EP4479278A1 - Dispositif d'essuyage d'une surface optique d'au moins un élément optique de véhicule - Google Patents
Dispositif d'essuyage d'une surface optique d'au moins un élément optique de véhiculeInfo
- Publication number
- EP4479278A1 EP4479278A1 EP23705407.7A EP23705407A EP4479278A1 EP 4479278 A1 EP4479278 A1 EP 4479278A1 EP 23705407 A EP23705407 A EP 23705407A EP 4479278 A1 EP4479278 A1 EP 4479278A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- wiping
- optical surface
- unit
- support element
- optical
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/32—Wipers or the like, e.g. scrapers characterised by constructional features of wiper blade arms or blades
- B60S1/38—Wiper blades
- B60S1/3848—Flat-type wiper blade, i.e. without harness
- B60S1/3872—Flat-type wiper blade, i.e. without harness without connector, e.g. connection to wiper arm via squeegee or vertebra
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/56—Cleaning windscreens, windows or optical devices specially adapted for cleaning other parts or devices than front windows or windscreens
- B60S1/566—Cleaning windscreens, windows or optical devices specially adapted for cleaning other parts or devices than front windows or windscreens including wiping devices
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/32—Wipers or the like, e.g. scrapers characterised by constructional features of wiper blade arms or blades
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/32—Wipers or the like, e.g. scrapers characterised by constructional features of wiper blade arms or blades
- B60S1/38—Wiper blades
- B60S1/3801—Wiper blades characterised by a blade support harness consisting of several articulated elements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/46—Cleaning windscreens, windows or optical devices using liquid; Windscreen washers
- B60S1/48—Liquid supply therefor
- B60S1/52—Arrangement of nozzles; Liquid spreading means
- B60S1/522—Arrangement of nozzles; Liquid spreading means moving liquid spreading means, e.g. arranged in wiper arms
- B60S1/524—Arrangement of nozzles; Liquid spreading means moving liquid spreading means, e.g. arranged in wiper arms arranged in wiper blades
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/06—Wipers or the like, e.g. scrapers characterised by the drive
- B60S1/08—Wipers or the like, e.g. scrapers characterised by the drive electrically driven
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/32—Wipers or the like, e.g. scrapers characterised by constructional features of wiper blade arms or blades
- B60S1/38—Wiper blades
- B60S2001/3812—Means of supporting or holding the squeegee or blade rubber
- B60S2001/3825—Means of supporting or holding the squeegee or blade rubber the squeegee mounted directly to or in wiper blade arm
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/32—Wipers or the like, e.g. scrapers characterised by constructional features of wiper blade arms or blades
- B60S1/38—Wiper blades
- B60S2001/3827—Wiper blades characterised by the squeegee or blade rubber or wiping element
- B60S2001/3829—Wiper blades characterised by the squeegee or blade rubber or wiping element characterised by the material of the squeegee or coating thereof
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60S—SERVICING, CLEANING, REPAIRING, SUPPORTING, LIFTING, OR MANOEUVRING OF VEHICLES, NOT OTHERWISE PROVIDED FOR
- B60S1/00—Cleaning of vehicles
- B60S1/02—Cleaning windscreens, windows or optical devices
- B60S1/04—Wipers or the like, e.g. scrapers
- B60S1/32—Wipers or the like, e.g. scrapers characterised by constructional features of wiper blade arms or blades
- B60S1/38—Wiper blades
- B60S2001/3827—Wiper blades characterised by the squeegee or blade rubber or wiping element
- B60S2001/3836—Wiper blades characterised by the squeegee or blade rubber or wiping element characterised by cross-sectional shape
Definitions
- the invention relates to a device for wiping an optical surface of at least one vehicle optical element.
- optical position sensors are increasingly equipped with optical elements, such as optical position sensors.
- the function of the optical position sensors is to collect information about the environment of the vehicle, in order in particular to provide the driver with assistance in driving and/or maneuvering this vehicle.
