Pulley device
09810308 · 2017-11-07
Assignee
Inventors
Cpc classification
F16C35/073
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C13/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2361/63
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H7/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pulley device comprising a rolling bearing including an inner ring defining a central bore, and outer ring and rolling elements mounted between the inner ring and the outer ring, a pulley secured in rotation with the outer ring and provided with a feature for engaging with a transmission member. The pulley additionally includes a screw comprising a head and a shank housed in the central bore of the inner ring, the screw being configured to fix the pulley device to a motor support. The pulley device also comprises a first sleeve arranged between the inner ring and the screw, on the side of the motor support. The first sleeve includes an inner surface that has a frustoconical portion having an increasing diameter toward the head of the screw.
Claims
1. A pulley device, comprising: a rolling bearing including: an inner ring defining a central bore, an outer ring, and rolling elements mounted between the inner ring and the outer ring; a pulley secured in rotation with the outer ring and provided with an element for engaging with a transmission member; a screw comprising a head and a shank housed in the central bore of the inner ring, the screw being configured to fix the pulley device to a motor support; a first sleeve arranged between the inner ring and the screw, on the side of the motor support; the first sleeve including an inner surface that has a frustoconical portion having an increasing diameter toward the head of the screw; and a second sleeve arranged radially between the inner ring and the screw, on the side of the head of the screw, the first sleeve and the second sleeve being configured to prevent contact between the screw and the inner ring.
2. The device according to claim 1, further comprising an axial gap defined between the first sleeve and the second sleeve arranged in the bore of the inner ring, the axial gap having a length one of greater than or equal to half of the length of the bore.
3. A pulley device, comprising: a rolling bearing including: an inner ring defining a central bore, an outer ring, and rolling elements mounted between the inner ring and the outer ring; a pulley secured in rotation with the outer ring and provided with an element for engaging with a transmission member; a screw comprising a head and a shank housed in the central bore of the inner ring, the screw being configured to fix the pulley device to a motor support; a first sleeve arranged between the inner ring and the screw, on the side of the motor support; the first sleeve including an inner surface that has a frustoconical portion having an increasing diameter toward the head of the screw; a second sleeve arranged radially between the inner ring and the screw, on the side of the head of the screw, the second sleeve further comprising an inner surface that has a frustoconical portion having a diameter increasing toward the first sleeve.
4. The device according to claim 1, wherein the first sleeve and the second sleeve have an identical construction.
5. The device according to claim 1, wherein the inner surface of at least one of the first sleeve and the second sleeve has a frustoconical portion having an increasing diameter and emerging opposite the other sleeve.
6. The device according to claim 1, wherein at least one of the first sleeve and the second sleeve has a cylindrical outer surface provided with at least one rib positioned bearing against the inner ring of the rolling bearing.
7. The device according to claim 1, wherein the inner surface of the first sleeve is frustoconical over more than 80% of its axial length.
8. The device according to claim 1, wherein the frustoconical portion of the first sleeve extends over the entire respective inner surface.
9. The device according to claim 1, wherein a minimum diameter of the inner surface of the first sleeve is smaller than a diameter of the shank of the screw.
10. The device according to claim 1, wherein one of the first sleeve and the second sleeve is provided with an outer bevel and an end oriented toward another of the first and the second sleeve.
11. The device according to claim 1, wherein the first sleeve is mounted on the inner ring by one of overmolding, gluing, or pressing.
12. The device according to claim 1, wherein the first sleeve is made from a synthetic material.
13. The device according to claim 1, wherein the first sleeve is made from a polyamide reinforced with glass fibers.
14. The device of claim 3, further comprising: an axial gap defined between the first sleeve and the second sleeve arranged in the bore of the inner ring, and the axial gap having a length one of greater than or equal to half of the length of the bore.
15. The device according to claim 3, wherein at least one of the first sleeve and the second sleeve has a cylindrical outer surface provided with at least one rib positioned bearing against the inner ring of the rolling bearing.
16. The device according to claim 3, wherein a minimum diameter of the inner surface of the first sleeve is smaller than a diameter of the shank of the screw.
