IP Library Granted Patent US 8,807,964
Granted Patent B2
US 8,807,964 · App. 13/454,346 · Granted Aug 19, 2014

Variable oil pump

Inventors: Hyuk In Kwon (Incheon, KR); Jin Yong Kim (Seoul, KR)
Assignee: Myunghwa Ind. Co., Ltd.
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Quick Facts
Patent No.
US 8,807,964
App. No.
13/454,346
Granted
Aug 19, 2014
Kind
B2
Abstract

A variable oil pump capable of rapidly ejecting a required amount of working fluid using an oil pressure of the working fluid generated according to an engine RPM, and improving a lubrication effect to improve engine efficiency. Also described is a variable oil pump, in which a gap is provided between a plunger and a cylinder to easily operate the plunger using an oil pressure output from an oil pump, enabling more rapid supply of a required amount of oil using an oil pressure varied according to variation in an engine RPM. A variable oil pump is described in which the plunger is perpendicularly operated with respect to a flow direction of the working fluid, such that the plunger can be operated in a direction in which a pressure of the working fluid is applied to operate the oil pump.

Claims (29)

1. A rotor-type variable oil pump configured to vary a pressure and output the pressure according to an engine RPM, said oil pump ( 100 ) comprising:

a cylinder ( 130 ) connected to an outlet pipe ( 120 ) and having a first input pipe ( 133 a ) and a second input pipe ( 133 b ) branched from the outlet pipe ( 120 ), and a first output pipe ( 134 a ) and a second output pipe ( 134 b ) branched from an inlet side ( 110 ),

a plunger ( 140 ) having a first pipe line ( 143 a ) and a second pipe line ( 143 b ) installed in the cylinder ( 130 ) and configured in a way such that one end of the plunger is exposed in the outlet pipe ( 120 ) while the other end is elastically supported by an elastic spring ( 141 ) in the cylinder ( 130 ), and

said plunger ( 140 ) being compressible in a longitudinal direction of the cylinder ( 130 ) according to variation in pressure of the outlet pipe ( 120 ) to supply oil in proportion to the engine RPM,

wherein in a low speed range (A) and a medium/high speed range (C), said oil pump is configured in a way such that the first pipe line ( 143 a ) and second pipe line ( 143 b ) of the plunger ( 140 ) are closed by the cylinder ( 130 ),

wherein in a medium speed range (B), the oil pump is configured in a way such that the first pipe line ( 143 a ) connects the first input pipe ( 133 a ) to the first output pipe ( 134 a ) to partially return a hydraulic pressure of the outlet pipe ( 120 ) to the inlet side ( 110 ), and

wherein in a high speed range (D), the oil pump is configured in a way such that the second pipe line ( 143 b ) connects the second input pipe ( 133 b ) to the second output pipe ( 134 b ) to partially return the hydraulic pressure of the outlet pipe ( 120 ) to the inlet side ( 110 ).

2. A rotor-type variable oil pump configured to vary a pressure and output the pressure according to an engine RPM, said oil pump ( 100 ) comprising:

a cylinder ( 130 ) connected to an outlet side ( 120 ) and having a first input pipe ( 133 a ) and a second input pipe ( 133 b ) branched from the outlet side ( 120 ), and a first output pipe ( 134 a ) and a second output pipe ( 134 b ) branched from an inlet side ( 110 ),

a plunger ( 140 ) having a first pipe line ( 143 a ) and a second pipe line ( 143 b ) installed in the cylinder ( 130 ) and configured in a way such that one end of the plunger is exposed to the outlet side ( 120 ) while the other end is elastically supported by an elastic spring ( 141 ) in the cylinder ( 130 ), and

said plunger ( 140 ) being compressible in a longitudinal direction of the cylinder ( 130 ) according to variation in pressure of the outlet side ( 120 ) to supply oil in proportion to the engine RPM,

wherein in a low speed range (A) and a medium/high speed range (C) said oil pump is configured in a way such the first pipe line ( 143 a ) and second pipe line ( 143 b ) of the plunger ( 140 ) are closed by the cylinder ( 130 ),

