TRIPOD TYPE CONSTANT VELOCITY UNIVERSAL JOINT
20180266491 ยท 2018-09-20
Inventors
Cpc classification
F16D2003/2026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2300/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10S464/905
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16D3/2055
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A tripod type constant velocity universal joint includes an outer joint member having track grooves formed at trisected positions in a circumferential direction to extend in an axial direction thereof, and a tripod member. The tripod member includes a trunnion barrel and trunnion journals radially projecting from trisected positions on the trunnion barrel in the circumferential direction. The universal joint also includes spherical rollers each fitted in a rotatable manner about each of the trunnion journals through intermediation of a plurality of needle rollers. The spherical rollers are in the track grooves, and each has an outer spherical surface guided by roller guide surfaces formed on both side walls of each of the track grooves. Hollow holes are formed in the trunnion journals, respectively, and a quench-hardened layer is formed on each of outer circumferential surfaces of the trunnion journals and surfaces of the hollow holes.
Claims
1-6. (canceled)
7. A tripod type constant velocity universal joint, comprising: an outer joint member having track grooves formed at trisected positions in a circumferential direction of the outer joint member to extend in an axial direction thereof; a tripod member comprising: a trunnion barrel to be spline-fitted on a shaft to allow torque transmission therebetween; and trunnion journals radially projecting from trisected positions on the trunnion barrel in the circumferential direction; and spherical rollers each fitted in a rotatable manner about each of the trunnion journals through intermediation of a plurality of needle rollers, the spherical rollers being received in the track grooves, and each having an outer spherical surface guided by roller guide surfaces formed on both side walls of each of the track grooves, wherein hollow holes are formed in the trunnion journals, respectively, and wherein a quench-hardened layer is formed on each of outer circumferential surfaces of the trunnion journals and surfaces of the hollow holes.
8. The tripod type constant velocity universal joint according to claim 7, wherein the hollow holes each have a cylindrical shape having a bottom portion, and wherein the quench-hardened layer is formed also on a surface of the bottom portion.
9. The tripod type constant velocity universal joint according to claim 7, wherein the hollow holes each have an elliptical cylinder shape having a bottom portion, and a long axis of an ellipse is arranged in a direction orthogonal to an axis of the tripod type constant velocity universal joint, and wherein the quench-hardened layer is formed also on a surface of the bottom portion.
10. The tripod type constant velocity universal joint according to claim 7, wherein the heat treatment comprises carburizing, quenching, and tempering.
11. The tripod type constant velocity universal joint according to claim 7, wherein a core hardness of the trunnion journals is higher than a core hardness of the trunnion barrel.
12. The tripod type constant velocity universal joint according to claim 7, wherein the hollow holes of the trunnion journals are each formed of a forged surface.
Description
BRIEF DESCRIPTION OF DRAWINGS
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EMBODIMENTS OF THE INVENTION
[0047] A first embodiment of the present invention is described with reference to
[0048]
[0049] The tripod member 3 comprises a trunnion barrel 8 and trunnion journals 9. Three trunnion journals 9 are formed to radially project from trisected positions on the trunnion barrel 8 in the circumferential direction. The trunnion barrel 8 is spline-fitted on a shaft 20 to allow torque transmission therebetween. Each trunnion journal 9 has a cylindrical outer circumferential surface 10 and an annular retaining ring groove 11 formed in the vicinity of a shaft end of the trunnion journal 9. The spherical roller 4 is fitted in a freely rotatable manner about the cylindrical outer circumferential surface 10 of the trunnion journal 9 through intermediation of the plurality of needle rollers 5. The cylindrical outer circumferential surface 10 of the trunnion journal 9 serves as an inner raceway surface of the needle rollers 5. An inner circumferential surface 4a of the spherical roller 4 has a cylindrical shape and serves as an outer raceway surface of the needle rollers 5. A hollow hole 9a having a cylindrical shape is formed at the center of the trunnion journal 9, and the hollow hole 9a has a bottom portion 9b.
