Abstract
The present invention relates to a pivot assembly for a vehicle wiper system. The assembly includes a pivot shaft rotatably supported in central passage of a pivot housing, a lever coupled to the pivot shaft, and a cover. The cover includes a tubular portion, cylindrical step and a transition portion integrally formed between the tubular portion and the cylindrical step. The cover further includes a cantilever snap extending from inner surface of the transition portion, in longitudinal direction of the cover. A protrusion is formed in the cylindrical step at a location adjacent to the snap. The tubular portion of the cover is received over pivot shaft and a locking profile formed at free end of the snap is received in a recess formed in top end of the pivot housing, thereby restricting longitudinal and rotational movements of the cover with respect to the pivot housing.
Claims
1. A cover for a pivot assembly of wiper system comprising: a tubular portion; a cylindrical step; a transition portion integrally formed between the tubular portion and the cylindrical step; and at least one cantilever snap configured to extend from inner surface of the transition portion, in longitudinal direction of the cover, with the cylindrical step including at least one protrusion extending radially outward that includes sidewalls and an end wall, formed at a location adjacent to the cantilever snap, to provide a predefined clearance between an inner surface of the cylindrical step and the cantilever snap.
2. The cover according to claim 1, wherein diameter of the cylindrical step is greater than the diameter of the tubular portion.
3. The cover according to claim 1, wherein the cantilever snap is configured with a locking profile formed at its free end.
4. The cover according to claim 1, wherein the tubular portion has conical shape with diameter decreasing towards its free end.
5. The cover according to claim 1, wherein two or more cantilever snaps are provided at predefined locations on the inner surface of the transition portion.
6. A wiper system for a motor vehicle comprising: a wiper arm; a pivot shaft configured to be coupled at one end of the wiper arm; a pivot housing configured to rotatably support at least a portion of the pivot shaft; a lever configured to be coupled at a lower end of the pivot shaft; a wiper motor configured to actuate the lever through mechanical linkages; and a cover configured to be received over a portion of the pivot shaft and locked on the pivot housing; wherein the cover comprises a tubular portion, a cylindrical step, and a transition portion integrally formed between the tubular portion and the cylindrical step, wherein the cover comprises at least one cantilever snap extending from inner surface of the transition portion, in longitudinal direction of the cover, with the cylindrical step including at least one protrusion extending radially outward that includes sidewalls and an end wall, formed at a location adjacent to the cantilever snap, to provide a predefined clearance between an inner surface of the cylindrical step and the cantilever snap, wherein the cantilever snap includes a locking profile configured to be received in a recess formed in a top end of the pivot housing.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) Other characteristics, details and advantages of the invention will become clearer on reading the following description, on the one hand, and several examples of realization given as an indication and without limitation with reference to the schematic drawings annexed, on the other hand, on which:
(2) FIG. 1 illustrates a perspective view of pivot assembly, according to an embodiment of present invention;
(3) FIG. 2A illustrates a perspective view of pivot assembly by elimination pivot housing and cover, according to an embodiment of present invention;
(4) FIG. 2B illustrates a cross-sectional view of pivot assembly taken along line A-A in FIG. 2A, according to an embodiment of present invention;
(5) FIG. 2C illustrates an enlarged view of region Z1 of FIG. 2B, according to an embodiment of present invention;
(6) FIG. 3A illustrates a perspective view of the pivot housing, according to an embodiment of present invention;
(7) FIG. 3B illustrates an enlarged view of region Z2 of FIG. 3A, according to an embodiment of present invention;
(8) FIG. 4A illustrates a perspective view of pivot assembly by removing cover, according to an embodiment of present invention;
(9) FIG. 4B illustrates an enlarged view of region Z3 of FIG. 4A, according to an embodiment of present invention;
(10) FIG. 5A illustrates a perspective view of cover, according to an embodiment of present invention;
(11) FIG. 5B illustrates a perspective view of cover from underneath, according to an embodiment of present invention;
(12) FIG. 5C illustrates a bottom view of cover, according to an embodiment of present invention;
(13) FIG. 5D illustrates a cross-sectional view of cover taken along line B-B in FIG. 5C, according to an embodiment of present invention;
(14) FIG. 5E illustrates a cross-sectional view of cover having two cantilever snaps, according to an embodiment of present invention;
(15) FIG. 6A illustrates a cross-sectional view of the pivot assembly taken along line C-C in FIG. 1, according to an embodiment of present invention;
(16) FIG. 6B illustrates an enlarged view of region Z4 of FIG. 6A, according to an embodiment of present invention; and
(17) FIG. 6C illustrates an enlarged view of cross section of pivot assembly with cover having two cantilever snaps, according to an embodiment of present invention.
