Valve rocker arm assembly, variable air distribution mechanism and engine
11352961 ยท 2022-06-07
Assignee
Inventors
Cpc classification
F01L1/181
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/267
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D13/0234
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/2444
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2013/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L13/0021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/186
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D13/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M9/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/2416
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/462
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02D13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M9/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve rocker arm assembly, a variable air distribution mechanism, and an engine are provided according to the present disclosure. The valve rocker arm assembly includes: an oil inlet hose; a rocker arm shaft, an oil drain channel, an oil return groove, and a first oil path being provided in the rocker arm shaft, the oil drain channel being communicated with the oil return groove by means of the first oil path; a first rocker arm and a second rocker arm rotatably connected onto the rocker arm shaft, a piston cavity, an oil inlet path, an oil drain path and a piston being provided on the second rocker arm; a one-way opening device provided in the oil inlet path and/or the oil inlet hose; and a control valve connected to the oil drain channel.
Claims
1. A valve rocker arm assembly, comprising an oil inlet hose; a rocker arm shaft, wherein an oil drain channel, an oil return groove and a first oil path are provided in the rocker arm shaft, and the oil drain channel is in communication with the oil return groove through the first oil path; a first rocker arm, which is rotatably connected to the rocker arm shaft; a second rocker arm, which is rotatably connected to the rocker arm shaft, wherein the first rocker arm and the second rocker arm are located in a same rotation plane, the second rocker arm is provided with a piston chamber, an oil inlet path, an oil drain path and a piston, the piston is slidably arranged in the piston chamber, an extension end of the piston is configured to extend out of the piston chamber and push the first rocker arm, one end of the oil inlet path and one end of the oil drain path both are in communication with a space of the piston chamber located at a bottom of the piston, another end of the oil inlet path is connected to the oil inlet hose, and another end of the oil drain path is alternately connected with or disconnected from the oil return groove as the second rocker arm swings during a swing cycle of the second rocker arm; a unidirectional communication device, which is provided in the oil inlet path and/or the oil inlet hose, and an oil-guiding direction of the unidirectional communication device is toward the piston chamber; and a control valve, which is connected with the oil drain channel and is configured to actively control communication between the oil drain channel and the oil return groove.
2. The valve rocker arm assembly according to claim 1, wherein the control valve is an electromagnetic on-off valve.
3. The valve rocker arm assembly according to claim 1, wherein working modes of the valve rocker arm assembly comprises a valve normally-closing mode and a valve beforehand-closing mode; while in the valve normally-closing mode, the control valve is closed; while in the valve beforehand-closing mode, the control valve is opened.
4. The valve rocker arm assembly according to claim 1, wherein the unidirectional communication device is a check valve.
5. The valve rocker arm assembly according to claim 1, wherein an oil inlet connecting pipe is provided at an oil inlet of the oil inlet path, and the oil inlet hose is in communication with the oil inlet path through the oil inlet connecting pipe.
6. A variable valve train mechanism, comprising a valve rocker arm, a camshaft and an engine valve, wherein the valve rocker arm is a valve rocker arm assembly comprising: an oil inlet hose; a rocker arm shaft, wherein an oil drain channel, an oil return groove and a first oil path are provided in the rocker arm shaft, and the oil drain channel is in communication with the oil return groove through the first oil path; a first rocker arm, which is rotatably connected to the rocker arm shaft; a second rocker arm, which is rotatably connected to the rocker arm shaft, wherein the first rocker arm and the second rocker arm are located in a same rotation plane, the second rocker arm is provided with a piston chamber, an oil inlet path, an oil drain path and a piston, the piston is slidably arranged in the piston chamber, an extension end of the piston is configured to extend out of the piston chamber and push the first rocker arm, one end of the oil inlet path and one end of the oil drain path both are in communication with a space of the piston chamber located at a bottom of the piston, another end of the oil inlet path is connected to the oil inlet hose, and another end of the oil drain path is alternately connected with or disconnected from the oil return groove as the second rocker arm swings during a swing cycle of the second rocker arm; a unidirectional communication device, which is provided in the oil inlet path and/or the oil inlet hose, and an oil-guiding direction of the unidirectional communication device is toward the piston chamber; and a control valve, which is connected with the oil drain channel and is configured to actively control communication between the oil drain channel and the oil return groove; one end of the first rocker arm of the valve rocker arm assembly is in driving connection with the engine valve, and one end of the second rocker arm of the valve rocker arm assembly is in driving connection with the camshaft.
7. The variable valve train mechanism according to claim 6, wherein the one end of the first rocker arm is in driving connection with the engine valve through a valve bridge and a valve spring.
8. The variable valve train mechanism according to claim 7, wherein the engine valve is an intake valve.
9. The variable valve train mechanism according to claim 6, wherein the one end of the second rocker arm is in driving connection with the camshaft through a tappet.