[0050] In the retaining ring groove 11 formed in the vicinity of the shaft end of the trunnion journal 9, a retaining ring 18 is fitted through intermediation of an outer washer 12. Movement of the needle rollers 5 in an axial direction of the trunnion journal 9 is restricted by an inner washer 14 and the outer washer 12. The outer washer 12 comprises a disc portion 12a extending in a radial direction of the trunnion journal 9, and a cylindrical portion 12b extending in the axial direction of the trunnion journal 9. The cylindrical portion 12b of the outer washer 12 has an outer diameter that is smaller than a diameter of the inner circumferential surface 4a of the spherical roller 4, and an end portion 12c of the cylindrical portion 12b, which is located on an outer side when viewed in a radial direction of the tripod member 3, is formed to have a diameter that is larger than that of the inner circumferential surface 4a of the spherical roller 4. Thus, the spherical roller 4 is movable in the axial direction of the trunnion journal 9, and is prevented from dropping off by the end portion 12c.
[0051] The spherical roller 4 fitted on the trunnion journal 9 of the tripod member 3 in a freely rotatable manner is guided by the roller guide surfaces 7 of the track groove 8 of the outer joint member 2 in a freely rotatable manner. With this structure, relative axial displacement and relative angular displacement between the outer joint member 2 and the tripod member 3 are absorbed so that the rotation is transmitted at constant velocity.
[0052] In
[0053] d: shaft diameter (spline large diameter). PCD: roller guide surface pitch circle diameter, dr: trunnion barrel diameter, SDj: trunnion outer diameter, D2: small inner diameter of outer joint member, D1: large inner diameter of outer joint member, Ls: roller width, Ds: roller outer diameter, Dj: trunnion journal diameter, Ln: needle roller length
[0054] The tripod type constant velocity universal joint 1 has basic dimensional ratios as indicated by the following seven items. [0055] (1) Shaft diameter d/roller guide surface pitch circle diameter PCD (d/PCD) [0056] (2) Trunnion barrel diameter dr/trunnion outer diameter SDj (dr/SDj) [0057] (3) Small inner diameter D2/large inner diameter D1 of outer joint member (D2/D1) [0058] (4) Roller width Ls/roller outer diameter Ds (Ls/Ds) [0059] (5) Trunnion journal diameter Dj/roller outer diameter Ds (Dj/Ds) [0060] (6) Trunnion journal diameter Dj/shaft diameter d (Dj/d) [0061] (7) Needle roller length Ln/trunnion journal diameter Dj (Ln/Dj)
[0062] Dimensional ratios of the tripod type constant velocity universal Joint 1 according to the first embodiment are set as shown in Table 1.
TABLE-US-00001 TABLE 1 Item Ratio (%) (1) Shaft diameter d/roller guide surface pitch circle diameter 50-55 PCD (d/PCD) (2) Trunnion barrel diameter dr/trunnion outer diameter SDj 65-70 (dr/SDj) (3) Small inner diameter D2/large inner diameter D1 of outer 66-72 joint member (D2/D1) (4) Roller width Ls/roller outer diameter Ds (Ls/Ds) 24-27 (5) Trunnion journal diameter Dj/roller outer diameter Ds 54-57 (Dj/Ds) (6) Trunnion journal diameter Dj/shaft diameter d (Dj/d) 83-86 (7) Needle roller length Ln/trunnion journal diameter Dj 47-50 (Ln/Dj)
[0063] In the tripod type constant velocity universal joint 1 according to the first embodiment, in consideration of the strength and durability the outer diameter of the outer joint member is reduced with the dimensional ratios shown in Table 1 to achieve weight reduction and compactification. To achieve the weight reduction while maintaining the strength and life with the dimensional ratios shown in Table 1, the tripod type constant velocity universal joint 1 has the feature that a hollow hole is formed in the trunnion journal, and that a quench-hardened layer is formed on the surface of the hollow hole. This feature is described with reference to
[0064]
[0065] The size of the hollow hole 9a is described with reference to
[0066] With reference to
[0067] In
[0068] In the first embodiment, the hollow hole 9a described above is formed in the trunnion journal 9. Therefore, even when the tripod member 3 has a large journal diameter Dj (see
[0069] Description is made of a modification example of the hollow hole with reference to
[0070] Next, description is made of a tripod type constant velocity universal joint according to a second embodiment of the present invention with reference to
[0071] Dimensions of portions are illustrated in
[0072] d.sub.2-shaft diameter (spline large diameter), PCD.sub.2: roller guide surface pitch circle diameter, dr.sub.2: trunnion barrel diameter, SDj.sub.2: trunnion outer diameter, D2.sub.2: small inner diameter of outer joint member, D1.sub.2: large inner diameter of older joint member, Ls.sub.2: roller width, Ds.sub.2: roller outer diameter, Dj.sub.2: trunnion journal diameter, Ln.sub.2: needle roller length
[0073] To achieve ultimate weight reduction and compactification of the joint outer diameter while maintaining the strength and life, the tripod type constant velocity universal joint la according to the second embodiment has dimensional settings greatly different from, those of the related art. First, description is made of a dimensional setting which is the basis of the tripod type constant velocity universal joint 1.sub.2 according to the second embodiment.