wherein in a medium speed range (B), the oil pump is configured in a way such that the first pipe line ( 143 a ) connects the first input pipe ( 133 a ) to the first output pipe ( 134 a ) to partially return a hydraulic pressure of the outlet side ( 120 ) to the inlet side ( 110 ),

wherein in a high speed range (D), the oil pump is configured in a way such that the second pipe line ( 143 b ) connects the second input pipe ( 133 b ) to the second output pipe ( 134 b ) to partially return the hydraulic pressure of the outlet side ( 120 ) to the inlet side ( 110 ),

wherein a protrusion ( 142 ) protrudes from a front end of the plunger ( 140 ) exposed to the outlet side ( 120 ) to maintain a gap, and

a receiving hole ( 131 ) is formed in a portion of the cylinder ( 130 ) in contact with the protrusion ( 142 ) so that a portion of the protrusion ( 142 ) is receivable in the receiving hole ( 131 ).

3. The variable oil pump according to claim 1 or 2 , wherein the cylinder ( 130 ) is perpendicularly formed with respect to a fluid flow of the outlet side ( 120 ).

4. The variable oil pump according to claim 1 or 2 , wherein the plunger ( 140 ) comprises a straight section (X) configured to reduce a hydraulic pressure by a certain amount during an initial opening of the first pipe line ( 143 a ), and a tapered section (Y) configured to gradually reduce a pressure decrease amount from the straight section (X).

5. The variable oil pump according to claim 4 , wherein the tapered section (Y) has a stepped portion at an end thereof.

6. The variable oil pump according to claim 5 , wherein the straight section (X) and the tapered section (Y) have a relation of 0.1X≦L≦0.6X, where, (L=X+Y).

7. A rotor-type variable oil pump configured to vary a pressure and output the pressure according to an engine RPM, said oil pump ( 100 ) comprising:

a cylinder ( 130 ) connected to an outlet side ( 120 ) and having a first input pipe ( 133 a ) and a second input pipe ( 133 b ) branched from the outlet side ( 120 ), and a first output pipe ( 134 a ) and a second output pipe ( 134 b ) branched from an inlet side ( 110 ),

a plunger ( 140 ) having a first pipe line ( 143 a ) and a second pipe line ( 143 b ) installed in the cylinder ( 130 ) and configured in a way such that one end of the plunger is exposed to the outlet side ( 120 ) while the other end is elastically supported by an elastic spring ( 141 ) in the cylinder ( 130 ), and

said plunger ( 140 ) being compressible in a longitudinal direction of the cylinder ( 130 ) according to variation in pressure of the outlet side ( 120 ) to supply oil in proportion to the engine RPM,

wherein in a low speed range (A) and a medium/high speed range (C) said oil pump is configured in a way such the first pipe line ( 143 a ) and second pipe line ( 143 b ) of the plunger ( 140 ) are closed by the cylinder ( 130 ),

wherein in a medium speed range (B), the oil pump is configured in a way such that the first pipe line ( 143 a ) connects the first input pipe ( 133 a ) to the first output pipe ( 134 a ) to partially return a hydraulic pressure of the outlet side ( 120 ) to the inlet side ( 110 ),

wherein in a high speed range (D), the oil pump is configured in a way such that the second pipe line ( 143 b ) connects the second input pipe ( 133 b ) to the second output pipe ( 134 b ) to partially return the hydraulic pressure of the outlet side ( 120 ) to the inlet side ( 110 ),

wherein a protrusion ( 142 ) protrudes from a front end of the plunger ( 140 ) exposed to the outlet side ( 120 ) to maintain a gap, and

a receiving hole ( 131 ) is formed in a portion of the outlet side in contact with the protrusion ( 142 ) so that a portion of the protrusion ( 142 ) is receivable in the receiving hole ( 131 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2012
From: KWON, HYUK IN; KIM, JIN YONG
To: MYUNGHWA IND. CO., LTD.
Reel/Frame 028482/0164 →
Priority Claims (1)
KR 10-2011-0128101 · Dec 2, 2011 · national
Continuity (1)
Related Publication 20130142627A1 · Jun 6, 2013