Streamlined Windshield Wipers

The adapter element in the windshield wiper enhances structural integrity by distributing forces, addressing the challenge of maintaining stability under operational loads, thereby improving wiping performance and durability.

JP7721785B2Active Publication Date: 2025-08-12VALEO SYST DESSUYAGE SAS
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Patent Information

Application Number
JP2024501795
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-07-13
Filing Date
2022-07-13
Publication Date
2025-08-12
Estimated Expiration
2042-07-13

AI Technical Summary

Technical Problem

Existing streamlined windshield wipers face challenges in maintaining structural integrity under lateral and torsional forces during operation, particularly due to the articulation connections between the fairing elements.

Method used

The windshield wiper incorporates an adapter element that reinforces the articulation between the central mounting part, end cap, and caliper, using a reinforcement portion and complementary structures to distribute forces effectively, enhancing mechanical stability.

Benefits of technology

The reinforced articulation design improves the wiper's resistance to lateral and torsional forces, ensuring consistent wiping performance and reducing the likelihood of disassembly, while being cost-effective and lightweight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The streamlined flat windshield wiper (1, 10, 600, 700) comprises a longitudinal wiper blade (6), a longitudinal streamlined fairing (5) with a central mounting part (2, 602, 701) and at least one end cap (3, 603, 702) arranged at a distal end of said central mounting part (2, 602, 701), and at least one cap (250) with a claw (250) for holding said longitudinal wiper blade (6). and at least one adapter element (300, 500, 604) fixed at its distal end to said central mounting portion (2, 602, 701), and a proximal end of said at least one end cap (3, 603, 702) and said at least one caliper (210, 605) pivotally articulates to said at least one adapter element (300, 500, 604).
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Description

[Technical Field]

[0001] The present invention relates to a streamlined windscreen wiper for a motor vehicle, and more particularly to an articulation means for said streamlined windscreen wiper. [Background technology]

[0002] In vehicle windshield wipers, there is an increasing desire to incorporate a streamlined appearance into the windshield wiper to the extent that the streamlined elements form a majority of the structure of the wiper blade, such wiper blades being commonly referred to as "hybrid" wiper blades.

[0003] A streamlined appearance offers many advantages, particularly reducing drag from the airflow entering the windshield wiper. The streamlined shape can be configured, among other things, to generate a downward force on the wiper as air flows over it, thereby pushing the wiper against the windshield and improving wiping performance. The streamlined shape also offers a more aesthetically pleasing appearance than wiper blades configured in the traditional style of nested tournament arms.

[0004] Typically, the streamlined appearance is achieved in the form of a rigid fairing that forms part of the wiper blade's structure. The fairing typically comprises several individual components that are articulated to one another to allow the wiper blade to flex and follow the curvature of the windshield as it passes over it. Depending on the length of the blade, the wiper may also include single-level tournament arms (also known as "calipers") that are articulated to the fairing and hold the wiper rubber. These distribute the force of the wiper arms more evenly along the length of the wiper blade.

[0005] In this way, the fairing forms an integral part of the structure of the wiper blade, simplifying its construction.

[0006] However, since the fairing of the wiper blade constitutes a structural element, the articulation connections between the fairing elements must be sufficiently robust to withstand all the forces applied to the windscreen wiper during operation, in particular lateral forces (i.e. forces substantially parallel to the plane of the windscreen and perpendicular to the longitudinal axis of the wiper blade), and any torsional forces transmitted via the caliper to the main structure of the wiper blade.

[0007] Therefore, there is a need to provide a reinforced articulation in hybrid windshield wiper blades. Summary of the Invention

[0008] Thus, according to the invention, a streamlined flat windscreen wiper, in particular for vehicles, is presented, comprising a longitudinal wiper blade, a longitudinal streamlined fairing comprising a central mounting part and at least one end cap arranged at a distal end of said central mounting part, and at least one caliper with pawls for holding said longitudinal wiper blade and at least one stiffening element.

[0009] According to a first aspect, the streamlined windscreen wiper comprises at least one adapter element, said at least one adapter element being fixed at its distal end to said central mounting part, and proximal ends of said at least one end cap and at least one said caliper being pivotally articulated to said at least one adapter element.

