Continuously variable valve lift system and automobile
10415440 ยท 2019-09-17
Assignee
Inventors
- Hainian Lian (Guangzhou, CN)
- Jujiang Liu (Guangzhou, CN)
- Liang Chen (Guangzhou, CN)
- Yuhuai Li (Guangzhou, CN)
- Zonglan Zhang (Guangzhou, CN)
- Zhen Lu (Guangzhou, CN)
Cpc classification
F01L13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2013/0068
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2305/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L13/0063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/185
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A continuously variable valve lift system includes a driving swing arm, a camshaft, a valve structure, a control shaft and an adjusting swing arm. The valve structure includes a roller rocker arm and a valve connected to the roller rocker arm. The driving swing arm has a driving arc surface. The driving arc surface contacts with the roller rocker arm to drive the valve to perform a reciprocating movement. The driving swing arm is sleeved on the control shaft and is capable of swinging around the control shaft. The control shaft is provided with a mounting part. The adjusting swing arm is connected to the mounting part and is capable of swinging relative to the mounting part. The adjusting swing arm is disposed between the camshaft and the driving swing arm. Two sides of the adjusting swing arm are contacted respectively with the camshaft and the driving swing arm.
Claims
1. A continuously variable valve lift system, comprising a driving swing arm, a camshaft and a valve structure, the valve structure comprising a roller rocker arm and a valve connected to the roller rocker arm, the driving swing arm having a driving arc surface, the driving arc surface contacting with the roller rocker arm to drive the valve to perform a reciprocating movement, wherein the continuously variable valve lift system further comprises a control shaft and an adjusting swing arm, the driving swing arm is sleeved on the control shaft and is capable of swinging around the control shaft, the control shaft is provided with a mounting part, the adjusting swing arm is connected to the mounting part and is capable of swinging relative to the mounting part, the adjusting swing arm is disposed between the camshaft and the driving swing arm, two sides of the adjusting swing arm are contacted respectively with the camshaft and the driving swing arm.
2. The continuously variable valve lift system of claim 1, wherein the continuously variable valve lift system further comprises a torsion spring, one end of the torsion spring is adapted to be fixed to a casing of an engine, and the other end of the torsion spring is fixed to the driving swing arm.
3. The continuously variable valve lift system of claim 1, wherein a rotation axle is mounted on the mounting part, the adjusting swing arm is connected to the rotation axle to cause the adjusting swing arm to be capable of swinging around the rotation axle.
4. The continuously variable valve lift system of claim 1, wherein the driving arc surface is provided with a blanking segment and a driving segment, the blanking segment is an arc segment which takes the control shaft as its center.
5. The continuously variable valve lift system of claim 1, wherein a top of the driving swing arm is provided with a circular ring, the circular ring is sleeved on the control shaft.
6. The continuously variable valve lift system of claim 5, wherein a groove is provided in the circular ring, the mounting part is received in the groove and extends outwardly from the groove.
7. The continuously variable valve lift system of claim 1, wherein the driving swing arm is provided with a first contact surface which faces to the adjusting swing arm, the adjusting swing arm is provided with a second contact surface which faces to the driving swing arm the first contact surface contacts with the second contact surface.
8. The continuously variable valve lift system of claim 1, wherein the adjusting swing arm is provided with a roller, the camshaft is provided with a cam, the cam forms a rolling friction contact with the roller.
9. The continuously variable valve lift system of claim 8, wherein the cam, the adjusting swing arm the driving swing arm and the valve structure each have two in quantity, and each cam, each adjusting swing arm, each driving swing arm and each valve structure are correspondingly disposed to constitute a valve adjusting system.
10. An automobile comprising the continuously variable valve lift system of claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(5) In order to further describe the technical solutions and effects of the present application for achieving the intended purposes, the present application will now be described specifically with reference to the following preferred embodiments when taken in conjunction with the accompanying drawings
(6) The present application provides a continuously variable valve lift system.
