Spring structure for mechanical oil pump
12158206 ยท 2024-12-03
Assignee
Inventors
Cpc classification
F16H2007/081
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0897
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0893
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M2001/0269
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A torsion spring for an oil pump chain tensioner for use in an engine. The torsion spring has: a second end; a leg connected to the second end through a hook bend; an outer coil connected to the leg having an outer coil outer circumference and an outer coil inner circumference; a first inner coil connected to the outer coil, the first inner coil having a first inner coil outer circumference and a first inner coil inner circumference, the outer coil inner circumference being adjacent to the first inner coil outer circumference; and a second inner c-shaped coil connected to the first inner coil through a bend back loop, the second inner coil having a second inner coil outer circumference and a second inner coil inner coil circumference and terminating in a first end, where the second inner coil outer circumference and the first coil inner circumference define a gap.
Claims
1. An oil pump chain tensioner for an oil pump chain tensioner system comprising: a tensioner body comprising: a chain tensioning sliding face; an extending arm opposite the chain tensioning sliding face; a boss protruding from the extending arm defining a bore; a c-shaped collar concentric to an outer circumference of the boss having a first end and a second end defining a collar gap; a concentric gap defined between the outer circumference of the boss and an inner circumference of the c-shaped collar; and a torsion spring comprising: a second end; a leg connected to the second end through a hook bend; an outer coil connected to the leg having an outer coil outer circumference and an outer coil inner circumference; a first inner coil connected to the outer coil, the first inner coil having a first inner coil outer circumference and a first inner coil inner circumference, the outer coil inner circumference being adjacent to the first inner coil outer circumference; a second inner c-shaped coil connected to the first inner coil through a bend back loop, the second inner coil having a second inner coil outer circumference and a second inner coil inner circumference and terminating in a first end, wherein the second inner coil outer circumference and the first inner coil inner circumference define a coil gap; wherein the torsion spring is mounted to the tensioner body such that the first inner coil inner circumference is adjacent the outer circumference of the c-shaped collar, the inner circumference of the c-shaped collar is adjacent the second inner coil outer circumference with the second inner coil being present in the concentric gap, the second inner coil inner circumference is adjacent the outer circumference of the c-shaped collar, with the c-shaped collar being present within the coil gap defined between the second inner coil outer circumference and the first inner coil inner circumference and the bend back loop being present in the collar gap.
2. The oil pump chain tensioner of claim 1, wherein the boss is perpendicular to the chain tensioning sliding face.
3. The oil pump chain tensioner of claim 1, wherein the torsion spring is made of flat steel.
4. The oil pump chain tensioner of claim 1, wherein the torsion spring is made of rounded coil.
5. The oil pump chain tensioner of claim 1, wherein the second inner c-shaped coil is concentric to the first inner coil and the first inner coil is concentric to the outer coil.
6. A torsion spring for an oil pump chain tensioner comprising: a second end; a leg connected to the second end through a hook bend; an outer coil connected to the leg having an outer coil outer circumference and an outer coil inner circumference; a first inner coil connected to the outer coil, the first inner coil having a first inner coil outer circumference and a first inner coil inner circumference, the outer coil inner circumference being adjacent to the first inner coil outer circumference; and a second inner c-shaped coil connected to the first inner coil through a bend back loop, the second inner coil having a second inner coil outer circumference and a second inner coil inner circumference and terminating in a first end, wherein the second inner coil outer circumference and the first inner coil inner circumference define a coil gap.
7. The torsion spring of claim 6, wherein the torsion spring is made of flat steel.
8. The torsion spring of claim 6, wherein the torsion spring is made of rounded coil.
9. The torsion spring of claim 6, wherein the second inner c-shaped coil is concentric to the first inner coil and the first inner coil is concentric to the outer coil.