[0010] Such an arrangement is advantageous in that the adapter element reinforces the articulation between the central mounting and the end cap. In particular, the fact that the caliper is articulated to the adapter rather than directly to one of the fairing elements allows for better distribution of forces on the wiper blade, reducing the likelihood of the blade coming apart during use.

[0011] In a preferred embodiment, the at least one adapter element further comprises a reinforcement portion extending from a distal end of the adapter element, the reinforcement portion engaging a complementary structure within the end cap.

[0012] Such an arrangement is advantageous in that it provides a rigid connection interface between the central mounting portion, the end cap, and the caliper that is particularly resistant to lateral forces acting on the wiper blade as a result of the wiping action.

[0013] In a particularly preferred embodiment, the reinforcement portion has a small width compared to the remainder of the adapter element.

[0014] This is advantageous in that the adapter element is particularly stiff where it engages the end cap, further strengthening the articulation.

[0015] In a preferred embodiment, the complementary structure comprises at least two ribs extending from the underside of the end cap, the reinforcement being housed between the at least two ribs.

[0016] This is advantageous in that it provides a good mechanical bond between the adapter and the end cap in a manner that is easily provided using conventional injection molding methods known in the art.

[0017] In a particularly preferred embodiment, the reinforcement has an inverted U-shaped cross section.

[0018] This is advantageous in that the caliper can be at least partly located within the reinforcing element, thereby further reinforcing and improving the robustness of the mechanical connection of the articulation.

[0019] In a possible embodiment, the adapter element further comprises a pivot pin, the caliper being rotatably articulated to said pivot pin.

[0020] Preferably, the axis of the pivot pin and the articulation axis of the end cap are separate.

[0021] Preferably, said complementary structure comprises two substantially parallel planes substantially parallel to a longitudinal axis of said windscreen wiper, said caliper being received in said space defined by said planes.

[0022] In another aspect the present invention provides a windscreen wiper comprising a wiper arm, a drive motor configured to drive said wiper arm in a reciprocating motion, a windscreen wiper as described above, The present invention relates to a windshield wiper system comprising:

[0023] In another aspect, the present invention is directed to a windshield wiper or a vehicle comprising the windshield wiper system described above.

[0024] Those skilled in the art will understand that the aspects and features of the invention described above, as well as other aspects and features discussed below and / or illustrated in the drawings, may be combined in any permutation without departing from the scope of the invention.

[0025] These and other aspects, features and advantages of the present invention may be readily understood when considered in light of the following drawings. [Brief explanation of the drawings]

[0026] [Figure 1] FIG. 1 is a perspective view of a streamlined wiper blade according to a first embodiment of the present invention. [Figure 2] FIG. 2 is a perspective view of the underside of the streamlined wiper blade of FIG. [Figure 3] FIG. 3 is an exploded view of the wiper blade of FIG. [Figure 4] FIG. 4 is a detailed view of the streamlined wiper blade of FIG. [Figure 5] Figure 5 is a detailed view of a streamlined windscreen wiper blade according to a second embodiment of the present invention. [Figure 6A] Figure 6A is a variant of a streamlined windscreen wiper blade according to the present invention. [Figure 6B] Figure 6B is an isolated detail view of the staple clip of the modified streamlined windshield wiper blade of Figure 6A; [Figure 7] Figure 7 shows a detailed view of a streamlined windscreen wiper blade according to a third embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0027] The invention will be better understood by examining it in the drawings.

[0028] Although the following description is directed to a single articulation of the windshield wiper 100, it will be readily understood that a windshield wiper may comprise the present invention in one or more of its articulations.

[0029] It will also be understood that when relative terms such as "up, upper, above" and "down, lower, below" are used, such terms are used with reference to the windshield wiper when the rubber wiper blade is placed on a horizontal plane, and in particular "up, upper, above" and "down, lower, below" are used with reference to gravity in the usual manner.

[0030] Figure 1 shows a streamlined windshield wiper 1. The windshield wiper 1 is structurally comprised of a central mounting section 2, two end caps 3, and an arm adapter 4. The central mounting section 2 and the end caps 3 together define an aerodynamically streamlined deflector 5. The deflector 5 runs the length of the windshield wiper 1 and is formed on the top surface, i.e., the surface opposite the windshield against which the blade is used.

[0031] The central mounting part 2 has a centrally arranged adapter part 4 which enables the windscreen wiper 1 to be attached to a windscreen wiper arm of a vehicle in a generally known manner.