(7) The driving swing arm 20 is sleeved on the control shaft 10 and is capable of swinging around the control shaft 10. In the embodiment, a top of the driving swing arm 20 is provided with a circular ring 22 which is sleeved on the control shaft 10, to cause the driving swing arm 20 to be capable of rotating around the control shaft 10. In the middle position of the driving swing arm 20, there is provided with a first contact surface 25 which faces to the adjusting swing arm 30. The first contact surface 25 can be a circular arc surface. A driving arc surface 21 is provided at the bottom of the driving swing arm 20 for driving the valve structure 60. There is an arc segment formed at the left side of the driving arc surface 21, and the left-side arc segment takes the control shaft 10 as its center to form as a blanking segment 211. A driving segment 212 is formed at the right side of the driving arc surface 21 for driving the roller rocker arm 61. The driving arc surface 21 contacts with the roller rocker arm 61.
(8) The control shaft 10 is provided with a mounting part 11. The mounting part 11 is fixed on the control shaft 10. The adjusting swing arm 30 is connected to the mounting part 11 and is capable of swinging relative to the mounting part 11. In the embodiment, a rotation axle 12 is mounted on the mounting part 11, and a top of the adjusting swing arm 30 is connected to the rotation axle 12, to cause the adjusting swing arm 30 to be capable of swinging around the rotation axle 12. The adjusting swing arm 30 is disposed between the camshaft 50 and the driving swing arm 20, and two sides of the adjusting swing arm 30 are contacted respectively with the camshaft 50 and the driving swing arm 20. Particularly, at the bottom of the adjusting swing arm 30, there is provided with a second contact surface 31 which faces to the driving swing arm 20. The second contact surface 31 may be a sloping surface. The second contact surface 31 of the adjusting swing arm 30 contacts with the first contact surface 25 of the driving swing arm 20. A roller 32 is further provided at the bottom of the adjusting swing arm 30. The roller 32 is configured to contact with the camshaft 50.
(9) The camshaft 50 and the control shaft 10 are arranged in parallel. A cam 51 is provided on the camshaft 50. The cam 51 forms a rolling friction contact with the roller 32 of the adjusting swing arm 30. By the adjusting swing arm 30, the camshaft 50 can drive the driving swing arm 20 to swing around the control shaft 10.
(10) The torsion spring 40 is mounted on the control shaft 10, one end of the torsion spring 40 is fixed to a casing of the engine, and the other end of the torsion spring 40 is fixed to the driving swing arm 20. The torsion spring 40 is configured to assist the driving swing arm 20 to restore, to ensure the driving swing arm 20 is always in contact with the adjusting swing arm 30.
(11) When the continuously variable valve lift system provided by the embodiment of the present application is used to control the opening and closing of the valve 62, the cam 51 of the camshaft 50 drives the roller 32 of the adjusting swing arm 30 to cause the adjusting swing arm 30 to swing around the mounting part 11 of the control shaft 10. Meanwhile, due to the contact between the second contact surface 31 of the adjusting swing arm 30 and the first contact surface 25 of the driving swing arm 20, the adjusting swing arm 30 drives the driving swing arm 20 to cause the driving swing arm 20 to swing around the control shaft 10. As the driving swing arm 20 swings, the valve 62 is pushed to move upward and downward in a reciprocating manner due to the contact between the driving arc surface 21 and the roller rocker arm 61. When the roller rocker arm 61 slides along the blanking segment 211 of the driving arc surface 21, the valve 62 is closed; when the roller rocker arm 61 slides along the driving segment 212 of the driving arc surface 21, the valve 62 is opened.
(12) The torsion spring 40 is mounted on the control shaft 10, one end of the torsion spring 40 is fixed to the casing of the engine, and the other end of the torsion spring 40 is fixed to the driving swing arm 20, to ensure the driving swing arm 20 is always in contact with the adjusting swing arm 30 during movement.