- an optical sensor is commonly installed on the vehicle so as to collect information on the environment of the vehicle such as the frontal and/or rear environment of the vehicle.
- the detection system is therefore for example installed on the front face and/or on the rear face.
- the object of the invention is to provide a device for wiping an optical surface of a vehicle optical element which is of simple constitution.
- the object of the invention is also to provide a compact and space-saving wiping device.
- the invention proposes a device for wiping an optical surface of at least one optical element of a vehicle, comprising a wiping unit comprising a part for wiping the optical surface and a support element for the part wiping device, driving the wiping part in a movement of wiping the optical surface by contact with the optical surface, the device further comprising a member for driving the wiping unit, the unit for wiping being one-piece.
- a material forming the wiping part is different from a material forming the support element.
- the support element comprises at least one portion more rigid than at least a portion of the wiping part.
- the wiping unit extends in a longitudinal direction and is capable of exerting constant pressure on the optical surface in the longitudinal direction.
- the wiping part and/or of the support element comprise/comprises at least a first portion which is more rigid than at least a second portion in the longitudinal direction.
- the wiping part and/or the support element comprises/comprises at least in part a lattice structure.
- the support member includes at least the portion formed by a first lattice structure configuration and/or by a first material configured to provide the portion with a first rigidity.
- the wiping portion includes at least the portion formed by a second lattice structure configuration and/or by a second material configured to provide the portion with a second stiffness.
- the first rigidity is greater than the second rigidity.
- the wiping part and/or the support element comprise/comprises different materials defined according to the rigidity to be conferred on the portions.
- the wiping part and/or the support element have/has a profile transverse to their length, the shape of which is variable according to the length and which is defined according to the pressure of the wiping part on the optical surface.
- the wiping unit has a back and forth wiping movement between extreme positions when wiping the optical surface, the dimension of the wiping unit in a direction orthogonal to the surface optics being different between the extreme positions with respect to the dimension at the extreme positions, the wiping part and/or the support element being able to absorb the variation in dimension.
- the wiping part and/or the support element are/is at least partly in latticework, the latticework having a structure absorbing the variation in dimension.
- the wiping part and/or the support element have/has a profile transverse to their length absorbing the variation in dimension.
- the device comprises a pipe for cleaning liquid in the wiping unit.
- the cleaning liquid line is a liquid channel added or provided in the mesh wiping part.
- the wiping part comprises a portion of more flexible material for wiping the optical surface.
- the material of the more flexible portion is made of silicone or of thermoplastic polyurethane.
- the device further comprises resistive heating tracks in the wiping part.
- the wiping unit is obtained in one piece by a manufacturing process.
- the wiping unit is obtained by an additive manufacturing process.
- Figure 1 is a view of an embodiment of a wiping device
- Figure 2 is a view of another embodiment of a wiping device
- Figure 3 is a sectional view of an embodiment of the device according to Figures 1 or 2;
- Figure 4 is a sectional view of another embodiment of the device according to Figures 1 or 2;
- Figure 5 is a sectional view of another embodiment of the device according to Figures 1 or 2;
- Figure 6 is an example embodiment of a lattice structure
- Figure 7 is another exemplary embodiment of a lattice structure
- Figure 8 is another exemplary embodiment of a lattice structure
- Figure 9 is another example embodiment of a lattice structure.
- the invention proposes a device for wiping an optical surface of at least one vehicle optical element.
- the device comprises a wiping unit comprising an optical surface wiping part and a part supporting member. wiping.
- the support member drives the wiping portion in an optical surface wiping motion by contacting the optical surface.
- the device further comprises a member for driving the wiping unit.
- the wiping unit is in one piece. This makes the constitution device simple. Indeed, the one-piece nature of the wiping unit comprising the wiping part and the support element spares the multiplication of spare parts to be assembled.
- Figure 1 is a view of an embodiment of the wiping device 10.