DETAILED DESCRIPTION OF THE INVENTION
(18) The characteristics, variants and different modes of realization of the invention may be associated with each other in various combinations, in so far as they are not incompatible or exclusive with each other. In particular, variants of the invention comprising only a selection of features subsequently described in from the other features described may be imagined, if this selection of features is enough to confer a technical advantage and/or to differentiate the invention from prior art.
(19) In the following description, the designations top, upper, bottom, lower, radial and longitudinal refer to the orientation of the pivot assembly when assembled on the vehicle. The top end and upper end corresponds to the end facing in upward direction. The bottom end and lower end corresponds to the end facing downward direction. Further, the longitudinal direction corresponds to the direction along axes of the cover, pivot shaft and/or the housing body of the pivot housing. The radially outward corresponds to the direction perpendicular to the longitudinal axis, along the radius and moving away from the axis.
(20) As illustrated in FIG. 1, a pivot assembly 100 for a vehicle wiper system includes a pivot shaft 102 rotatably supported in a pivot housing 104. A wiper arm (not shown) is coupled at upper end of the pivot shaft 102. Further, a lever 108 is coupled at lower end of the pivot shaft 102. The lever 108 is driven by a wiper motor through suitable linkages to rotate the pivot shaft 102, in turn pivoting the wiper arm of the wiper system. A cover 106 is mounted on the pivot shaft 102 and locked on the pivot housing 104.
(21) The pivot housing 104 may have a mounting leg and other similar provisions for mounting the wiper assembly on the vehicle and/or for connecting one pivot assembly with the other.
(22) FIGS. 2A and 2B illustrate a perspective view and a cross sectional view of the pivot assembly 100 without pivot housing 104 and cover 106. As shown, the pivot shaft 102 is coupled to one end of the lever 108 such that lever 108 can be actuated to rotate the pivot shaft 102 about the axis of the pivot shaft 102. Further, one or more bearings 118 may be provided on the portion of the pivot shaft 102 which is rotatably supported by the pivot housing 104. As illustrated in FIG. 2C, a washer 110 may be provided on the pivot shaft 102 such that the washer 110 rests on top edge of the pivot housing 104, in an assembled state. A circlip 112 is engaged in a circlip groove 114 formed on the pivot shaft 102, to restrict the upward movement of the washer 110. An O-ring 116 may be provided above top bearing 116 for sealing.
(23) As illustrated in FIG. 3A, the pivot housing 104 includes a housing body 120 having a top end 120a and a bottom end 120b. The housing body 120 further includes a central passage 122 to accommodate and rotatably support at least a portion of the pivot shaft 102. One or more bearings 118 may be provided in the central passage 122 at predefined locations. The cover 106 is intended to be locked at a top end 120a of the housing body 120 of the pivot housing 104. FIG. 3B illustrates an enlarged view of the top end 120a of the pivot housing 104. As shown, at least one recess 124 is formed at the top end 120a of the housing body 120 such that the recess 124 has open access at top edge and at outer surface of the top end 120a.
(24) FIG. 4A illustrates the pivot assembly 100 without the cover 106. As shown, the pivot shaft 102 is received in the central passage 122 of the pivot housing 104 and the lever 108 is coupled to the lower end of the pivot shaft 108 extending out from the bottom end 120b of the pivot housing 104. As illustrated in FIG. 4B, the washer 110 rests on top end 120a of the pivot housing 104 such that the opening of the recess 124 at top edge of the top end 120a is covered by the washer 110. Further, the circlip 112 is engaged in the circlip groove 114 such that the vertical movement of the washer 110 and the pivot housing 104 is restricted.
