Cam follower roller device with washer
10190444 · 2019-01-29
Assignee
Inventors
- Samuel Viault (Saint-Antoine-du-Rocher, FR)
- Benoit Hauvespre (Saint Etienne de Chigny, FR)
- Thomas Perrotin (Saint Roch, FR)
Cpc classification
F02M59/102
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M59/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2307/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H53/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2305/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2305/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M59/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H53/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M59/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The cam follower roller device providing a tappet body extending along an axis, an insert mounted in the tappet body, a pin mounted at least on the insert and a roller mounted on the pin. The device further provides a retaining washer mounted into a bore of the tappet body so as to axially retain the insert inside the tappet body. The tappet body provides retention means, cooperating with the washer to axially retain the washer relative to the tappet body. The retaining washer is axially interposed between the insert and the retention means.
Claims
1. A cam follower roller device comprising: a tappet body extending along an axis, an insert mounted in the tappet body, a pin mounted at least on the insert, and a roller mounted on the pin, and a retaining washer mounted into a bore of the tappet body to axially retain the insert inside the tappet body, the tappet body having retention means configured to cooperate with the retaining washer to axially retain the retaining washer relative to the tappet body, the retaining washer axially interposed between the insert and the retention means, wherein the retaining washer is a pre-stressing washer adapted to exert an axial force on the insert, and wherein the retaining washer is a wavy washer.
2. The device according to claim 1, wherein the retaining washer is in axial contact with the insert on an upper side of the retaining washer and in axial contact with the retention means of the tappet body on a lower side of the retaining washer.
3. The device according to claim 1, wherein the retaining washer is elastically deformable at least in a radial direction.
4. The device according to claim 1, wherein the retaining washer is open in a circumferential direction.
5. The device according to claim 1, wherein the retaining washer is disposed axially on a side opposite to the pin and the roller with respect to the insert.
6. The device according to claim 1, wherein the retaining washer is entirely housed inside the tappet body.
7. The device according to claim 1, wherein the retention means of the tappet body provides at least one protrusion radially protruding inwards with respect to the bore of the tappet body and delimiting an abutment surface for the retaining washer, the abutment surface being oriented axially on a side of the insert.
8. The device according to claim 1, wherein the tappet body and the retention means are made in one part.
9. A cam follower roller device comprising: a tappet body extending along an axis, an insert mounted in the tappet body, a pin mounted at least on the insert, and a roller mounted on the pin, and a retaining washer mounted into a bore of the tappet body to axially retain the insert inside the tappet body, the tappet body having retention means configured to cooperate with the retaining washer to axially retain the retaining washer relative to the tappet body, the retaining washer axially interposed between the insert and the retention means, wherein the insert further comprises a central core and at least two side tabs, the pin being mounted on the at least two side tabs, wherein the retaining washer is mounted in axial contact with the central core of the insert.
10. The device according to claim 9, wherein each of the at least two side tabs of the insert comprises a receiving housing into which an end of the pin is mounted.
11. The device according to claim 9, wherein the tappet body further comprises axial blocking means configured for maintaining the pin in the receiving housings.
12. The device according to claim 9, wherein the retaining washer is a flat washer.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) The present invention and its advantages will be better understood by studying the detailed description of specific embodiments given by way of non-limiting examples and illustrated by the appended drawings on which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE INVENTION
(6) As shown on
(7) As will be described later, the device 10 further provides a retaining washer 20 to axially retain the insert 18 in the tappet body 12. The insert 18 supports the pin 14 while the washer 20 supports the insert.
(8) In the disclosed embodiment, the roller 16 is directly mounted on the pin 14. Alternatively, a rolling bearing or a plain bearing may be radially interposed. The roller 16 provides a cylindrical outer surface (not referenced) which forms a contact surface intended to bear against the associated cam of the internal combustion engine.
(9) The tappet body 12 is made in one part. In the disclosed example, the body 12 has a tubular form. The tappet body 12 provides a cylindrical axial outer surface and a cylindrical axial inner surface or bore 12b. The bore 12b delimits a cavity 22 inside which are located the insert 18 and the pin 14. The roller 16 axially protrudes outwards with respect to an upper face 12c of the tappet body 12. The tappet body 12 also provides a lower face 12d which delimits axially together with the upper face 12c the body. In the illustrated example, the tappet body 12 is made from synthetic material, such as polyamide for example. The tappet body 12 is advantageously formed by molding. Alternatively, the tappet body 12 may be made of metal, for example in an economic way by cutting, stamping and folding.
(10) The insert 18 is made in one part. The insert 18 may preferably be made of metal, by example steel, or be made of plastic material. The insert 18 is distinct from the tappet body 12. In the disclosed example, the insert 18 is entirely housed inside the cavity 22 delimited by the tappet body 12.
