CONNECTOR BETWEEN A WIPER BLADE AND A WIPER ARM DRIVING A WIPING SYSTEM
20180065600 · 2018-03-08
Assignee
Inventors
Cpc classification
B60S1/4006
PERFORMING OPERATIONS; TRANSPORTING
B60S2001/4012
PERFORMING OPERATIONS; TRANSPORTING
B60S1/3848
PERFORMING OPERATIONS; TRANSPORTING
B60S1/4016
PERFORMING OPERATIONS; TRANSPORTING
B60S1/3867
PERFORMING OPERATIONS; TRANSPORTING
B60S1/4019
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A connector for a wiper blade, the connector is configured to cooperate pivotably, by a transverse hinge pin, with an adapter designed to allow an articulation link between the blade and a driving arm, the connector includes a body provided with two opposite side flanges, defining a housing designed to receive the adapter, and a pin between the flanges for the articulation link of the blade to the arm, the flanges include, at each of the ends of the hinge pin, a shoulder configured to allow axial guiding of the articulation link between the blade and the arm, the side flanges is configured to allow lateral flexion of the adapter bearing against the shoulder.
Claims
1-15. (canceled)
16. A connector assembly for a wiper blade, the connector assembly comprising: an adapter comprising two opposite side wings configured to receive, between the two opposite side wings, an end of a driving arm; and a connector, wherein the connector is configured to cooperate pivotably, by a transverse hinge pin, with the adapter, thereby forming an articulation link between the wiper blade and the driving arm, the connector comprising: a body provided with two opposite side flanges, defining a housing configured to receive the adapter; and the transverse hinge pin disposed between the two opposite side flanges with each of two ends of the transverse hinge pin held by one of the two opposite side flanges, the two opposite side flanges comprising, at each end of the transverse hinge pin, a shoulder configured to provide axial guiding of the articulation link between the wiper blade and the driving arm, while establishing an at least partial separation between the two opposite side flanges and the adapter between the two opposite side flanges, thereby limiting friction between the adapter and the two opposite side flanges, and wherein a height of the shoulders is limited to reaching the side wings of the adapter.
17. The connector assembly according to claim 16, wherein the shoulders are substantially circular, coaxial to the transverse hinge pin.
18. The connector assembly according to claim 16, wherein at least one of the two opposite side flanges of the connector is provided with at least one stud, configured to be in mechanical contact with a corresponding side wing of the adapter.
19. The connector assembly according to claim 18, wherein the at least one stud is rectilinear and extends substantially perpendicular to the transverse hinge pin.
20. The connector according to claim 18, wherein the at least one stud has a cross-sectional width that is variable along the stud.
21. The connector assembly according to claim 18, wherein each of the two opposite side flanges of the connector is provided with at least one stud, and wherein the studs are positioned across from each other on the two opposite side flanges of the connector.
22. The connector assembly according to claim 16, wherein the adapter comprises an opening at a first end that extends in a longitudinal direction parallel to the side wings and extending approximately the length of the side wings.
23. A connector for a wiper blade, the connector configured to cooperate pivotably, by a transverse hinge pin, with an adapter, thereby forming an articulation link between the wiper blade and a driving arm, the connector comprising: a body provided with two opposite side flanges, defining a housing configured to receive the adapter; and the transverse hinge pin disposed between the two opposite side flanges with each of the two ends of the transverse hinge pin held by one of the two opposite side flanges, the two opposite side flanges comprising, at each end of the transverse hinge pin, a shoulder configured to provide axial guiding of the articulation link between the wiper blade and the driving arm, wherein a pair of studs is provided on each of the two opposite side flanges, each pair of studs configured to be in mechanical contact with one of the two opposite side wings to reduce rubbing on the side wings, wherein the two studs in each pair of studs are positioned on opposite sides of the transverse hinge pin.
24. The connector according to claim 23, wherein the shoulders are substantially circular, coaxial to the transverse hinge pin.
25. The connector according to claim 23, wherein each of the studs is rectilinear and extends substantially perpendicular to the transverse hinge pin.
26. The connector according to claim 23, wherein each of the studs has a cross-sectional width that is variable along the stud.
27. The connector according to claim 23, wherein the pairs of studs are positioned across from each other on the two opposite side flanges of the connector.
28. A wiper system comprising: a wiper blade; and a connector assembly, the connector assembly comprising: an adapter comprising two opposite side wings configured to receive between them an end of a driving arm; and a connector, wherein the connector is configured to cooperate pivotably, by a transverse hinge pin, thereby forming an articulation link between the wiper blade and the driving arm, the connector comprising: a body provided with two opposite side flanges, defining a housing configured to receive the adapter; and the transverse hinge pin between the two opposite side flanges with each of two ends of the transverse hinge pin held by one of the two opposite side flanges, the two opposite side flanges comprising at each of the two ends of the transverse hinge pin, a shoulder configured to provide axial guiding of the articulation link between the wiper blade and the driving arm, while establishing an at least partial separation between the two opposite side flanges and the adapter between the two opposite side flanges, thereby limiting friction between the adapter and the two opposite side flanges, and wherein a height of the shoulders is limited to reaching the side wings of the adapter.
29. The wiper system according to claim 28, wherein the shoulders are substantially circular, coaxial to the transverse hinge pin.