[0074] The strength of the tripod type constant velocity universal joint 1.sub.2 is basically set to the shaft strength or more, but the strength of the tripod member 3.sub.2 and the strength of the spherical roller 4a need to be secured in the second place. In view of this, the tripod type constant velocity universal joint 1.sub.2 according to the second embodiment has dimensional set lingo on the premise that the strength of the tripod member and the strength of the spherical roller 4.sub.2 may be secured.
[0075] As a basic measure, assuming that the shaft diameter d.sub.2 determined for each joint size has a constant value, the pitch, circle diameter PCD.sub.2 of the roller guide surfaces 7.sub.2 is reduced in accordance with a dimensional setting greatly different from that of the related art while securing a minimum thickness t of the trunnion barrel 8.sub.2 at a root portion 9c.sub.2 of the trunnion journal 9.sub.2 in a torque applying direction.
[0076] To achieve the above-mentioned basic measure, it is necessary to secure the minimum thickness t of the trunnion barrel 8.sub.2 at the root portion 9c.sub.2 of the trunnion journal 9.sub.2 in the torque applying direction even though the pitch circle diameter PCD.sub.2 of the roller guide surfaces 7.sub.2 is reduced as described above. Therefore, the dimensions are set such that the outer diameter Dj.sub.2 of the trunnion journal 9.sub.2 is increased. The outer diameter Ds.sub.2 of the spherical roller 4.sub.2 is also increased along with the increase in the outer diameter Dj.sub.2 of the trunnion journal 9.sub.2.
[0077] When the outer diameter Ds.sub.2 of the spherical roller 4.sub.2 is increased, the outer diameter of the outer joint member 2.sub.2 is also increased. Therefore, the width Ls.sub.2 of the spherical roller 4.sub.2 is reduced so that the outer diameter of the outer joint member 2.sub.2 is reduced.
[0078] When the width Ls.sub.2 of the spherical roller 4.sub.2 is reduced, the outer diameter of the outer joint member 2.sub.2 is also reduced. As a result, the value of small inner diameter D2.sub.2/large inner diameter D1.sub.2 is increased so that the unevenness between the small inner diameter D2.sub.2 and the large inner diameter D1.sub.2 is reduced. Through the reduction in the unevenness between the small inner diameter D2.sub.2 and the large inner diameter D1.sub.2, there is attained an advantage in the weight reduction and forgeability.
[0079] From the viewpoint of the life (durability), the outer diameter Dj.sub.2 of the trunnion journal 9.sub.2 is increased so that the number of needle rollers 5.sub.2 to be mounted is increased to reduce a contact pressure. With this structure, the roller length Ln.sub.2 is reduced while securing the life equivalent to that of the related art.
[0080] In general, there are two modes of contact between the spherical roller 4.sub.2 and the roller guide surface 7.sub.2. That is, there are angular contact and circular contact. The angular contact has a contact angle, and provides contact at two points. The circular contact provides contact at one point as illustrated in
[0081] In Table 2, there is shown dimensional ratios serving as a basis of the tripod type constant velocity universal joint 1.sub.2 according to the second embodiment.