17. The device according to claim 3, wherein one of the first sleeve and the second sleeve is provided with an outer bevel and an end oriented toward another of the first sleeve and the second sleeve.
18. The device according to claim 3, wherein the first sleeve is mounted on the inner ring by one of overmolding, gluing, or pressing.
19. The device according to claim 1, wherein the first sleeve is made from a synthetic material.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The invention will be better understood and other advantages thereof will appear more clearly in light of the following description, provided solely as a non-limiting example and done in reference to the appended drawings, in which:
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(12)
(13) The pulley device 1 is designed to be mounted on a motor support 100, partially shown in
(14) Hereinafter, the terms “axial” and “radial” are defined in relation to the axis X1. Thus, an axial direction is parallel to the axis X1 and a radial direction is perpendicular to the axis X1 and secant to that axis. An axial surface is perpendicular to an axial direction and a radial surface is perpendicular to a radial direction.
(15) The ball bearing 2 includes an inner ring 22, an outer ring 24 and rolling elements 26 mounted between the inner ring 22 and the outer ring 24. In the non-limiting example of
(16) The pulley 3 is fixed on the outer ring 24, for example by gluing, overmolding, tight mounting or crimping. The pulley 3 is secured in rotation, around the axis X1, with the outer ring 24. The pulley 3 is provided with an outer peripheral surface 30, i.e., the surface of the pulley 3 oriented radially outward relative to the axis X1. This surface 30 is provided to receive, by bearing, a belt 32 shown in mixed lines in
(17) The fastening screw 4 is received in the bore 10 of the device 1. The screw 4 comprises a head 42 and a shank 44, which extends from the head 42 to a threaded end 46. Reference D44 denotes the constant diameter of the shank 44. Reference X4 also denotes a longitudinal axis of the screw 4, which is superimposed on the axis X1 when the screw 4 is received in the bore 10.
(18) The pulley device 1 comprises a first sleeve 6 and a second sleeve 5 that delimit the bore 10 with the inner ring 22. The sleeves 5 and 6 are made from a synthetic material, for example polyamide reinforced with glass fibers. The sleeves 5 and 6 are mounted on the inner ring 22 by overmolding, gluing or pressing.
(19) The second sleeve 5, shown in detail in
(20) The sleeve 5 is centered on an axis X5 that is combined with the axes X1 and X4 in the mounted configuration of the pulley device 1. Reference L5 denotes the axial length of the sleeve 5.
(21) The sleeve 5 comprises an inner axial portion 52, which is positioned radially between the inner ring 22 and the shank 44 of the screw 4, and an outer axial portion 54 that is positioned axially between the inner ring 22 and the head 42 of the screw 4. The portion 52 includes a cylindrical outer surface 520, provided to come into contact with the inner ring 22. In the example of
(22) The sleeve 5 further comprises an inner radial surface 500 which, in the assembled configuration, is oriented toward the axis X1 and the screw 4. The surface 500 is frustoconical over the majority of its length L5. The surface 500 comprises a cylindrical portion 57, in contact with the shank 44 in the mounted configuration of the pulley device 1, and a frustoconical portion 58. The frustoconical portion 58 has a diameter D58 that increases toward the first sleeve 6. Reference D52 denotes the maximum inner diameter of the sleeve 5, measured on the side of the portion 52, and reference D54 also denotes the minimum inner diameter of the sleeve 5, measured on the side of the portion 54. The diameter D52 is strictly greater than the diameter D54. In particular, the diameter D54 is the diameter of the cylindrical portion 57. Before the shank 44 of the screw 4 is inserted in the bore 10, the diameter D54 is slightly smaller than the diameter D44 of the shank 44 of the screw 4, such that, when the screw 4 is received in the bore 10 of the pulley device 1, the sleeve 5, in particular its cylindrical portion 57, is radially expanded and exerts a retaining force on the screw 4.