30. The wiper system according to claim 28, wherein at least one of the two opposite side flanges of the connector is provided with at least one stud, configured to be in mechanical contact with a corresponding side wing of the adapter.
31. The wiper system according to claim 30, wherein the at least one stud is rectilinear and extends substantially perpendicular to the transverse hinge pin.
32. The connector according to claim 30, wherein the at least one stud has a cross-sectional width that is variable along the stud.
33. The wiper system according to claim 30, wherein each of the two opposite side flanges of the connector is provided with at least one stud, and wherein the studs are positioned across from each other on the two opposite side flanges of the connector.
34. The wiper system according to claim 28, wherein the adapter comprises an opening at a first end that extends in a longitudinal direction parallel to the side wings and extending approximately the length of the side wings.
35. The wiper system according to claim 28, wherein the end of the driving arm is U-shaped, and wherein an adapter geometry matches the U-shaped end of the driving arm.
Description
[0031] In those drawings:
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] As illustrated in the drawing, in particular in
[0038] The driving arm 11 is of the hook type, its end 13 being U-shaped. It is designed to be fastened by that end 13 to said adapter 9, removably so as to allow the blade to be changed, in particular if it becomes worn.
[0039] In this case, said blade 3 is a flat blade. It for example comprises a wiping edge 15 and at least one support frame (not shown) supporting said edge. Said frame comprises one or more vertebrae configured to give the blade a curve allowing it to hug the shape of the windshield. The connector 1 is fastened, in particular crimped, on said blade, by its lower part, here in the form of hooks 17 to cooperate with said frame.
[0040] The connector 1 includes a body 19 that has two opposite side flanges 21 designed to define a housing receiving said adapter 9, upon mounting of the blade on the arm. The side flanks 21 support said hinge pin 7 transversely. The adapter 9 is able to interlock movably on said hinge pin 7 by its opening 23 as shown in
[0041] According to the invention, said side flanges 21 comprise, at each of the ends of the hinge pin 7, a shoulder 31 configured to allow axial guiding of said articulation link between the blade and the arm. The side flanges 21 are further configured to allow lateral flexion of the adapter 9, more specifically flexion f of said side wings 27, which are flexible, bearing against said shoulder 31 when the adapter 9 receives a driving arm 11 with dimensions larger than the standard dimension. This dimension in particular pertains to the width 1 of the end 13 of the arm, which in this way can exceed the standard width by several tenths of a millimeter, as illustrated in
[0042] Each of the shoulders 31 advantageously comprises a bearing zone 33 for axial guiding of said articulation link between the blade and the arm, i.e., between the connector and the adapter, and the lateral interval I defined between the edge plane of said shoulder 31 and the plane of the corresponding flange 21 of the connector, as shown in
[0043] Said shoulder 31 is circular here, coaxial to the pin 7, but it may have another shape. It has a maximum diameter corresponding to an alignment of its circumference with a bottom 35 of the arm housing of the adapter. Thus, said lateral flexion f is exerted freely beyond said circumference in the interval I. The side flanges 21 may further comprise a rib substantially orthogonal to said axis of rotation, extending between each of said shoulders 31 and the lower part 17 of the connector.
[0044] At least one of said side flanges 21 of the connector is provided with at least one stud 37 able to be applied with play (not shown) against a corresponding side wing 27 of the adapter, in particular in the case of an arm 11 with a dimension larger than the standard dimension. This establishes secondary axial guiding of said articulation link between the blade and the arm, in addition to the axial guiding by the shoulders 31, and limits any rubbing of the connector 1 against said corresponding side wing 27 of the adapter.
[0045] Said play of the stud is provided to be sufficient to absorb the lateral deformation f of the adapter as illustrated in
[0046] Each of said side flanges 21 of the connector is provided with at least one said stud 37; here there are two on each of said side flanges.
[0047] Said studs 37 are identical to each other, including a slender end section 39, for example conical or rounded, preferably regular, which reduces the rubbing on the side wings 27.
[0048] Said two studs 37 are positioned on either side of said hinge pin 7, on each of said side flanges 21, at equal distances from said hinge pin 7. They are rectilinear, extending substantially perpendicular to said blade 3. Thus, the secondary lateral guiding of the articulation may be done in a balanced manner on either side of the pin 7.
[0049] Said studs 37 are positioned across from one another on said side connector flanges 21, in particular so as to be located across from side wing lugs of the adapter, not shown, where potential rubbing may occur. In such a configuration, it is understood that the distance between two studs situated across from each other is greater than the distance provided between the shoulders 31 in order to have the desired play for the flexion of the side wings of the adapter 9.
[0050] That connector 1 is advantageously made in a single piece, preferably for material molding, in particular plastic. It further includes a median longitudinal plane of symmetry P.
[0051] The fastening device 40 between the wiper blade and the driving arm, also covered by the invention, is more particularly shown in
[0052] The wiper blade 3 comprising the connector 1, also covered by the invention, is shown in
[0053] The wiper system 5 including the wiper blade 3, the arm 11 of said glass wiping system and the fastening device 40 is also shown in
[0054] The invention thus provides the possibility for glass wiping systems of the type with a hooked arm to receive driving arms with a dimension larger than that provided, which is standard, and therefore makes it possible to broaden the range of received arms.