Film hinge for a windshield wiper device
10427648 ยท 2019-10-01
Assignee
Inventors
- Viktor Hackl (Sopron, HU)
- Peter Deak (Budapest, HU)
- Michael Weiler (Buehl, DE)
- Attila Geleta (Budapest, HU)
Cpc classification
B60S1/0455
PERFORMING OPERATIONS; TRANSPORTING
B60S2001/3812
PERFORMING OPERATIONS; TRANSPORTING
B60S1/3801
PERFORMING OPERATIONS; TRANSPORTING
B60S1/32
PERFORMING OPERATIONS; TRANSPORTING
B60S1/3411
PERFORMING OPERATIONS; TRANSPORTING
B60S1/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention relates to a windscreen wiping device (100) for a vehicle, comprising a wiper blade (2) with an elongate upper part (10) and an elongate lower part (12), which are configured to be at least partially bendable. Furthermore, a plurality of connecting elements (18) for connecting the upper part (10) and the lower part (12) are provided, said connecting elements being spaced apart from one another along a longitudinal extent (8) of the wiper blade (2) and being designed to permit a movement of the upper part (10) and of the lower part relative to each other with a movement component along a longitudinal extent (8) of the wiper blade (2). Furthermore, a multiplicity of the plurality of connecting elements (18) are connected to the upper part (10) via a first film hinge in each case and to the lower part (12) via a second film hinge in each case. Furthermore, a film-hinge stop device is provided in order to limit a rotational movement of the connecting elements (18) relative to at least one part from the elongate upper part and the elongate lower part.
Claims
1. A windshield wiper device for a vehicle, comprising a wiper blade (2) having an elongated top part (10), which is configured to be at least partially bendable, an elongated bottom part (12), which is configured to be at least partially bendable, a plurality of connecting elements (18) connecting the top part (10) and the bottom part (12), wherein the connecting elements (18) are spaced apart from one another along a longitudinal extent (8) of the wiper blade (2), wherein the connecting elements (18) are configured to allow for a movement of the top part (10) and of the bottom part in relation to one another with a movement component along the longitudinal extent (8) of the wiper blade (2), a film hinge (20) disposed between one of the connecting elements (18) and one of the top part (10) or the bottom part (12), wherein the film hinge is configured to flex and resiliently deform based on relative movement of the top and bottom parts (10, 12), and the connecting element (18) is configured to pivot relative to the one of the top part (10) or the bottom part (12) as the film hinge (20) flexes and resiliently deforms, wherein the film hinge has a first end fixed to the one of the top part (10) or bottom part (12), and a second opposite end fixed to an end of the connecting element (18) wherein the film hinge (20) has a thickness that is less than a thickness of the connecting element (18), and a stop device (50), which is configured to delimit a rotational movement of the one of the connecting elements (18) via the film hinge in relation to the one of the top part (10) or the bottom part (12) wherein the stop device (50) is a cutout in the top part (10) or the bottom part (12), wherein the cutout is defined by a first vertical wall, a second vertical wall disposed opposite the first vertical wall, and a horizontal wall extending between the first and second vertical walls, wherein the film hinge extends vertically from the horizontal wall and parallel to the first and second walls in an unstressed state.
2. The windshield wiper device as claimed in claim 1, wherein the stop device (50) is one of a plurality of stop devices arranged at least at a multiplicity of ends of the connecting elements (18) and is formed by at least one widened end region (23) at the end of one of the connecting elements, in order to delimit a rotational movement of the connecting element (18) in relation to the at least one of the top part (10) or the bottom part (12).
3. The windshield wiper device as claimed in claim 1, wherein the stop device (50) is one of a plurality of stop devices formed by a multiplicity of extended sections (24), which are arranged on the at least one of the top part and the bottom part and extend substantially transversely in relation to the longitudinal extent (8) of the wiper blade (2), in order to delimit a rotational movement of a multiplicity of connecting elements (18) in relation to the at least one of the top part and the bottom part, wherein each of extended sections (24) is a projection extending downwardly from top part toward the bottom part or upwardly from the bottom part toward the top part.
4. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) is formed in one piece with the connecting element (18) and with one of the top part (10) or the bottom part (12).
5. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) has a thickness of 0.1 mm to 0.8 mm.
6. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) has a flexural rigidity of 75 Nmm/rad or less.
7. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) is made at least partially of at least one of TPE-S, TPE-O, TPE-U, TPE-A, TPE-V or TPE-E.
8. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) has at least a first aperture (25) transversely in relation to a longitudinal extent of the film hinge (20).
9. The windshield wiper device as claimed in claim 1, wherein, in a region in which the film hinge (20) is arranged, the top part (10) has at least a second aperture (26) in the direction of thickness of the top part (10).
10. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) is produced by a 2-component injection molding process.
11. The windshield wiper device as claimed in claim 1, wherein the film hinge is one of a plurality of film hinges, wherein the connecting elements (18) are connected to both of the top part (10) and the bottom part (12) via the plurality of film hinges (20), wherein the stop device (50) is one of a plurality of stop devices configured to delimit a rotational movement of the connecting elements (18) in relation to the top part (10), and wherein at least one additional stop device (50) is configured to delimit a rotational movement of the connecting elements (18) in relation to the bottom part (12).
12. The windshield wiper device as claimed in claim 1, wherein the at least one additional stop device (50) is formed by virtue of the fact that the film hinge (20) is arranged at least partially in a cutout (11) in the bottom part (12).
13. The windshield wiper device as claimed in claim 1, wherein the film hinge (20) has a thickness of 0.2 to 0.4 mm.
14. The windshield wiper device as claimed in claim 1, wherein the film hinge is a living hinge, and has a flexural rigidity less than that of the connecting element.
15. The windshield wiper device as claimed in claim 1, wherein the cutout defines an open recess having a width measured along the longitudinal extent (8) that is greater than a width of the film hinge measured along the longitudinal extent (8), such that the film hinge is able to flex within the recess.
16. The windshield wiper device as claimed in claim 15, wherein the end of the connecting element is disposed within the cutout, and wherein the film hinge has a thickness that is less than a thickness of the connecting element.
17. The windshield wiper device as claimed in claim 2, wherein the widened end region has a width that is greater than a width of a remainder of the connecting element, and wherein the width of the connecting element is greater than a width of the film hinge.
18. The windshield wiper device as claimed in claim 2, wherein the widened end region has a U-shaped profile having two parallel arms that each extend toward one of the top part or bottom part, and wherein the film hinge extends between the two parallel arms.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the invention are illustrated in the figures and will be described in more detail hereinbelow. In the drawings:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
DETAILED DESCRIPTION
(16) Unless stated otherwise, the same reference signs are used hereinbelow for identical elements and elements with an identical action.
(17)
(18) This provides a windshield wiper device with which it is possible to ensure particularly effective and exact wiping of the windshield. Unwiped regions of the windshield and fogging on the windshield can be largely avoided. Furthermore, precise adaptation of the windshield wiper device to changes in curvature which arise within the windshield is made possible by the design configuration of the windshield wiper device described herein. A largely uniform contact pressure on the windshield wiper device, in particular on the bottom part thereof, is achieved even given high degrees of curvature and changes in curvature of the windshield. Compared to conventional windshield wiper devices, it is advantageously not necessary in the case of the windshield wiper device according to the invention to perform a preceding adjustment of the top part and/or of the bottom part to the curvature of the windshield to be wiped. In the case of the windshield wiper device according to the invention, the adaptation to the curvature of the windshield is effected quickly and in an uncomplicated manner and largely independently. For the sake of simplicity, one and the same windshield wiper device can therefore be used for a large number of vehicles.
(19) According to embodiments of the disclosure, the windshield wiper device has a stop device 50. Exemplary embodiments of the stop device are shown in
(20) This provides a windshield wiper device which on the one hand allows for particularly effective adaptation to the curvature of a windshield and on the other hand is resistant. In particular, a windshield wiper device which makes it possible to avoid excessive loading of the film hinges is provided by the embodiments described herein with the stop device. The provision of a stop device according to the embodiments described herein delimits a rotational movement of the connecting elements in relation to the elongated top part and/or the elongated bottom part in such a manner that the film hinges, which are connected to the top part and/or to the bottom part, are protected from excessive loading.