(23) The portion 52 of the sleeve 5 includes an end 53, which is oriented toward the first sleeve 6 and includes an annular surface 530 perpendicular to the axis X5. The end 53 of the sleeve 5 is provided with a bevel 56 arranged at the junction between the surfaces 520 and 530. The bevel 56 is provided to facilitate the mounting of the sleeve 5 in the inner ring 22 of the rolling bearing 2.
(24) The frustoconical portion 58 extends, from the annular surface 530, over more than 80% of the lengths L5 of the sleeve 5. In practice, the portion 58 extends over more than 90% of the lengths L5.
(25) According to one alternative of the invention that is not shown, the frustoconical portion 58 can extend over the entire length L5. In that case, the surface 500 does not comprise a cylindrical portion.
(26) The first sleeve 6, shown in detail in
(27) The sleeve 6 is centered on an axis X6 that is combined with the axes X1, X4 and X5 in the mounted configuration of the device 1. Reference L6 denotes the axial length of the sleeve 6.
(28) The sleeve 6 comprises an inner axial portion 62, which is positioned radially between the inner ring 22 and the shank 44 of the screw 4, and an outer axial portion 64, which is positioned axially between the inner ring 22 and the motor support 100. The portion 62 includes a cylindrical outer surface 620 provided to come into contact with the inner ring 22. In the example of
(29) The sleeve 6 further comprises an inner radial surface 600 which, in the assembled configuration, is oriented toward the axis X1 and the screw 4. The surface 600 is frustoconical over most of its length L6. The surface 600 comprises a cylindrical portion 67, bearing on the shank 44 in the mounted configuration of the pulley device 1, and a frustoconical portion 68. The frustoconical portion 68 has a diameter D68 that increases toward the second sleeve 5. Reference D62 denotes the maximum inner diameter of the sleeve 6, measured on the side of the portion 52, and reference D64 also denotes the minimum inner diameter of the sleeve 6, measured on the side of the portion 64. The diameter D62 is strictly larger than the diameter D64. In particular, the diameter D64 is the diameter of the cylindrical portion 67. Before insertion of the shank 44 of the screw 4 in the bore 10, the diameter D54 is slightly smaller than the diameter D44 of the shank 44 of the screw 4, such that, when the screw 4 is received in the bore 10 of the pulley device 1, the sleeve 6, in particular the cylindrical portion 67, is radially expanded and exerts a retaining force on the screw 4.
(30) The portion 62 of the sleeve 6 includes an end 63, which is turned toward the second sleeve 5 and includes an annular surface 630 perpendicular to the axis X6. The end 63 of the sleeve 6 is provided with a bevel 66 arranged at the junction between the surfaces 620 and 630. The bevel 66, like the bevel 56 of the second sleeve 5, is provided to facilitate the mounting of the sleeve 6 in the inner ring 22 of the rolling bearing 2. The frustoconical portion 68 extends, from the annular surface 630, over more than 80% of the length L6 of the sleeve 6. In practice, the portion 68 extends over more than 90% of the lengths L6.
(31) According to one alternative of the invention that is not shown, the frustoconical portion 68 extends over the entire length L6. In this case, the surface 600 does not comprise a cylindrical portion.
(32) As shown in
(33) At this gap E, the inner ring 22 directly delimits the bore 10 radially to the axis X1. This allows a significant reduction in the weight of the pulley device 1. Furthermore, owing to the frustoconical portion of the surface 600, the insertion of the screw 4 is facilitated, since the end 46 of the screw 4 does not abut against a junction edge of the surfaces 600 and 630. The frustoconical nature of the surface 58 also facilitate the insertion of the shank 44 of the screw into the bore 10 while allowing angular play between the parts 4 and 5, during this insertion.
(34) Other embodiments of the invention are described below in reference to
(35) According to the second embodiment, shown in
(36) According to the third embodiment, shown in
(37) According to one embodiment not shown in the figures, the sleeve 6 is as described above, while the sleeve 5 does not include a frustoconical portion and its surface 500 is cylindrical over its entire length L5.
(38) According to another alternative not shown in the figures, the frustoconical portions 58 and 68 extend over the entire inner surfaces 500 and 600 of the sleeves 5 and 6.
(39) Furthermore, the pulley device 1 can be configured differently from