[0032] The central mounting portion 2 and the end caps 3 are formed from a rigid thermoplastic material having sufficient strength to withstand all the loads that the wiper blade will experience during use, and thus the central mounting portion 2 and the end caps 3 essentially form the structure of the wiper blade.

[0033] Opposite the deflector 5 is a rubber wiper blade 6 which is held to the windscreen wiper 1 by a series of hooks which will be described below with reference to Figures 2 and 3. The end cap 3 is articulated to the central mounting part 2 and, in combination with the series of hooks, enables the windscreen wiper 1 to conform to the shape of the windscreen for effective wiping performance.

[0034] Figure 2 shows the wiper blade of Figure 1 from below, i.e., from the side opposite the deflector 5. In particular, Figure 2 shows the central mounting portion 2 and one of the end caps 3. The other end cap 3 and the rubber wiper blade 6 have been omitted for clarity.

[0035] Each of the end caps 2 exhibits a pair of hooks 200 located at its distal end which engage the wiper rubber to hold it in place whilst allowing relative movement between the wiper rubber and the end cap along the longitudinal axis of the windscreen wiper 1. This allows the windscreen wiper 1 to conform to the shape of the windscreen on which it is used.

[0036] The windscreen wiper 1 further comprises two calipers 210, one of which is shown in Figure 2. The calipers 210 are articulated at their distal ends to the central mounting part 1 by means of a pivot pin 220. The pivot pin 220 is located in a central part 230 of the caliper 210. Two arms 240 extend from the central part 230 of the caliper 210 and terminate at each end in a pair of pawls 250.

[0037] The claws 250 secure the wiper rubber to the wiper blade by holding it firmly in both the lateral and longitudinal directions. The shape of the caliper 210 and its articulation at the pivot pin 220 allows the windscreen wiper 1 to better adapt to the shape of the windscreen. Furthermore, the force of the wiper arm can be distributed along the length of the wiper rubber. In this way, the wiping performance of the windscreen wiper 1 is optimised.

[0038] Figure 3 shows an exploded view of the windscreen wiper 1 shown in Figure 2. The mounting and articulation of the caliper 210 will now be described. As can be seen from Figure 3, the caliper 210 is not articulated directly to the central mounting part 2, but is in fact mounted on an adapter element 300.

[0039] 3, the adapter element 300 includes a body portion 310 having an overall inverted U-shape that supports the pivot pin 220. The central portion 230 of the caliper 210, which also has an inverted U-shape, therefore fits snugly within the body portion 210 of the adapter element 300. The body portion 310 is configured to be received in a seat portion 320 formed at the distal end of the central mounting portion 2. The seat portion 320 includes positioning means (not shown) and a plurality of retaining clips 330. The positioning means and retaining clips 330 securely hold the adapter element 300, and thus the caliper 210 and wiper rubber.

[0040] Adapter element 300 narrows at its distal end to form extension 340. The inner width of extension 340 is substantially the same as the outer width of arms 240 of caliper 210, and arms 240 are substantially received therein, as shown in FIG.

[0041] Furthermore, the adapter element 300 includes two articulation holes 350 located opposite each other at the distal end of the adapter body 310. The articulation holes 350 are configured to receive two articulation pins 360. The articulation pins 360 are integrally formed with the end cap 3 and located on opposite inner surfaces of the end cap 3 at its proximal end. In this way, the adapter element 300 serves to articulate both the end cap 3 and the caliper 210 to the central mounting part 2.

[0042] 4 shows the central mounting part 2, end cap 3, caliper 210, and adapter element 300 in more detail in their assembled state. Note in particular that adapter element 300 extends beyond the edge of central mounting part 2 so that articulation hole 350 is located outside of central mounting part 2. This arrangement ensures that end cap 3 can pivot freely relative to central mounting part 2.

[0043] 4, end cap 3 includes a pair of ribs 400 extending from the lower inner surface of the end cap. Ribs 400 are positioned such that when adapter element 300 is attached to central mount 2 and end cap 3 is articulated to the adapter as shown, extension 340 is securely housed between ribs 400 and arm 240 is securely housed within extension 340.