(25) Now, the cover 106 is illustrated in FIGS. 5A, 5B, 5C, and 5D. The cover 106 includes a hollow tubular portion 126, a cylindrical step 128 formed at one end of the tubular portion 126 and a flange 130 formed at the free end of the cylindrical step 128. The diameter of the cylindrical step 128 is greater than the diameter of the tubular portion 126 and a transition portion 138 is integrally formed between the tubular portion 126 and the cylindrical step 128. The cylindrical step 128 further includes at least one cantilever snap 132 formed near inside wall of the cylindrical step 128. The cantilever snap 132 extends from the inner surface of the transition portion 138, parallel to the wall of the cylindrical step 128, and a locking profile 132a is formed at the free end of the cantilever snap 132. Moreover, a protrusion 136 is formed in the wall of the cylindrical step 128 adjacent to the cantilever snap 132, to provide a predefined clearance 140 between the cantilever snap 132 and the inner surface of the cylindrical step 128. This clearance 140 allows the cantilever snap 132 to bend outwards while locking the cover 106 on the pivot housing 104. Further, a plurality of continuous ribs 134 are formed on the inner surface of the transition portion 138 and inner surface of the cylindrical step 128. The rib 134 has a horizontal portion formed on the inner surface of the transition portion 138 and a vertical portion formed on the inner surface of the cylindrical step 128. When the cover 106 is locked on the pivot housing 104, the ribs 134 acts as a seating portion for the washer 110.
(26) In an alternate embodiment of the present invention, the cover 106 may include two or more cantilever snaps 132. FIG. 5E illustrates an exemplary embodiment of the cover 106 having two cantilever snaps 132, 132, extending from the inner surface of the transition portion 138, parallel to the wall of the cylindrical step 128. Further, locking profiles 132a, 132a are formed at the free ends of the respective cantilever snaps 132, 132. Moreover, two protrusions 136, 136 are formed in the wall of the cylindrical step 128 adjacent to the cantilever snaps 132, 132, to provide a predefined clearances 140, 140 between the cantilever snaps 132, 132 and the inner surface of the cylindrical step 128, respectively.
(27) As illustrated in FIGS. 6A and 6B, the cover 106 is sleeved over the pivot shaft 102 such that the cylindrical step 128 is oriented towards the pivot housing 104. The cover 106 is moved over the pivot shaft 102 towards the pivot housing 104 until the locking profile 132a of the cantilever snap 132 contacts the washer 110. The locking profile 132a has predefined tapered portions to gradually deform the snap 132 outwards upon application of the force on the cover 106. During further movement of the cover 106 towards the pivot housing 104, the cantilever snap 132 comes back to its neutral position from deformed position and thereby the locking profile 132a is received in the recess 124 of the housing body 120. In locked state, the washer 110 restricts upward movement of the cover 106 whereas the recess 124 restricts rotational movement of the cover 106 with respect to the pivot housing 104. In an assembled state, the cover 106 is fixed to the pivot housing 104 and the pivot shaft 102 is free to rotate with respect to the cover 106 and the pivot housing 104.
(28) FIG. 6C illustrates an alternate embodiment of the present invention, wherein the cover 106 may be locked on the housing body 120 by two cantilever snaps 132, 132. The cantilever snaps 132, 132 are received in the corresponding recesses 124, 124 provided at the top end 120a of the housing body 120.
(29) In an embodiment of the present invention, the diameter of the tubular portion 126 of the cover 106 may increase from free end towards the transition portion 138.
(30) In an embodiment of the present invention, a predefined clearance is provided between inner diameter of the tubular portion 126 and the outer diameter of the pivot shaft 102.
(31) In a preferred embodiment of the present invention, the cover 106 is manufactured as a single part.
(32) In a preferred embodiment of the present invention, the cover 106 is made from any suitable plastic material such as Polypropylene (PP).
(33) In an alternate embodiment of the present invention, any other suitable material may be used for manufacturing the cover 106.
(34) The invention shall not, however, be limited to the means and configurations described and illustrated herein, and shall also extend to any equivalent means or configuration described and illustrated herein, and to any technical combination operating such means.
LIST OF REFERENCE SIGNS
(35) 100 Pivot assembly 102 Pivot shaft 104 Pivot housing 106 Cover 108 Lever 110 Washer 112 Circlip 114 Circlip groove 116 O-ring 118 Bearings 120 Housing body 120a Top end of housing 120b Bottom end of housing 122 Central passage 124, 124 Recess 126 Tubular portion 128 Cylindrical step 130 Flange portion 132, 132 Cantilever snap 132a, 132a Locking profile 134 Ribs 136, 136 Protrusion 138 Transition portion 140, 140 Clearance