(11) The insert 18 provides a base part or central core 24 and two side parts or lateral tabs 26, 28 extending from the core and facing each other. The tabs 26, 28 of the insert extend from the core 24 towards the upper face 12c of the tappet body. The insert 18 has in cross-section a U-shape. The roller 16 is disposed between the tabs 26, 28. A concave recess 30, 32 is provided at the free end of each tab to receive the pin 14. Both recesses 30, 32 extend through the tabs 26, 28 along the axis 14a and have the same diameter. Recesses 30, 32 form receiving housings adapted to receive the ends of the pin 14. Each end of the pin 14 is supported by one of the two tabs 26, 28. The pin 14 is supported by the insert 18.
(12) The tappet body 12 further provides means 34, 36 for axially blocking the pin 14 and the roller 16 relative to the body. The axial blocking means 34, 36 block the translation of the pin 14 in a direction from the lower face 12d of the tappet body towards the upper face 12c. The axial blocking means 34, 36 are integrally formed with the tappet body 12. In the illustrated example, these means 34, 36 are provided on the bore 12b of the tappet body at the upper face 12c. The axial blocking means 34, 36 delimit receiving housings each facing one of the receiving housings 30, 32 of the insert to delimit together cylindrical bores for the ends of the pin 14. Alternatively, it could be possible to provide a spacer comprising cylindrical through-holes made into the thickness of the lateral tabs and facing one another, the ends of the pin 14 being fixed in the through-holes.
(13) The tappet body 12 also provides two pairs of two axial ribs (not shown) provided on the inner surface of the body and which radially protrude inwards. The ribs of each pair extend axially one the axial blocking means 34, 36. The ribs of each pair are spaced apart one relative to another to delimit a space into which is located one of the tabs 26, 28 of the insert. Accordingly, each tab 26, 28 is located circumferentially between the two ribs of one pair. The ribs cooperate with the tabs 26, 28 to prevent the insert 18 from moving in the circumferential direction relative to the tappet body 12.
(14) The retaining washer 20 is distinct from the insert 18 and the tappet body 12. The washer 20 is mounted into the bore 12b of the tappet body. The washer 20 is centered into the bore 12b. The washer 20 is coaxial with the axis 12a of the tappet body. The washer 20 is entirely housed inside the cavity 22 delimited by the tappet body 12. The washer 20 is elastically deformable in the radial direction. The washer 20 is open in the circumferential direction. The washer 20 may be a circlip.
(15) The washer 20 retains the unit or sub-assembly formed by the insert 18, the pin 14 and the roller 16 in the tappet body 12. The sub-assembly is axially held in place by the washer 20. The washer 20 axially abuts against the insert 18 axially on the side opposite to the roller 14 and the pin 16. The washer 20 is mounted in axial contact with the core 24 of the insert. The insert 18 is supported by the tappet body 12 with the aid of the washer 20.
(16) A plurality of protrusions 40, 42 are formed on the bore 12b of the tappet body. The protrusions 40, 42 protrude radially inwards with respect to the bore 12b. The protrusions 40, 42 form hooks directed radially inwards. In the disclosed example, the protrusions 40, 42 are located near to the lower face 12d of the tappet body. The protrusions 40, 42 are regularly spaced apart in the circumferential direction. The protrusions 40, 42 are integrally formed with the tappet body 12.
(17) As shown more clearly on
(18) Referring once again to
(19) The washer 20 comes into axial contact with the abutment surfaces 40a, 42a of the protrusions. The washer 20 is in axial contact against the insert 18 on one side and in axial contact with the protrusions 40, 42 of the tappet body on the other side. The protrusions 40, 42 axially block the washer 20 in the tappet body 12. The inner diameter of the bore delimited by the protrusions 40, 42 is smaller than the outer diameter of the washer.
(20) The protrusions 40, 42 of the tappet body form retention means cooperating by axial contact with the washer 20 to prevent any axial movement of the washer downward. An axial movement of the washer 20 in a direction from the upper face 12c of the tappet body towards the lower face 12d is prevented.
(21) In this example, the washer 20 is a flat washer. Alternatively, an axially elastic washer 20, for instance a wavy washer, may be provided as illustrated in the second example illustrated on
(22) In the disclosed examples, the retaining washer 20 has in cross-section a rectangular shape. Alternatively, the washer may have any other different profile, for example a circular one. In the disclosed examples, the washer 20 is open in the circumferential direction to facilitate its mounting into the tappet body. Alternatively, the washer may have an annular form. In the disclosed examples, the washer 20 is made of metal. In another embodiment, the washer may be made from elastic material, for example an elastomer such as nitrile rubber or polyurethane.
(23) In the disclosed examples, the tappet body 12 provides protrusions 40, 42 protruding inwards to axially retain the washer. Alternatively, the tappet body 12 may provide other retention means. For example, it could be possible to foresee a tappet body comprising an annular groove formed on the bore 12b and into which is inserted partly the washer. In this case, the groove prevents an axial movement of the washer 20 in two directions, and not only in one direction as it is the case with the protrusions 40, 42 as disclosed in the illustrated examples.