[0044] Similarly, the central mounting portion includes a pair of ribs 410 that engage the adapter element 300, thereby further strengthening the connection between the adapter element 300 and the central mounting portion 2. In particular, the ribs 410 carry at least a portion of the lateral load on the adapter element 300, taking some of this load away from the hooks 300 that would otherwise hold the adapter element 300 to the seat portion 320.

[0045] The arms 240 of the caliper 210 are nested within the extensions 340 in the ribs 400 of the end cap 3, so that these parts are firmly locked together in the lateral direction, i.e. perpendicular to the longitudinal axis of the windscreen wiper 1 and parallel to the plane of the windscreen, whilst still allowing free pivoting of the caliper 210. In this way, the articulation of the various parts of the wiper blade is reinforced against the forces normally encountered during wiping, whilst still allowing these parts to pivot freely to follow the curvature of the windscreen.

[0046] The adapter 300 is preferably made from a plastic material, particularly by injection molding, to minimize cost and weight while reducing the possibility of corrosion. However, a U-shaped metal duplex element 420 may be provided to further reinforce the assembly and provide additional durability. The duplex element may be provided as a separate part, as shown in FIG. 4, or alternatively, may be integrated into the adapter element 300 by an overmolding process.

[0047] Alternatively, in certain circumstances it may be advantageous to provide a metal adapter and a plastic dual element, depending on the specific needs of the application.

[0048] 5 shows a possible variant embodiment of the invention in a windscreen wiper 10. The adapter element 500 is similar to the adapter element 300 described above, with the exception in particular of the extension 510. The extension 510 of the adapter element 500 is configured to be longer than the extension 340 of the adapter element 300. As a result, the articulation hole 520 and the corresponding articulation pin of the end cap 7 are offset outwards towards the distal end of the windscreen wiper 10.

[0049] As a result, the pivot axis of the end cap 7 is offset outwards, which offset allows the end cap 7 to rotatably pass without contact over the distal end of the central mounting part 2 in the gap 530, thereby avoiding damage or disassembly of the windscreen wiper 10.

[0050] This is particularly advantageous when the end cap 7 is subjected to an upward twisting force, such as when the rollers and / or brushes of an automatic car wash contact the windscreen wipers. Due to the outwardly offset articulation, the twisting forces generated by this movement are borne by the adapter element 500.

[0051] Furthermore, the outward offset of the articulation joints provides reinforcement for the nesting of the caliper (not shown for clarity), adapter element 500, and end cap 7. In particular, the end cap is provided with horizontal ribs 550 in addition to vertical ribs 540. Ribs 540 and 550 extend from pivot pin 520. Horizontal ribs 550 provide particular resistance to lateral loads, particularly when the caliper is nested within extension 510, as described in connection with the previous embodiments and figures.

[0052] In this way, the articulation of the windscreen wiper 10 is made stronger and the windscreen wiper 10 is more resistant to misalignment at the articulation between the end cap 7 and the adapter element 500 .

[0053] Figure 6A shows a further variant of the streamlined windscreen wiper. In particular, Figure 6A shows this variant from the underside of the windscreen wiper 600. Like the embodiments presented in the previous figures, the streamlined windscreen wiper 600 comprises a central mounting part 602 and two end caps 603, one of which is shown. The windscreen wiper 600 also comprises an adapter element 604 to which a caliper 605 is articulated.

[0054] This variation is distinguished by the presence of staple clip 610, which extends beyond the sides of end cap 603 from front side 611 a to rear side 611 b. Staple clip 610 is inserted into slots 612 a, 612 b and is securely held therein. Staple clip 610 is ideally made from sheet metal because this is simple and inexpensive to manufacture, although it may alternatively be provided from other suitable materials, such as thermoplastics.

[0055] The staple clip 610, by engaging within the end cap 603, can prevent the sides 611a, 611b from separating, particularly in situations where the wiper blade is subjected to heavy loads, such as when it is covered in snow or frozen to the windshield.

[0056] As a result, the staple clip 610 prevents disassembly of the end cap 603 because, with the staple clip 610 in place, the sides 611 a, 611 b of the end cap 603 cannot spread apart a sufficient distance to allow the articulation pin 613 to be released from the adapter element 604.

