The present invention will be described more fully hereinafter with reference to the accompanying drawings, in which exemplary embodiments of the invention are shown. As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present invention.
As shown in
The operation unit 100 changes a path of oil flowing into a continuously variable valve timing unit (not shown). The connector 300 supplies the operation unit 100 with power.
The operation unit 100 is engaged to the upper part of the cam cap 500 by a mounter 520. Therefore, since the operation unit 100 is located away from a combustion chamber (not shown) of a cylinder head 10, and from an exhaust manifold (not shown), degradation of the oil control valve (OCV) by heat created from the combustion chamber and exhaust gas is prevented.
The operation unit 100 may be located at an inner part of a head cover (30) in order to prevent foreign objects from flowing into the operation unit 100.
Referring to
The valve portion 130 is movably located at the sleeve portion 110 so as to directly change a flow path of oil. The driving portion 150, located at one side of the sleeve portion 110, drives the valve portion 130.
Furthermore, the valve portion 130 is formed as a spool. The driving portion 150 may include a yoke 151, a coil 153, and a plunger 155. When a magnetic field is created at the coil 153 and yoke 155 by power applied to the connector 300, the plunger 155 is moved by such a magnetic field, moving the valve portion 130.
As shown in
It is preferable that the driving portion 150 is located higher than the sleeve portion 110. Accordingly, since the plunger 155 of the driving portion 150 is located higher than oil between the valve portion 130 and the sleeve portion 110, oil can not gather at the plunger 155. Consequently, advancing and retarding responsiveness is not hindered.
As shown in
In addition, it is preferable that a hydraulic line portion 150 is formed in the cam cap 500 in order for oil to be guided into an advance angle chamber (not shown) and retard angle chamber (not shown) of a continuously variable valve timing unit (not shown). As shown in
Particularly, since the operation unit 100 is located at the upper part of the cam cap 500, the retard angle hydraulic line 513 and advance angle hydraulic line 515 need not be located at the cylinder head 10, and additional mounting holes need not be formed on the cylinder head 10 in order to safely mount the operation unit 100. Consequently, since the operation unit 100 is located on the cam cap 500 that is inexpensive and easy to manufacture, cost and total average cycle time are small.
When the continuously variable valve timing unit (not shown) is connected to a camshaft (not shown) for an exhaust valve, namely the oil control valve according to an exemplary embodiment of the present invention is used for controlling opening and closing timings of an exhaust valve, it is preferable that the operation unit 100 is located at the camshaft (not shown) for the exhaust valve in the upper part of the cam cap 500.
Hereinafter, a path of oil I will be described in detail with reference to
As shown in
Number | Date | Country | Kind |
---|---|---|---|
10-2006-0075642 | Aug 2006 | KR | national |