TABLE-US-00002 TABLE 2 Ratio Item (%) (1) Shaft diameter d.sub.2/roller guide surface pitch circle diameter 62-70 PCD.sub.2 (d.sub.2/PCD.sub.2) (2) Trunnion barrel diameter dr.sub.2/trunnion outer diameter SDj.sub.2 63-70 (dr.sub.2/SDj.sub.2) (3) Small inner diameter D2.sub.2/large inner diameter D1.sub.2 of 73-80 outer joint member (D2.sub.2/D1.sub.2) (4) Roller width Ls.sub.2/roller outer diameter Ds.sub.2 (Ls.sub.2/Ds.sub.2) 20-27 (5) Trunnion journal diameter Dj.sub.2/roller outer diameter Ds.sub.2 54-57 (Dj.sub.2/Ds.sub.2) (6) Trunnion journal diameter Dj.sub.2/shaft diameter d.sub.2 (Dj.sub.2/d.sub.2) 87-93 (7) Needle roller length Ln.sub.2/trunnion journal diameter Dj.sub.2 40-47 (Ln.sub.2/Dj.sub.2)
[0082] According to the tripod type constant velocity universal joint 1.sub.2 of the second embodiment, with the dimensional ratios qualitatively different from those of the related art, ultimate compactification of the joint outer diameter is achieved while maintaining the strength and life. To achieve the weight reduction while maintaining the strength and life with the dimensional ratios shown in Table 2, the tripod type constant velocity universal joint 1.sub.2 has the feature that a hollow hole is formed in the trunnion journal, and that a quench-hardened layer is formed on the surface of the hollow hole. This feature is described with reference to
[0083]
[0084] The size of the hollow hole 9a.sub.2 is described with reference to
[0085] With reference to
[0086] In the second embodiment, as illustrated in Table 2, the hollow hole 9a.sub.2 is formed in the trunnion journal 9.sub.2 with a significantly large journal diameter Dj.sub.2. Therefore, significant weight reduction of the tripod member 3.sub.2 can be achieved. Further, the quench-hardened layer H.sub.2 is formed in the hollow hole 9a.sub.2 (including the bottom portion 9b.sub.2). Therefore, the rolling life, strength, strength, and stiffness of the tripod member 3.sub.2 can be secured.
[0087] Description is made of a modification example of the hollow hole with reference to
[0088] In the second embodiment, the root portion 9c.sub.2 of the trunnion journal 9.sub.2 of the tripod member 3.sub.2 is a rib for directly guiding the needle rollers 5.sub.2, but the present invention is not limited thereto. A shoulder portion may be formed on the root portion and a separate inner washer may be interposed between the shoulder portion and the end portions of the needle rollers.
[0089] In the embodiments and the modification examples, description is made of, as an example, the tripod type constant velocity universal joint 1, 1.sub.2 of the single-roller type in which the spherical roller 4, 4.sub.2 is rotatably mounted to the cylindrical outer circumferential surface 10, 10a of the trunnion journal 9, 9.sub.2 through intermediation of the needle rollers 5. However, not limited to this type, the present invention may be applied to a tripod type, constant velocity universal, joint of a double-roller type in which a unit including spherical rollers (outer rollers), needle rollers, and inner rings is externally fitted to a trunnion journal,
[0090] The present invention is not limited to the above-mentioned embodiments. As a matter of course, the present invention may be carried out in various other embodiments without departing from the gist of the present invention. The scope of the present invention is defined in claims, and encompasses the meanings of equivalents described in claims and all changes within the scope of claims.
DESCRIPTION OF REFERENCE SIGNS
[0091] 1, 1a tripod type constant velocity universal joint
[0092] 2, 2.sub.2 outer joint member
[0093] 3, 3.sub.2 tripod member
[0094] 4, 4.sub.2 spherical roller
[0095] 5, 5.sub.2 needle roller
[0096] 6, 6.sub.2 track groove
[0097] 7, 7.sub.2 roller guide surface
[0098] 8, 8.sub.2 trunnion barrel
[0099] 9, 9.sub.2 trunnion journal
[0100] 9a, 9a.sub.2 hollow hole
[0101] 9b, 9b.sub.2 bottom portion
[0102] 10, 10.sub.2 cylindrical outer circumferential surface
[0103] H, H.sub.2 quench-hardened layer
[0104] De effective hardened layer depth