudinal direction (A) of said connecting rod for adjusting the distance between said piston pin and said crankshaft journal.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Non-restricting embodiments of the invention shall be explained in more detail below with reference to exemplary drawings, where:
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION
(8) Longitudinally adjustable connecting rod 1 shown in the schematic view in
(9) Upper connecting rod member 3 guided by way of adjustable piston 9 in a telescoped manner in lower connecting rod member 2 for adjusting the distance between the piston pin of the reciprocating piston received in connecting rod small end 7 and the crankshaft of the piston engine received in connecting rod large end 4 for thus adapting the compression ratio of the piston engine to the respective operating state. This makes it possible to operate the piston engine in the partial load range with a higher compression ratio than in the full load range and to thereby increase the efficiency of the engine. Formed in housing 11 of lower connecting rod member 2 in the upper region is a cylinder 12 which is introduced into housing 11 of lower connecting rod member 2 as a cylinder bore or cylinder sleeve. Adjustable piston 9 of upper connecting rod member 3 is arranged in cylinder 12 so as to be movable in longitudinal direction A of connecting rod 1 in order to form, together with cylinder 12 and cylinder cover 15, cylinder-piston unit 10. Adjustable piston 9 is shown in
(10) In the following, control device 21 for supplying the adjustment device formed by cylinder-piston unit 10 shall be explained in more detail using the hydraulic interconnection shown in
(11) The connecting rod length of longitudinally adjustable connecting rod 1 presently shown can be adjusted in two stages by emptying one of two pressure chambers 13, 14 and filling other pressure chamber 13, 14 with engine oil. For this purpose, one of respective check valves 24, 25 is bridged by hydraulic control device 21 so that the engine oil can flow out of previously filled pressure chamber 13, 14. Respective check valve 24, 25 then loses its effect. For this purpose, hydraulic control device 21 comprises a 3/2-way valve 27, the two switchable ports 30 of which are each connected to a hydraulic fluid line 22, 23 of pressure chambers 13, 14 by way of a throttle 28, 29. 3/2-way valve 27 is actuated by the pressure of the engine oil which is supplied to 3/2-way valve 27 via a control pressure line 31 connected to oil supply duct 26. 3/2-way valve 27 is returned by a return spring 32. Two switchable ports 30 of 3/2-way valve 27 are connected to an outflow duct 33 which delivers the engine oil discharged from pressure chambers 13, 14 to oil supply duct 26, from where it is available for filling respective other pressure chamber 14, 13 or it can be delivered to the surrounding via connecting rod large end 4. In the preferred position of 3/2-way valve 27 shown in
(12) One of respective switchable ports 30 is open in 3/2-way valve 27 so that associated pressure chamber 13, 14 is emptied while other port 30 is closed. When the switching position of 3/2-way valve 27 changes by applying a higher control pressure via control pressure line 31 or by a return action of return spring 32 while the control pressure drops, previously open port 30 is closed and previously closed port 30 is opened. As a result, the highly pressurized engine oil flows from pressure chamber 13, 14, previously filled with engine oil, via respective hydraulic fluid line 22, 23 as well as associated throttle 28, 29 through open port 30 of 3/2-way valve 27 and outflow duct 33 to the surrounding. At the same time, the mass and gas forces acting in a piston engine during the stroke motion of connecting rod 1 create a suction effect in previously empty pressure chamber 14, 13, due to which associated check valve 24, 25 opens, so that previously empty pressure chamber 14, 13 fills with engine oil. With increased filling of this pressure chamber 14, 13, the engine oil is increasingly discharged from other pressure chamber 13, 14 via open port 30, whereby the length of connecting rod 1 changes. Depending on the configuration of longitudinally adjustable connecting rod 1 and hydraulic control device 21 and the operating state of the piston engine, several strokes of connecting rod 1 may be required until pressure chamber 14, 13 blocked by hydraulic control device 21 is completely filled with engine oil and other open pressure chamber 13, 14 is completely emptied and the maximum possible change in length of connecting rod 1 is then obtained.
(13) Hydraulic control device 21 shown in
(14)
(15) When supplying control pressure chamber 38 with a hydraulic fluid subject to high control pressure via oil supply duct 26 and control pressure line 31, the pressure in control pressure chamber 38 increases and presses control slide 35 in the direction of control slide axis 100 into control cylinder 36 against the preload of return spring 32, which is supported on a step in control cylinder 36, into the lower end of control cylinder 36 in order to open first outlet valve 41 and to close second outlet valve 42 at the same time. Formed between slide tappet 39 of control slide 35 and control cylinder 36 is presently low-pressure chamber 45 via which the hydraulic fluid flowing out of upper pressure chamber 14 via opened first outlet valve 41 is discharged to the surrounding of longitudinally adjustable connecting rod 1. Alternatively, low-pressure chamber 45 can also be connected to oil supply duct 26 in order to provide the outflowing engine oil directly for filling lower pressure chamber 13. In the preferred position of hydraulic control valve 34 shown in
(16)
(17) A further variant of hydraulic control valve 34 is shown in
(18)
LIST OF REFERENCE CHARACTERS
(19) 1 longitudinally adjustable connecting rod 2 lower connecting rod member 3 upper connecting rod member 4 connecting rod end 5 bearing shell 6 connecting rod head 7 connecting rod end 8 piston rod 9 adjustable piston 10 cylinder-piston unit 11 housing 12 cylinder 13 pressure chamber 14 pressure chamber 15 cylinder cover 16 rod seal 17 piston seal 18 piston seal 19 underside 20 cylinder base 21 hydraulic control device 22 hydraulic fluid line 23 hydraulic fluid line 24 check valve 25 check valve 26 oil supply 27 3/2-way valve 28 throttle 29 throttle 30 ports 31 control pressure line 32 return spring 33 outflow duct 34 control valve 35 control slide 36 control cylinder 37 control piston 38 control pressure chamber 39 slide tappet 40 switching contour 41 outlet valve 42 outlet valve 43 valve body 44 valve seat 45 low pressure chamber 46 control pressure area 47 closure cap 48 screw bore 49 connecting rod screw 50 drain duct 100 control slide axis A longitudinal direction