[0057] FIG. 6B shows staple clip 610 in more detail. Staple clip 610 is in the general shape of a metal strip. The metal strip is bent at both longitudinal ends to provide two retention tabs 614a, 614b. Retention tabs 614a, 614b engage slots 612a, 612b, respectively, to permanently retain staple clip 610 in end cap 603. Optionally, as shown in FIG. 6B, retention tabs 614a, 614b include barbed or serrated edges that bite into end cap 603 to better retain staple clip 610.

[0058] Figure 7 shows a windscreen wiper 700 according to a third embodiment of the invention. The windscreen wiper 700 comprises a central mounting part 701 and two end caps 702, one of which is shown in Figure 7. The windscreen wiper 700 further comprises an adapter element 703.

[0059] It will be apparent that windscreen wiper 700 incorporates many of the aspects of the above-described embodiments, except that windscreen wiper 700 has retaining clip 705 located at the longitudinal extremity of adapter element 703.

[0060] This is particularly advantageous in that it improves the effectiveness of the retaining clip 705 in providing torsional stiffness to the windscreen wiper 700 compared to the arrangements shown in, for example, Figures 2 and 4 .

[0061] Of course, other variations of the present invention are possible in light of the above, and the description of exemplary embodiments presented herein should not be considered exhaustive. [Explanation of symbols]

[0062] Windshield wipers 1, 10, 600, 700 Central mounting section 2, 602, 701 End caps 3,603, 702 Arm Adapter 4 Deflector 5 Rubber wiper blades 6 Hook 200 Caliper 210, 605 Pivot pin 220 Central part 230 Arm 240 Claws 250 Adapter elements 300, 500, 604 Main body 310 Seat section 320 Retaining clips 330, 705 Extension 340, 510 Articulation holes 350, 520 Articulating pin 360, 613 Rib 400, 410, 540, 550 Dual Element 420 Gap 530 Staple Clip 610 Side 611a, 611b Slots 612a, 612b Retention tabs 614a, 614b

Claims

1. - longitudinal wiper blades (6), a longitudinal streamlined fairing (5) comprising a central mounting part (2, 602, 701) and at least one end cap (3, 603, 702) arranged at the distal end of said central mounting part (2, 602, 701); at least one caliper (210, 605) with claws (250) for holding said longitudinal wiper blade (6); A streamlined flat windscreen wiper (1, 10, 600, 700), in particular for a vehicle, comprising: said streamlined flat windscreen wiper comprising at least one adapter element (300, 500, 604), the at least one adapter element (300, 500, 604) is fixed at its distal end to the central mounting portion (2, 602, 701); a proximal end of said at least one end cap (3, 603, 702) and said at least one caliper (210, 605) pivotally articulate to said at least one adapter element (300, 500, 604); the at least one adapter element (300, 500, 604) further comprises a reinforcement (340, 510) extending from a distal end of the adapter element (300, 500, 604); the reinforcement (340, 510) engages with a complementary structure in the end cap (3, 603, 702); the complementary structure comprises at least two ribs (400, 410, 540, 550) extending from the underside of the end cap (3, 603, 702); the reinforcement (340, 510) is housed between the at least two ribs (400, 410, 540, 550); A streamlined flat windshield wiper (1, 10, 600, 700) characterized by:

2. the reinforcement portion (340, 510) has a reduced width compared to the remainder of the adapter element (300, 500, 604); A windscreen wiper (1, 10, 600, 700) according to claim 1.

3. The reinforcement portion (340, 510) has an inverted U-shaped cross section. A windscreen wiper (1, 10, 600, 700) according to claim 1.

4. The adapter element (340, 510) further comprises a pivot pin (220); The caliper is rotatably articulated to the pivot pin (220). A windscreen wiper (1, 10, 600, 700) according to claim 1.

5. The axis of the pivot pin (220) and the axis of the articulation pin (360, 613) of the end cap (3, 603, 702) are separate. A windscreen wiper (1, 10, 600, 700) according to claim 4.

6. said complementary structures (540, 550) comprise two substantially parallel planes substantially parallel to a longitudinal axis of said windscreen wiper, The caliper (210) is accommodated in a space defined by the plane. A windscreen wiper (10) according to claim 1.

7. a wiper arm, a drive motor configured to drive said wiper arm in a reciprocating motion; - a windscreen wiper (1, 10, 600, 700) according to any one of claims 1 to 6, and A windshield wiper system comprising:

8. A vehicle comprising a windscreen wiper system according to claim 7.

Citation Information

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