10. The variable valve train mechanism according to claim 9, wherein the engine valve is an intake valve.
11. The variable valve train mechanism according to claim 6, wherein the engine valve is an intake valve.
12. The variable valve train mechanism according to claim 6, wherein the control valve is an electromagnetic on-off valve.
13. The variable valve train mechanism according to claim 6, wherein working modes of the valve rocker arm assembly comprises a valve normally-closing mode and a valve beforehand-closing mode; while in the valve normally-closing mode, the control valve is closed; while in the valve beforehand-closing mode, the control valve is opened.
14. The variable valve train mechanism according to claim 6, wherein the unidirectional communication device is a check valve.
15. The variable valve train mechanism according to claim 6, wherein an oil inlet connecting pipe is provided at an oil inlet of the oil inlet path, and the oil inlet hose is in communication with the oil inlet path through the oil inlet connecting pipe.
16. An engine comprising a valve train mechanism, wherein the valve train mechanism comprises a valve rocker arm assembly, a camshaft and an engine valve, and the valve rocker arm assembly comprises: an oil inlet hose; a rocker arm shaft, wherein an oil drain channel, an oil return groove and a first oil path are provided in the rocker arm shaft, and the oil drain channel is in communication with the oil return groove through the first oil path; a first rocker arm, which is rotatably connected to the rocker arm shaft; a second rocker arm, which is rotatably connected to the rocker arm shaft, wherein the first rocker arm and the second rocker arm are located in a same rotation plane, the second rocker arm is provided with a piston chamber, an oil inlet path, an oil drain path and a piston, the piston is slidably arranged in the piston chamber, an extension end of the piston is configured to extend out of the piston chamber and push the first rocker arm, one end of the oil inlet path and one end of the oil drain path both are in communication with a space of the piston chamber located at a bottom of the piston, another end of the oil inlet path is connected to the oil inlet hose, and another end of the oil drain path is alternately connected with or disconnected from the oil return groove as the second rocker arm swings during a swing cycle of the second rocker arm; a unidirectional communication device, which is provided in the oil inlet path and/or the oil inlet hose, and an oil-guiding direction of the unidirectional communication device is toward the piston chamber; and a control valve, which is connected with the oil drain channel and is configured to actively control communication between the oil drain channel and the oil return groove; one end of the first rocker arm of the valve rocker arm assembly is in driving connection with the engine valve, and one end of the second rocker arm of the valve rocker arm assembly is in driving connection with the camshaft.
17. The engine according to claim 16, wherein the one end of the first rocker arm is in driving connection with the engine valve through a valve bridge and a valve spring.
18. The engine according to claim 16, wherein the one end of the second rocker arm is in driving connection with the camshaft through a tappet.
19. The engine according to claim 16, wherein the engine valve is an intake valve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to more clearly describe the embodiments of the present application or the technical solutions in the conventional technology, the drawings referred to for describing the embodiments or the conventional technology will be briefly described below. Apparently, the drawings in the following description are merely embodiments of the present application. For those of ordinary skill in the art, other drawings may be obtained according to the provided drawings without creative efforts.
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(9) Reference numerals are listed as follows
(10) TABLE-US-00001 1 piston, 2 piston chamber, 3 oil drain path, 4 oil inlet path, 5 unidirectional communication device, 6 second rocker arm, 7 first rocker arm, 8 oil return groove, 9 first oil path, 10 oil drain channel, 11 rocker arm shaft, 12 oil inlet connecting pipe, 13 oil inlet hose.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(11) A core of the present application is to provide a valve rocker arm assembly, which realizes variable valve timing, simplifies the structure of a valve train mechanism and improves the operation reliability.
(12) A variable valve train mechanism including the valve rocker arm assembly is further provided according to the present application, which realizes variable valve timing, simplifies the structure of the valve train mechanism, and improves the operation reliability.
(13) An engine including the variable valve train mechanism is further provided according to the present application, which realizes variable valve timing, simplifies the structure of the valve train mechanism, and improves the operation reliability.
(14) The technical solutions in the embodiments of the present application will be clearly and completely described in the following with reference to the drawings in the embodiments of the present application. Apparently, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained without creative efforts by those of ordinary skill in the art shall fall within the protection scope of the present application.