10. An oil pump chain tensioner system comprising a crankshaft oil pump drive sprocket; a camshaft oil pump driven sprocket; a chain connecting the crankshaft oil pump drive sprocket to the camshaft oil pump driven sprocket, the chain having a slack strand and a tight strand between the crankshaft oil pump drive sprocket to the camshaft oil pump driven sprocket; a tensioner body comprising: a chain tensioning sliding face in contact with the slack strand of the chain; an extending arm opposite the chain tensioning sliding face; a boss protruding from the extending arm defining a bore; a c-shaped collar concentric to an outer circumference of the boss having a first end and a second end defining a collar gap; a concentric gap defined between the outer circumference of the boss and an inner circumference of the c-shaped collar; and a torsion spring for exerting force on the tensioner body to provide tension to the slack stand of the chain via the chain tensioning sliding face, the torsion spring comprising: a second end; a leg connected to the second end through a hook bend; an outer coil connected to the leg having an outer coil outer circumference and an outer coil inner circumference; a first inner coil connected to the outer coil, the first inner coil having a first inner coil outer circumference and a first inner coil inner circumference, the outer coil inner circumference being adjacent to the first inner coil outer circumference; and a second inner c-shaped coil connected to the first inner coil through a bend back loop, the second inner coil having a second inner coil outer circumference and a second inner coil inner circumference and terminating in a first end, wherein the second inner coil outer circumference and the first inner coil inner circumference define a coil gap; wherein the torsion spring is mounted to the tensioner body such that the first inner coil inner circumference is adjacent the outer circumference of the c-shaped collar, the inner circumference of the c-shaped collar is adjacent the second inner coil outer circumference with the second inner coil being present in the concentric gap, the second inner coil inner circumference is adjacent the outer circumference of the c-shaped collar, with the c-shaped collar being present within the coil gap defined between the second inner coil outer circumference and the first inner coil inner circumference and the bend back loop being present in the collar gap.
11. The oil pump chain tensioner system of claim 10, further comprising an engine block comprising a protrusion, wherein the second end of the torsion spring is mounted to the protrusion.
12. The oil pump chain tensioner system of claim 10, wherein the boss is perpendicular to the chain tensioning sliding face.
13. The oil pump chain tensioner system of claim 10, wherein the torsion spring is made of flat steel.
14. The oil pump chain tensioner system of claim 10, wherein the torsion spring is made of rounded coil.
15. The oil pump chain tensioner system of claim 10, wherein the second inner c-shaped coil is concentric to the first inner coil and the first inner coil is concentric to the outer coil.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(15) Referring to
(16) The oil pump chain tensioner 108 is connected to an engine block 14 via a bolt 10 which is received within the bore 113a of the protruding boss 113 of the extending arm 108b of the body 109 of the oil pump chain tensioner 108. The engine block 14 has a boss 16. Between the extending arm 8b and the engine block 14 is a torsion spring 152 of an embodiment of the present invention.
(17) As shown in
(18) The protruding boss 113 and c-shaped collar 114 of the extending arm 108b receives the torsion spring 152. More specifically, the outer circumference 113b of the protruding boss 113 and the inner circumference 114b of the c-shaped collar 114 defines a concentric gap 115 which receives an inner circumference 162b of the second inner c-shaped soil 162 of the torsion spring 152. The bend back loop 167 of the torsion spring 152 is present between the first end 114c and the second end 114d of the C-shaped collar 114 within the collar gap 116. The inner circumference 163b is adjacent to the outer circumference 114a of the C-shaped collar 114. It is noted that a small amount of rotation play is available between the first end 114c of the C-shaped collar and the bend back loop 167 and defined coil gap 168. The round hook 166 is wrapped around the protrusion 16 of the engine block 14.
(19) Alternatively, the spring of the oil pump tensioner can be made of a rounded wire as shown in
(20) The rounded wire torsion spring 182 is received by the protruding boss 113 and c-shaped collar 114 of the extending arm 108b. More specifically, the outer circumference 113b of the protruding boss 113 and the inner circumference 114b of the c-shaped collar 114 defines a concentric gap 115 which receives an inner circumference 162b of the second inner c-shaped soil 172 of the rounded coil spring 182. The bend back loop 177 of the rounded coil spring 182 is present between the first end 114c and the second end 114d of the C-shaped collar 114 within the collar gap 116. The inner circumference 173b is adjacent to the outer circumference 114a of the C-shaped collar 114. It is noted that a small amount of rotation play is available between the first end 114c of the C-shaped collar 114 and the bend back loop 177 and defined coil gap 178. The round hook 176 is wrapped around the protrusion 16 of the engine block 14.
(21) The diameter of the rounded wire or the thickness of the flat steel of the torsion spring can vary as well as the number of concentric coils. The outer diameter of the coil and the thickness of the flat steel of the torsion spring can be increased or decreased based on the spring torque required by the tensioner.
(22) Accordingly, it is to be understood that the embodiments of the invention herein described are merely illustrative of the application of the principles of the invention. Reference herein to details of the illustrated embodiments is not intended to limit the scope of the claims, which themselves recite those features regarded as essential to the invention.