- the device 10 allows the wiping of an optical surface 12 of at least one optical element of the vehicle, the latter not being shown.
- the optical element can be a driving assistance means.
- the optical element makes it possible to collect information on the position and the environment of the motor vehicle, in particular in order to provide the driver with assistance in driving and/or maneuvering this vehicle.
- the optical element can also be a headlight - rear or front.
- the optical element interacts with the environment through the optical surface 12. It may be a protective surface between the optical element and the environment. For example, it may be the surface of a glass added between the optical element and the environment, or a surface of a box enclosing a sensor (such as a face of a LIDAR box). It may be a constituent of the optical element, such as the surface of a camera focusing lens. This may be the surface of the protective glass of a headlight. The surface may be opaque (in visible wavelengths). The surface may be transparent to the transmit and receive wavelengths of the optical element. Also, it is possible to envisage several optical elements in interaction with the environment through a single optical surface 12.
- the device 10 comprises a wiping unit 14 ensuring the wiping of the optical surface 12. More specifically, the unit 14 ensures the wiping of the optical surface 12 by contact with the surface. This allows efficient cleaning of the optical surface 12, both of dust and of solid or liquid projections. Thus, the operation of the optical element is improved.
- the wiping unit 14 comprises a wiping part 16. Within the wiping unit 14, the wiping part 16 performs the function of wiping the optical surface 12. In particular, the part wiping is in contact with the optical surface 12.
- the wiping unit 14 further comprises a support element 18 of the wiping part 16.
- the supporting element 18 maintains the wiping part 16 in contact with the optical surface 12.
- the support element 18 also drives the wiping part 16 in a movement of wiping the optical surface by contact with the optical surface. In other words, the support element 18 transmits the movement of a drive member 15 to the wiping part 16.
- the wiping unit can extend along a longitudinal direction. Wiper unit 14 may have an elongated shape.
- the wiping unit can have a longitudinal shape. The same applies to the wiping part 16 and the support element 18.
- Wiper unit 14 is monobloc in the sense that it is in one piece.
- the wiping part 16 and the support element 18 of the wiping unit 14 are in one piece. They are one and the same. In other words, the wiping part 16 and the support element 18 of the wiping unit 14 are two parts combined.
- the wiping unit 14 does not include (or does not have) means for connecting the wiping part 16 and the support element 18 to each other.
- the wiping part 16 and the support element 18 cannot be disassembled from each other - unless their physical integrity is destroyed.
- the advantage of having a one-piece assembly is that the manufacture of the wiper unit 14 is simple. The fact of doing away with added assembly means to assemble the parts together makes manufacturing less expensive.
- the wiping unit 14 is compact, with a small footprint.
- the wiping unit 14 is less bulky, in a direction orthogonal to the optical surface 12.
- the wiping unit 14 can be 10 mm or less, in a direction orthogonal to the optical surface 12.
- reduced wiper unit 14 is advantageous, because allows it to be more easily mounted in vehicle environments where the available space is limited. The same applies to device 10.
- the wiping unit 14 can be obtained by a method of joining the wiping part 16 and the support element 18 in order to form a one-piece assembly - that is to say forming a single piece, which cannot be disassembled from each other unless their physical integrity is destroyed.
- H can be a method of gluing the wiping part 16 and the support element 18, a method of welding the wiping part 16 and the support element 18, by for example by ultrasound, or by a method of melting the materials of the surfaces in contact with the wiping part 16 and the support element 18.
- the wiping unit 14 can be obtained in one piece.
- the wiping part 16 and the supporting element 18 are produced simultaneously. There is no need to manufacture and assemble different parts or to use means for fixing the components together. The manufacture of the wiping unit 14 is therefore faster and less expensive. Furthermore, visually, there is no border between the wiping part 16 and the one-piece support element 18.
- the wiping unit 14 can for example be obtained by an additive manufacturing process (or three-dimensional (3D) printing).