(21) According to embodiments of the disclosure, the stop device 50 can also be arranged at least at a multiplicity of the ends of the connecting elements 18 and can be formed by at least one widened end region 23 at the multiplicity of the ends of the connecting elements 18, as is shown by way of example in
(22)
(23)
(24) The freedom of rotation of the connecting elements in relation to the elongated top part and/or in relation to the elongated bottom part can be set via the width B.sub.E of the widened U-shaped end region of the connecting elements 18. Furthermore, the freedom of rotation of the connecting elements in relation to the elongated top part or in relation to the elongated bottom part can be set via the spacing d.sub.1 between the ends of the U-shaped widened end region of the connecting elements and the elongated top part or the elongated bottom part.
(25) According to embodiments of the disclosure, the stop device 50, as is shown by way of example in
(26) In contrast to the embodiment shown by way of example in
(27) According to typical embodiments, which can be combined with other embodiments, provision can be made of a cutout for delimiting the rotation of the film hinge, i.e. a stop device with cutout, in particular on the bottom part 12. According to further typical embodiments, which can be combined with other embodiments, provision can be made to delimit the rotation of the film hinge without a cutout, i.e. a stop device without cutout, in particular on the top part 10. In this context, a cutout refers, for example, to a tapering of the material thickness of the top part or bottom part perpendicular to the longitudinal extent of the wiper blade.
(28) According to the embodiments of the windshield wiper device described herein, the stop device 50, as is shown by way of example in
(29) According to embodiments of the disclosure, as are shown by way of example in
(30) According to embodiments, which can be combined with other embodiments, a film hinge, in particular a film hinge 20 configured in one piece with the connecting element 18, can be provided in such a manner that the width of the connecting element 18 outside the hinge region is from 1 mm to 3 mm, for example 1.5 mm, and the width in the region of the film hinge is from 0.1 mm to 0.8 mm, in particular 0.2 to 0.4 mm, for example 0.3 mm. The dimensioning of the film hinge thicknesses makes it possible to set the flexural rigidity to a predetermined value. In addition, the use of film hinges, in particular the single-piece configuration of the film hinges with the connecting elements and the top part 10 or the bottom part 12, makes production by an injection molding process possible.
(31) According to embodiments of the disclosure, which can be combined with other embodiments, the film hinge can be made of a material selected from the group consisting of: POM, PA, TPE (thermoplastic elastomer), in particular TPE-S, TPE-O, TPE-U, TPE-A, TPE-V and TPE-E. The material selection for the film hinges, in particular in conjunction with the thickness of the hinges, allows for a flexural rigidity at a predetermined value or therebelow, and moreover makes production by an injection molding process possible, in particular in a 2-component injection molding process, given appropriate properties of the wiper blade, i.e. an adequate creep resistance of the film hinges. According to embodiments described herein, the film hinges typically have a flexural rigidity of 75 Nmm/rad or less.
(32) According to the embodiments described herein, it is possible to select materials in such a manner that film hinge properties which allow for a reliable or durable film hinge are provided even in the case of high temperature variations and/or in the case of continuously high ambient temperatures. It is therefore possible for reliable wiper devices to also be provided for relatively complex fields of use.
(33) According to embodiments of the disclosure, which can be combined with other embodiments, the film hinge 20 has at least a first aperture 25 transversely in relation to a longitudinal extent L.sub.F of the film hinge 20. As is shown by way of example in
(34) According to embodiments of the disclosure, which can be combined with other embodiments, in a region in which the film hinge 20 is arranged, the elongated top part 10 of the windshield wiper device has at least a second aperture 26 in the direction of thickness of the top part 10. As is shown by way of example in
(35) The text which follows describes exemplary embodiments of the windshield wiper device, for which the stop device described herein can advantageously be used.