(13) When the valve lift and the duration of valve opening of the continuously variable valve lift system provided by the embodiment of the present application are adjusted, the control shaft 10 is driven to rotate by an electric motor (not shown). Because the adjusting swing arm 30 is connected to the control shaft 10 via the rotation axle 12 and the mounting part 11, the mounting part 11 is fixed on the control shaft 10 and rotates together with the control shaft 10. Therefore, a rotation of the control shaft 10 will drive the adjusting swing arm 30 to move upward and downward. When the adjusting swing arm 30 moves upward and downward, the driving swing arm 20 is pushed to rotate at a certain extent, to thereby change the contact position between the driving arc surface 21 and the roller rocker arm 61. After the contact position between the driving arc surface 21 and the roller rocker arm 61 is changed, the contact position between the roller rocker arm 61 and the driving segment 212 of the driving arc surface 21 and the duration when the roller rocker arm 61 contacts with the blanking segment 211 of the driving arc surface 21 are both changed when the camshaft 50 rotates a circle, to realize the adjustment to the valve lift and the duration of valve opening. Specifically, when the control shaft 10 is rotated clockwise, the adjusting swing arm 30 is driven to move downward, and the driving swing arm 20 is pushed to swing rightward, to cause the valve lift to be decreased (as shown in
(14)
(15) Accordingly, in the continuously variable valve lift system provided by the embodiment of the present application, the valve lift, the duration of valve opening and the phase corresponding to the maximal valve lift can be adjusted continuously as the position of the adjusting swing arm 30 is adjusted. The demands of power and economy for the engine are reconciled. The maximal torque and the maximal power of the engine can be increased by using a large valve lift in high load areas, and a small valve lift can be used to control the air entering the combustion chamber in low load areas, to increase the tumble in the cylinder, optimize the combustion, reduce the loss of pumped gas and improve the fuel economy.
(16) In addition, in order to mount the adjusting swing arm 30 corresponding to the driving swing arm 20, a groove 24 is provided in the circular ring 22 of the driving swing arm 20. The mounting part 11 of the control shaft 10 is received in the groove 24 and extends outwardly from the groove 24.
(17) In addition, the valve structure 60 further includes a hydraulic lifter 63. The valve 62 and the hydraulic lifter 63 are disposed at two sides of the roller rocker arm 61, respectively. The hydraulic lifter 63 is configured to automatically adjust the valve interval of the valve 62.
(18) In the embodiment, the cam 51 of the camshaft 50, the adjusting swing arm 30, the driving swing arm 20 and the valve structure 60 each have two in quantity. Each cam 51, each adjusting swing arm 30, each driving swing arm 20 and each valve structure 60 are correspondingly disposed to constitute a valve adjusting system.
(19) The present application further provides an automobile, and the automobile has the above-mentioned continuously variable valve lift system. Other structures relating to the automobile can refer to existing technology and are herein omitted for clarity.
(20) The continuously variable valve lift system provided by the embodiment of the present application has a simple structure. The mounting part is provided on the control shaft, and the adjusting swing arm is connected to the mounting part. The adjusting swing arm is driven to move upward and downward by rotating the control shaft, and the adjusting swing arm pushes the driving swing arm to rotate at a certain extent, to change the contact position between the roller rocker arm and the driving arc surface, such that the valve lift and the duration of valve opening are adjusted. Thus, the engine can adopt different valve lifts in high load areas and in low load areas, to reconcile the demands of power and economy.
(21) The above are embodiments of the present application only, and should not be deemed as limitations to the present application. Although the present application has been described with preferred embodiments, it should be noted that variations and improvements will become apparent to those skilled in the art to which the present application pertains. Therefore, the scope of the present application is defined by the appended claims.
INDUSTRIAL APPLICABILITY
(22) The continuously variable valve lift system provided by the embodiment of the present application has a simple structure. The mounting part is provided on the control shaft, and the adjusting swing arm is connected to the mounting part. The adjusting swing arm is driven to move upward and downward by rotating the control shaft, and the adjusting swing arm pushes the driving swing arm to rotate at a certain extent, to change the contact position between the roller rocker arm and the driving arc surface, such that the valve lift and the duration of valve opening are adjusted. Thus, the engine can adopt different valve lifts in high load areas and in low load areas, to reconcile the demands of power and economy.