- the wiping unit 14 is produced by a succession of layers of material deposited by a wire, or thermally fused by one or more lasers, or chemically fused with a binder.
- the surface condition is defined by post-treatment (mechanical, chemical polishing, etc.).
- additive manufacturing makes it possible to obtain complex parts (such as hollow parts, internal channels, certain complex undercuts, ).
- the wiping unit 14 can be obtained by an injection or co-injection molding process.
- the surface condition is defined by the surface condition of the mould.
- the surface condition can be directly clean and smooth in certain desired areas (such as surfaces with a visible appearance, functional surfaces for assembly with other parts, etc.) and rougher elsewhere (such as only non-visible areas, or without interfaces).
- the device 10 further comprises the drive member 15 of the wiping unit 14.
- the drive member 15 makes it possible to drive the wiping unit 14 in the wiping movement and in particular to browse the optical surface to ensure wiping, here by contact.
- the wiping by the wiping unit 14 is performed on at least a portion of the optical surface 12 through which the optical element is in interaction with the environment - preferably, the entire optical surface 12.
- drive can drive the wiping unit 14 in a to-and-fro, to-and-fro wiping motion.
- the drive member can drive the wiping unit between a first extreme position and a second extreme position, the wiping of the optical surface 12 taking place between these two positions.
- drive member 15 is configured to drive wiper unit 14 directly.
- drive member 15 is connected directly to wiper unit 14.
- drive member 15 may comprise a motor 17, preferably an electric motor.
- the wiping unit 14 constitutes a one-piece assembly with a section forming an arm and a section forming a brush, the brush comprising a section forming a blade in contact with the optical surface to be cleaned and at least one section forming a vertebra supporting the blade (this eliminates the need for any connector and articulation between these parts); the drive member 15 drives this assembly directly.
- drive member 15 drives wiper unit 14 in a circular (or rotational) motion.
- the support element 18 then drives the wiping part 16 in a circular wiping movement.
- the advantage is that the device, comprising the drive member and the wiping unit, is compact and takes up little space.
- the drive member 15 may comprise an element for transmitting the wiping movement to the wiping unit 14.
- the drive member 15 comprises a drive shaft 20 to which the unit is connected. wiper 14.
- the axis 20 is driven by the motor 17 in rotation, to give the circular movement to the wiping unit.
- An interface 22 of the wiping unit 14 allows the fixing of the wiping unit 14 to the shaft 20.
- the support element 18 thus connects the wiping part 16 to the shaft 20. It is possible also consider that the axis 20 is integral with the wiper unit 14. Whatever the configuration of the member 15, the drive member 15 directly drives the wiper unit 14.
- Figure 2 is a view of another embodiment of the wiping device 10.
- Figure 2 differs from Figure 1 in that drive member 15 drives wiper unit 14 in a linear (or translational) motion.
- the support element 18 then drives the wiping part 16 in a linear wiping movement.
- the advantage is that the wiper unit 14 can wipe the entire optical surface.
- the drive member 15 comprises an element for transmitting the wiping movement to the wiping unit.
- the drive member 15 comprises the drive shaft 20 to which the wiper unit 14 is connected.
- the shaft 20 in FIG. 2 is driven by the motor 17, in translation on a rail 23 , through a slot 25, to give linear movement to the wiping unit.
- the interface 22 of the wiping unit 14 allows the fixing of the wiping unit 14 to the shaft 20.
- the support element 18 thus connects the wiping part 16 to the shaft 20.
- the axis 20 is integral with the wiper unit 14. Whatever the configuration of the drive member 15, the drive member 15 directly drives the wiper unit 14.
- the materials of the wiping part 16 and the support element 18 can be the same - which simplifies the manufacture of the wiping unit 14.
- a material forming the wiping part 16 is different of a material forming the support element 18.
- the wiping unit 14 can be a multi-material part.
