TAPPET WITH SLIDING INNER CUP
20200332873 ยท 2020-10-22
Inventors
Cpc classification
F01L2307/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H53/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2305/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H53/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A follower mechanism for use in a bore of an internal combustion engine, including an outer sleeve having an inner surface and an outer surface defining a pair of axially extending shaft grooves that are formed in the inner surface and are parallel to a longitudinal center axis of the follower mechanism, an inner cup including a side wall defining a pair of shaft apertures, the inner cup being slidably disposed in the outer sleeve, a shaft having a first end and a second end, each of the first end and the second end extending through a corresponding shaft aperture of the inner cup and being slidably disposed in a corresponding one of the shaft grooves, and a roller follower rotatably received on the shaft such that a portion of the roller follower extends axially outwardly beyond the outer cup.
Claims
1. A follower mechanism for use in a bore of an internal combustion engine, comprising: an outer sleeve having an inner surface and an outer surface defining a substantially cylindrical side wall, an annular lip portion disposed at a first end of the side wall, and a pair of axially extending shaft grooves that are formed in the inner surface and are parallel to a longitudinal center axis of the follower mechanism; an inner cup including a side wall defining a pair of shaft apertures, the inner cup being slidably disposed in the outer sleeve; a shaft having a first end and a second end, each of the first end and the second end extending through a corresponding shaft aperture of the inner cup and being slidably disposed in a corresponding one of the shaft grooves; and a roller follower rotatably received on the shaft such that a portion of the roller follower extends axially outwardly beyond the annular lip portion of the outer cup.
2. The follower mechanism of claim 1, wherein the first and second ends of the shaft are dome-shaped and a cross-sectional shape of each shaft groove is the same as a cross-sectional shape of the first and second shaft ends.
3. The follower mechanism of claim 1, wherein the first and the second ends of the shaft are semi-spherical and have a radius of curvature that is the same as the radius of curvature of the shaft grooves.
4. The follower mechanism of claim 1, wherein the outer sleeve is in a fixed position within the bore of the engine.
5. The follower mechanism of claim 1, wherein the inner cup further comprises a side wall including two opposed curved portions, a pair of parallel side portions extending therebetween and a bottom wall that is transverse to the longitudinal center axis of the follower mechanism.
6. A follower mechanism for use in a bore of an internal combustion engine, comprising: an outer sleeve having an inner surface and an outer surface defining a side wall and a pair of axially extending shaft grooves that are formed in the inner surface of the side wall and are parallel to a longitudinal center axis of the follower mechanism; an inner cup including a side wall defining a pair of shaft apertures, the inner cup being slidably disposed in the outer sleeve; a shaft having a first end and a second end, each of the first end and the second end extending through a corresponding shaft aperture of the inner cup and being slidably disposed in a corresponding one of the shaft grooves; and a roller follower rotatably received on the shaft.
7. The follower mechanism of claim 6, wherein the first and second ends of the shaft are dome-shaped and a cross-sectional shape of each shaft groove is the same as a cross-sectional shape of the first and second shaft ends.
8. The follower mechanism of claim 6, wherein the first and the second ends of the shaft are semi-spherical and have a radius of curvature that is the same as the radius of curvature of the shaft grooves.
9. The follower mechanism of claim 6, wherein the outer sleeve is in a fixed position within the bore of the engine.
10. The follower mechanism of claim 6, wherein the inner cup further comprises a side wall including two opposed curved portions, a pair of parallel side portions extending therebetween and a bottom wall that is transverse to the longitudinal center axis of the follower mechanism.
11. The follower mechanism of claim 6, wherein the outer sleeve further comprise an annular lip portion disposed at a first end of the side wall.
12. The follower mechanism of claim 6, wherein a portion of the roller follower extends axially outwardly beyond the annular lip portion of the outer cup.
13. A follower mechanism assembly, comprising: an internal combustion engine defining a bore therein, and a camshaft including a lobe; an outer sleeve having an inner surface and an outer surface defining a substantially cylindrical side wall, and a pair of axially extending shaft grooves that are formed in the inner surface and are parallel to a longitudinal center axis of the follower mechanism; an inner cup including a side wall defining a pair of shaft apertures, the inner cup being slidably disposed in the outer sleeve; a shaft having a first end and a second end, each of the first end and the second end extending through a corresponding shaft aperture of the inner cup and being slidably disposed in a corresponding one of the shaft grooves; and a roller follower rotatably received on the shaft, wherein a portion of the roller follower extends axially outwardly beyond the outer cup and contacts the lobe of the camshaft.
