WIPER FRAME ELEMENT WITH AT LEAST ONE CHANNEL FOR DISTRIBUTING WINDSHIELD WIPER FLUID
20190009751 · 2019-01-10
Assignee
Inventors
Cpc classification
B60S2001/3898
PERFORMING OPERATIONS; TRANSPORTING
B60S1/381
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to an element (14) for a wiper frame, comprising at least one channel (45a, 45b) for the distribution of windshield wiper fluid and characterized in that means (49) for spreading the fluid are provided in the at least one channel (45a, 45b) in the element (14).
Claims
1. An element for a windshield wiper blade, comprising: at least one windshield washer liquid distribution channel, wherein said element comprises in said at least one channel, means for spreading said liquid.
2. The element as claimed in claim 1, wherein the thickness of the channel at the level of the spreading means is greater than or equal to the minimum thickness of the channel.
3. The element as claimed in claim 1, wherein said at least one channel is of elongate shape, the spreading means extend over at least a part of the length of said at least one channel, or even over substantially all the length of said at least one channel.
4. The element as claimed in claim 1, wherein the spreading means comprise at least one slot formed in the element at the periphery of said at least one channel and able to collect by capillarity and/or by gravity at least some of the liquid.
5. The element as claimed in claim 1, wherein the spreading means are formed at the periphery of a lower zone of said at least one channel.
6. The element as claimed in claim 4, wherein the spreading means comprise a plurality of slots.
7. The element as claimed in claim 5, further comprising two channels.
8. The element as claimed in claim 1, wherein the spreading means include at least one longitudinal part of said at least one channel having at least one longitudinal edge, said at least one longitudinal part being of polygonal cross section.
9. The element as claimed in claim 1, wherein the element is a cover element of the blade comprising an aerodynamic deflector.
10. A windshield wiper blade comprising the element as claimed in claim 9.
11. The blade as claimed in the preceding claim 10, wherein each slot is formed in the element so that, in cross section, the acute angle between the longitudinal plane of symmetry of the slot and the longitudinal plane of symmetry of the blade is less than or equal to 45.
12. A method of manufacturing a windshield wiper blade element as claimed in claim 1, comprising formation of liquid spreading means in said at least one channel.
13. The method as claimed in claim 12, wherein formation of the spreading means comprises the formation in the element of at least one longitudinal slot at the periphery of said at least one channel.
14. The method as claimed in claim 12, wherein formation of the spreading means comprises the formation in said at least one channel of at least one longitudinal part having at least one longitudinal edge.
15. The method as claimed in claim 12, wherein formation of the spreading means comprises the formation in said at least one channel of at least one longitudinal part of polygonal cross section.
Description
DESCRIPTION OF THE FIGURES
[0030] The invention will be better understood and other details, features and advantages of the invention will become apparent on reading the following description given by way of nonlimiting example and with reference to the appended drawings in which:
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DETAILED DESCRIPTION
[0043] In the description that follows, the terms longitudinal and lateral refer to the orientation of the windshield wiper blade according to the invention. The longitudinal direction corresponds to the principal axis of the blade along which it extends, whilst the lateral orientations correspond to straight lines that are concurrent, i.e. that cross the longitudinal direction, in particular that are perpendicular to the longitudinal axis of the blade in its plane of rotation. For the longitudinal directions, the terms exterior and interior are to be appreciated relative to the point at which the blade is fixed to a windshield wiper arm, the term interior corresponding to the part where the arm and a half-blade extend. Finally, the directions referred to as upper or lower correspond to orientations perpendicular to the plane of rotation of the windshield wiper blade, the term lower containing the plane of the windshield.
[0044] Referring to
[0045] There is shown in
[0046] Here the blade 10 comprises a longitudinal cover element 14, a longitudinal squeegee 16, generally made of rubber, and at least one longitudinal spine 18 that stiffens the squeegee 16 so as to favor the application of this squeegee 16 to the windshield.
[0047] The cover element 14 of the blade 10 includes an upper aerodynamic deflector 20 intended to improve the operation of the windshield wiper, the object of this deflector 20 being to improve the pressing of the blade 10 onto the windshield and therefore the aerodynamic performance of the system.
[0048] The blade 10 further comprises tips or clips 22 for attaching the squeegee 16 and the spine 18 to the cover element 14, these clips 22 being situated at each of the longitudinal ends of the cover element 14.
[0049] Here the cover element 14 of the blade is produced in two independent parts that are disposed substantially end to end and separated from one another by an intermediate connector 24. This connector 24 is therefore inserted between the two parts of the cover element 14 and may comprise means for fluidic connection of means for feeding windshield washer liquid from the connector 24 to pipes of the element 14.
[0050] For mounting it on the arm 12, the blade 10 comprises an adapter 26 mounted on the connector 24 and allowing articulation of the blade 10 relative to the arm 12. The articulation of the blade 10 relative to the arm 12 is an articulation in accordance with a movement of rotation about a rotation axis Y perpendicular to the longitudinal axis of the blade 10. The blade 10 must in fact have at least one degree of freedom in rotation relative to the arm 12, and more specifically relative to an endpiece 28 of the arm 12, to allow the blade 10 to follow the curvature of the windshield.