- the support element 18 can comprise at least a portion more rigid than at least a portion of the wiping part 16. This makes it possible to have a portion of the wiping unit 14 rigid to transmit the movement to the wiping unit 14 and a portion of the wiping unit 14 flexible to ensure the wiping of the optical surface 12.
- the wiper unit 14 may include flex resistant, fatigue resistant and/or heat resistant material(s).
- Support members 18 may include materials having one or more of these properties.
- the wiping unit 14 can comprise PAU (or polyamide 11, thermoplastic polymer) or PA 12 (or nylon 12, nylon polymer) to form the support element 18.
- the unit wiper 14 (in particular the support element 18) can be filled with reinforcing fibers. The reinforcing fibers make it possible to increase the rigidity of a part while limiting the mass (such as for example carbon or glass).
- the wiping unit 14 can also comprise one or more elastically deformable materials while being resistant to fatigue and/or resistant to heat. Wiper portion 16 may include materials having one or more of these properties.
- the wiping unit 14 may be, for example, natural or synthetic rubber to form all or part of the wiping part 16.
- the wiping unit 14 may also comprise one or more elastic, deformable and/or flexible materials to form the part wiper 16 in contact with the optical surface 12, to improve wiping (extension 24 in FIGS. 3 to 5). It can be, for example, silicone or thermoplastic polyurethane (or TPU) to form all or part of the wiping part 16.
- the wiping unit 14 can be structurally in the form of a lattice (or "lattice"), that is to say an architecture composed of one or more materials and of empty zones. The more or less low density of the empty zones confers a more or less significant rigidity on the wiping part 16 and/or on the support element 18.
- This type of structure is in particular obtained by the additive manufacturing process.
- Figures 6 to 9 show examples of lattice construction.
- the lattice is a polyhedral mesh structure, with polyhedrons linked together by some of their faces and/or edges.
- the lattice structure is elastically deformable.
- the lattice structure can be deformed by deformation of the polyhedra.
- the lattice structure is a network of meshes making it possible to change shape during the operation of the device 10, and to regain its shape.
- the wiping unit 14 can extend along a longitudinal direction and is capable of exerting a constant pressure on the optical surface 12 along the longitudinal direction.
- the pressure on the surface 12 is constant, along the longitudinal shape of the wiping unit 14.
- the pressure on the surface 12 is constant, along the longitudinal shape of the wiping unit 14 held in the door -to false.
- the pressure on the surface 12 is constant between the proximal end (close to the axis 20) and the distal end of the wiping unit 14. The advantage is to ensure wiping of the same quality on the surface optics 12.
- the constant pressure on optical surface 12 may be exerted by stiffer portions than others within wiper unit 14. More specifically, wiper portion 16 and/or support member 18 comprises/comprises at least a first portion which is more rigid than at least a second portion in the longitudinal direction.
- the wiping part 16 and/or the support element 18 comprises at least partly a lattice structure.
- the lattice then has a structure defined as a function of the rigidity to be imparted to the more or less rigid portions.
- the wiping part 16 and/or the support element 18 comprises/comprises different materials. The materials are defined according to the rigidity to be given to the more or less rigid portions.
- support member 18 includes at least the portion formed by a first lattice structure configuration and/or by a first material configured to impart a first rigidity to the portion.
- the wiping portion 16 includes at least the portion formed by a second lattice structure configuration and/or by a second material configured to impart to the portion a second stiffness.
- the first stiffness may be greater than the second stiffness - so that the support member 18 can additionally support and drive the wiping part 16.
- the wiping part 16 and/or the support element 18 have/has a profile transverse to their longitudinal direction, the shape of which is variable along the longitudinal direction. The profile or profiles are defined according to the pressure of the wiping part on the optical surface 12.
- Figures 3 to 5 are sectional views of an embodiment of the device according to Figures 1 or 2. More specifically, Figures 3 to 5 show different examples of profiles of the wiping part 16 and of the support element 18.