(36)
(37) Both the top part 10 and the bottom part 12 are bendable bars or can be configured as bendable bars, these being formed in a single piece in each case by way of example in
(38) According to some embodiments, which can be combined with the other embodiments described here, a material having a modulus of elasticity in a range of between 0.005 kN/mm.sup.2 and 0.5 kN/mm.sup.2, in particular 0.01 kN/mm.sup.2 and 0.1 kN/mm.sup.2, is used for the top part 10 and/or the bottom part 12. This allows for a suitable bending capacity of the top part 10 and of the bottom part 12. Together with a suitably configured cross-sectional area of the top part 10 and of the bottom part 12, this gives rise to an optimum flexural rigidity. The top part 10 and the bottom part 12 are arranged in such a way that they lie opposite one another. Both ends of the top part 10 are fixedly connected to a respective end of the bottom part 12 at outer connecting positions 14 and 16. Otherwise, the top part 10 and the bottom part 12 are spaced apart from one another.
(39) The top part 10 and the bottom part 12 are connected to one another by connecting elements 18. In particular in the basic position of the wiper blade 2, these connecting elements extend approximately transversely in relation to the longitudinal extent 8 of the wiper blade 2. The connecting elements 18 are fastened to mutually facing inner longitudinal sides of the top part 10 and of the bottom part 12 by means of film hinges 20. As a result of the use of film hinges, the top part 10, the bottom part 12 and/or the connecting elements 18 can be produced from a plastic material.
(40) According to typical embodiments described here, which can be combined with other embodiments described here, a film hinge can be provided by a tapering of the material of the connecting elements to produce a lower rigidity of the connecting elements in the hinge region, for example between the connection of the top part to the connecting element or between the connection of the lower part to the connecting element.
(41) Embodiments in which the joint is provided by a film hinge consequently provide a very simple manner of providing the joints for a fin-ray wiper. The wiper blade 2 can be provided in one piece, in particular in an off-tool manner. According to typical embodiments, the film hinges have a high expandability. This may be provided, for example, by a material selected from the group consisting of: POM, PA, TPE (thermoplastic elastomer), in particular TPE-S, TPE-O, TPE-U, TPE-A, TPE-V and TPE-E.
(42) The connecting elements 18 are spaced apart from one another along the longitudinal extent of the wiper blade 2. The spacings between two respective adjacent connecting elements 18 are the same. They can also be chosen to be different, however. The spacings are advantageously smaller than 50 mm, in particular smaller than 30 mm. It is thereby possible to ensure particularly high flexibility of the windshield wiper device, in particular the bottom part thereof, and good adaptation to the curvature and changes in curvature of the windshield to be wiped.
(43)
(44)
(45)
(46) As a result of the structure of the embodiments described here, when a force acts on the bottom part (as a result of the windshield 4), the bottom part bends in the direction from which the force acts. This is produced by the connection of the top part 10 and of the bottom part at a connecting position 14 and/or 16, the shape and by film hinges at the connection between the connecting elements and the top or bottom part.
(47) In the illustration according to
(48) A windshield wiper device according to embodiments described here uses the effect of tail fins of specific fish, which in the event of lateral pressure do not deviate in the pressure direction, but instead curve in the opposite direction, that is to say in the direction from which the pressure originates. This principle is also referred to as the fin-ray principle. As a result, a windshield wiper device according to the embodiments described herein has the advantage of improved adaptation to a windshield of a motor vehicle. With a conventional windshield wiper blade, the top part thereof is generally rigid, that is to say it is formed so as not to be bendable.
(49)
(50) Optional configurations and details as are described in the individual embodiments can generally be used for both variants of an arrangement of a windshield wiper device.
(51)
(52)
(53) Both
(54)
(55) According to embodiments of the disclosure, which can be combined with other embodiments, the width of the wiper blade 2 increases from the outer connecting positions in the direction of the fastening part 30 or of the mount 6, at which the wiper blade can be fastened to the windshield wiper arm. In
(56)
(57)
(58) According to the embodiments described here, fin-ray windshield wiper devices for vehicle windshields can be produced in a particularly expedient manner and/or for a plurality of different fields of use. The present embodiments of the windshield wiper device with the stop device according to the embodiments described herein provide a windshield wiper device which is particularly resistant. In particular, the embodiments described herein can avoid excessive loading of the film hinges, this leading to a high longevity of the windshield wiper device.