(15) Referring to
(16) The first rocker arm 7 is rotatably connected to the rocker arm shaft 11, and the second rocker arm 6 is rotatably connected to the rocker arm shaft 11. The first rocker arm 7 and the second rocker arm 6 are located in a same rotation plane, that is, the rocker arm is split into two parts. The second rocker arm 6 is provided with a piston chamber 2, an oil inlet path 4, an oil drain path 3 and a piston 1. The piston 1 is slidably arranged in the piston chamber 2, and an extension end of the piston 1 is capable of stretching out of the piston chamber 2 and pushing the first rocker arm 7, that is, the second rocker arm 6 is capable of pushing the first rocker arm 7 to rotate through the extension end of the piston 1. One end of the oil inlet path 4 and one end of the oil drain path 3 both are in communication with a space of the piston chamber 2 located at a bottom of the piston 1, another end of the oil inlet path 4 is connected to the oil inlet hose 13, and another end of the oil drain path 3 is alternately connected or disconnected with the oil return groove 8 as the second rocker arm 6 swings, as shown in
(17) The unidirectional communication device 5 is provided in the oil inlet path 4 and/or the oil inlet hose 13, and an oil guiding direction of the unidirectional communication device 5 is toward the piston chamber 2, which only allows the engine oil to enter the piston chamber 2 from the oil inlet hose 13 and the oil inlet path 4, and does not allow the engine oil in the piston chamber 2 to flow back to the oil inlet path 4 or the oil inlet hose 13.
(18) The control valve is arranged in the oil drain channel 10 and is configured to control the on-off of the oil drain channel 10.
(19) The valve rocker arm assembly has two working modes, namely a valve normally-closing mode and a valve beforehand-closing mode. While the valve rocker arm assembly is in the valve beforehand-closing mode, the control valve is opened, that is, the oil drain channel 10 is in communication with the oil return groove 8, as shown in
(20) Specifically, as shown in
(21) As shown in
(22) It can be seen that, according to the valve rocker arm assembly, the rocker arm is divided into two parts, and the piston 1 is added onto the rocker arm, so that the length of the rocker arm is changed by the extension and retraction of the piston 1 through the design of the oil circuit, and the normally-closing or beforehand-closing of the valve is realized by the mechanical structure. Compared with the existing variable timing of the valve realized by a complicated electromagnetic control system, the operation reliability is improved, no major changes to the engine are required, and the structure is simple and reliable.
(23) In the present embodiment, the control valve is preferably an electromagnetic on-off valve. Apparently, the control valve may be an electric valve, a hydraulic valve, or the like. The electromagnetic on-off valve can achieve fast response and more accurate control.
(24) As shown in
(25) In present embodiment, an oil inlet connecting pipe 12 is provided at the oil inlet of the oil inlet path 4, and the oil inlet hose 13 is always in communication with the oil inlet path 4 through the oil inlet connecting pipe 12. The oil inlet hose 13 is capable of deformation as the second rocker arm 6 swings. The provision of the oil inlet connecting pipe 12 facilitates the connection between the oil inlet hose 13 and the oil inlet path 4. The oil inlet connecting pipe 12 is fixed at the inlet of the oil inlet path 4 by welding or threaded connection. The oil inlet hose 13 is fitted to the oil inlet connecting pipe 12.
(26) Apparently, the oil inlet hose 13 may be directly connected to the inlet of the oil inlet path 4 and may be fixed thereto by means of adhesion or the like.
(27) Based on the valve rocker arm assembly according to any one of the above aspects, a variable valve train mechanism is further provided according to an embodiment of the present application, which includes a valve rocker arm, a camshaft, and a valve, wherein the valve rocker arm is the valve rocker arm assembly according to any one of the above aspects, one end of the first rocker arm 7 of the valve rocker arm assembly is in driving connection with the valve, and one end of the second rocker arm 6 of the valve rocker arm assembly is in driving connection with the camshaft.
(28) During operation, the camshaft rotates, driving the second rocker arm 6 to rotate around the rocker arm shaft 11 and pushing the first rocker arm 7 to rotate. One end of the first rocker arm 7 drives the valve to open or close. Since the valve rocker arm assembly in the present application is used, variable timing of the valve can be achieved, and beforehand-closing or normally-closing of the valve can be achieved. The structure is simple and the operation is reliable.
(29) In the present embodiment, one end of the first rocker arm 7 is in driving connection with the valve through a valve bridge and a valve spring, as shown in
(30) In the present embodiment, one end of the second rocker arm 6 is in driving connection with the camshaft through a tappet as shown in
(31) In the present embodiment, the valve is preferably an intake valve. Through the driving connection between the valve rocker arm assembly and the intake valve, the beforehand-closing or normally-closing of the intake valve can be realized, and the opening moment of the intake valve does not change. Apparently, if the design requires, the valve may be an exhaust valve to realize the beforehand-closing or normally-closing of the exhaust valve.
(32) Based on the variable valve train mechanism described in any one of the above embodiments, an engine is further provided according to an embodiment of the present application, which includes a valve train mechanism, wherein the valve train mechanism is the variable valve train mechanism according to any one of the above embodiments. Since the variable valve train mechanism in the present application is used, variable timing of the valve can be achieved, and beforehand-closing or normally-closing of the valve can be achieved. The structure is simple and the operation is reliable.
(33) The embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. For the same or similar parts among the embodiments, reference may be made to each other.
(34) According to the above description of the disclosed embodiments, those skilled in the art can implement or practice the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application shall not be limited to the embodiments shown herein, but shall conform to the widest scope consistent with the principles and novel features disclosed herein.