[0051]
[0052] The support element 30a comprises two longitudinal lateral ribs 46, for example in the form of two blade-like members. These ribs 46 are substantially coplanar, each rib 46 extending laterally from the side opposite the other rib. The rib 46 situated at the front of the blade 10 therefore extends forwards and the rib 46 situated at the rear of the blade extends rearwards.
[0053] The cover element 14 may comprise at least one longitudinal channel 45 for the passage of the windshield washer liquid, connected to appropriate distribution means, for example at the level of the connector 24. As shown in
[0054] There has been shown in the
[0055] The cover element 14 of the blade further comprises at its lower end means of attachment to the support element 30a. In the example shown, the cover element 14 comprises two longitudinal lateral hooks 50 that are intended to cooperate with the ribs 46 of the support member 30a.
[0056] The hooks 50 are substantially coplanar and each defines a slot in which is mounted and in which can slide the support element 30a. The hook 50 situated at the front of the blade therefore extends rearwards and the hook 50 situated at the front of the blade extends forwards.
[0057] The support element 30a of the blade 10 also comprises a first housing or lower housing 32 receiving a longitudinal heel 34 of the squeegee 16. The squeegee 16 is for example of the fir tree shape type, well known to the person skilled in the art. Its upper end is connected by a hinge 36 and a damper element 38 to the heel 34. In known manner, in operation, the squeegee 16 may come to abut on the element 38 which damps its forward or rearward return.
[0058] The housing 32 is configured to receive the heel 34 of the squeegee 16 when it slides longitudinally. This housing 32 is delimited by a longitudinal bottom wall 39 and by two lateral walls 40. The upper edges of the lateral walls 40 are connected to the bottom wall 39 and their lower ends are each connected to a longitudinal rim 41. These rims 41 are substantially coplanar and extend toward one another. They delimit between them a slot in which is mounted and in which can slide a thinner lower part of the heel 34, which has a section substantially in the shape of a T.
[0059] The support element 30a comprises a second housing or upper housing 42 to receive the spine 18, which therefore extends above the heel 34 of the squeegee 16.
[0060] The housing 42 is configured to receive the spine 18 when it slides longitudinally. This housing 42 is delimited by the aforementioned bottom wall 39, by two lateral walls 43, and by an upper wall 44. The lower edges of the lateral walls 43 are connected to the bottom wall 39 and their upper edges are each connected to the upper wall 44.
[0061] The spine 18 has a curved shape when at rest and comprises a convex curved upper face and a concave curved lower face.
[0062] A heating element 19 such as a heating film of resistive material may be fixed to the upper face of the spine 18.
[0063]
[0064] As shown in
[0065] According to the invention, at least one of the channels 45a, 45b of the blade 10, and preferably each of them, is provided with spreading means.
[0066] In a first embodiment, as shown in
[0067] The slots 49 are intended to absorb the liquid by capillarity and/or by gravity. They may have in cross section any type of peripheral contour, for example a polygonal or curved peripheral contour.
[0068] It is seen in the
[0069] For spreading by capillarity, preference will be given to a polygonal peripheral contour, for example slots in the shape of a triangle (a V) as shown in
[0070] To reinforce the effect of capillarity by gravity, the slots 49 are advantageously formed in a lower part of the channels 45a, 45b, so that in cross section their axes of symmetry are not greatly inclined relative to the vertical in the operational configuration of the blade 10. Accordingly, for spreading to be favored by gravity, the acute angle between the longitudinal plane of symmetry F of the slot 49 and the longitudinal plane of symmetry B of the blade 10 is advantageously less than or equal to 45 (
[0071] Alternatively, still to benefit from the effect of gravity, the channels 45a, 45b may each comprise at least two longitudinal slots 49 formed in a lower part of the blade 10 (
[0072] In a second embodiment, which may be combined with the first embodiment, the spreading means are constituted by at least one longitudinal portion of the blade 10, preferably the entire length of the blade 10, in which the cross section S of the channels 45a, 45b features at least one corner (or edge). In this embodiment, it is the corner or corners of the channels 45a, 45b that generate the capillarity. The channels 45a, 45b therefore typically have a polygonal cross section S, for example a square section S as shown in
[0073] A method of manufacturing the blade 10 according to the invention may comprise a step of formation of the spreading means in at least one of the channels 45a, 45b of the element 14.
[0074] According to the first embodiment, the formation of the spreading means comprises, for example during the extrusion of the channels 45a, 45b of the element 14, the formation of at least one longitudinal slot 49 at the periphery of at least one of the channels 45a, 45b.
[0075] According to the second embodiment, the step of formation of the spreading means comprises, for example during the extrusion of the channels 45a, 45b of the element 14, the formation of at least one longitudinal angular part in at least one of the channels 45a, 45b. In this case, the longitudinal angular part is advantageously of polygonal cross section S in at least one of the channels 45a, 45b.