14. The follower mechanism assembly of claim 13, wherein the first and second ends of the shaft are dome-shaped and a cross-sectional shape of each shaft groove is the same as a cross-sectional shape of the first and second shaft ends.
15. The follower mechanism assembly of claim 13, wherein the first and the second ends of the shaft are semi-spherical and have a radius of curvature that is the same as the radius of curvature of the shaft grooves.
16. The follower mechanism assembly of claim 13, wherein the outer sleeve is in a fixed position within the bore of the engine.
17. The follower mechanism assembly of claim 13, wherein the inner cup further comprises a side wall including two opposed curved portions, a pair of parallel side portions extending therebetween and a bottom wall that is transverse to the longitudinal center axis of the follower mechanism assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] A full and enabling disclosure of the present invention, including the best mode thereof, directed to one of ordinary skill in the art, is set forth in the specification, which makes reference to the appended drawings, in which;
[0010]
[0011]
[0012]
[0013]
[0014] Repeat use of reference characters in the present specification and drawings is intended to represent same or analogous features or elements of the invention according to the disclosure.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0015] Reference will now be made in detail to presently preferred embodiments of the invention, one or more examples of which are illustrated in the accompanying drawings. Each example is provided by way of explanation, not limitation, of the invention. In fact, it will be apparent to those skilled in the art that modifications and variations can be made in the present invention without departing from the scope and spirit thereof. For instance, features illustrated or described as part of one embodiment may be used on another embodiment to yield a still further embodiment. Thus, it is intended that the present invention covers such modifications and variations as come within the scope of the appended claims and their equivalents.
[0016] Referring now to the figures, as shown in
[0017] Referring specifically to
[0018] Outer sleeve 110 is preferably formed from a sheet metal blank of low, medium or high carbon plain or alloy steel by a stamping process, or deep drawing process using a multi-station transfer or progressive press, in which case retention features 118 are formed by, for example, semi-piercing or otherwise cutting into outer sleeve 110. Additionally, outer sleeve 110 includes an annular lip 111, at its top end. As shown, annular lip 111 is the same width as the side wall of outer sleeve, but in alternate embodiments annular lip 111 may be thinner in the radial direction than the remaining side wall of outer sleeve 110, forming an annular ledge therewith. In its initial state, prior to fully assembling follower mechanism 100, annular lip 111 extends axially outwardly parallel to the longitudinal center axis of outer sleeve 110. Alternatively, annular lip 111 may be initially formed depending radially inwardly dependent upon from which end of outer sleeve 110 the inner cup and components of the roller follower are placed into outer sleeve 110. In the alternate case, retention features 118 are formed after inner cup 120 and roller follower 131 are placed in outer sleeve 110 from the bottom end.
[0019] As best seen in
[0020] Once fully inserted in outer sleeve 110 and rotationally positioned by way of shaft ends 138 being received in shaft grooves 116, inner cup 120 is retained therein by folding annular lip 111 over inwardly, such as by crimping, spin curling, punch forming, etc. Note, since outer sleeve 110 does not directly support shaft 132 of roller follower 131, it does not require heat treatment processes dependent upon the material it is formed with. However, in those applications where heat treatment of outer sleeve 110 is desired for wear purposes, the heat treatment process may occur after retention features 118 are formed. Prior to folding, crimping, etc., annular lip 111 over inwardly, annular lip 111 would then be tempered to facilitate the operation and help prevent cracking.
[0021] Preferably, inner cup 120 is formed from a sheet metal blank by a stamping process, or drawing process, and is subjected to heat treatment processes as it directly supports shaft 122 of roller follower 131 and supports the cyclical force exerted by pump stem 190 (
[0022] As best seen in
[0023] While one or more preferred embodiments of the invention are described above, it should be appreciated by those skilled in the art that various modifications and variations can be made in the present invention without departing from the scope and spirit thereof. It is intended that the present invention cover such modifications and variations as come within the scope and spirit of the appended claims and their equivalents.