- the support element 18 supports the wiping part 16 in contact with the optical surface 12.
- the support element 18 supports the wiping part 16 facing the optical surface 12.
- the profile of the support element 18 supports the wiping part 16 opposite the optical surface 12.
- the advantage is that the manufacture of such a configuration is simple.
- the profile of the wiping part 16 has an oval shape.
- the major axis of the oval shape can be tangential to the direction of the wiping motion (or even parallel in the case of a linear motion).
- the wiping part 16 may comprise an extension 24 in the direction in contact with the optical surface 12 to be wiped.
- Extension 24 is substantially in the center of the oval shape.
- the extension 24 is in line with the support element 18.
- the oval shape makes it possible to create pressure for the extension 24 against the optical surface 12.
- the extension 24 is capable of penetrating into the oval shape by deformation of the Oval shape.
- the profile of the wiping part 16 thus makes it possible to fulfill a spring function urging the wiping unit 14 against the optical surface and ensuring quality wiping.
- the wiping part 16 can be latticework, with such a structure in the center of the oval shape as well - the same applies to the supporting element 18.
- the profile of the support element 18 supports the wiping part 16 laterally, in a direction orthogonal to the optical surface 12.
- the advantage is that the bulk is further reduced.
- the profile and structure of the wiping part 14 is the same as that of Figure 3, with the same effects and advantages.
- the profile of the support element 18 also supports the wiping part 16 opposite the optical surface 12.
- the advantage is that the manufacture of such a configuration is simple.
- the profile of the wiping part 16 comprises a succession of curvatures.
- the profile of the wiping part 16 has an S shape.
- the profile of the wiping part 16 ends with the extension 24 in the direction and in contact with the optical surface 12 to be wiped.
- the extension 24 is substantially in line with the support element 18.
- the shape of the curvatures makes it possible to create the pressure of the extension 24 against the optical surface 12.
- the curvatures act as hinges.
- the profile of the wiping part 16 thus makes it possible to fulfill a spring function urging the wiping unit 14 against the optical surface 12 and ensuring quality wiping.
- the wiping part 16 can be mesh - the same applies to the support element 18.
- the shape of the profile of the wiping unit 14 can vary, be scalable, in the direction of the longitudinal direction of the wiping unit 14. This makes it possible to have a constant pressure of the wiping part 16 on the optical surface 12, taking into account the deformation of the wiping unit 14.
- the evolving profile also makes it possible to take into account the tangential speed of the wiping unit 14 (in particular of the wiping part 16) which is different between the distal and proximal ends of the wiping unit 14 - in particular in the case of the circular movement of figure L
- the profile of the support element 18 of Figures 3 and 5 can be more or less thick, to vary the rigidity and the spring effect against the optical surface 12; that of FIG. 4 can be more or less important, for the same effects.
- the profile of the wiping part 16 of FIGS. 3 and 4 can include a more or less dense lattice part to vary the spring effect against the optical surface 12; that of FIG. 5 can be more or less thick for the same effects.
- the wiping unit 14 has a reciprocating wiping motion - linear and/or circular.
- the wiping unit 14 has a movement between the first extreme position and the second extreme position.
- the dimension of the wiping unit 14 along a direction orthogonal to the optical surface 12 is different between the extreme positions with respect to the dimension at the extreme positions.
- the wiping part 16 and/or the support element 18 is/are capable of absorbing the variation in dimension. In other words, the increase in height (or bulk) along a direction orthogonal to the optical surface 12 of the wiping unit 14 at changes of direction is compensated by the wiping part 16 and/or the support member 18.
- the wiping unit 14 operates in a direction orthogonal to the optical surface (or transverse to the optical surface 12) like a spring.
- the drive of the wiping part 16 is such that the wiping part 16 in contact with the optical surface 12 is inclined.
- the extension 24 is inclined when wiping.
- the inclination of the wiping part 16 changes direction.
- the extension 24 then passes through the configuration represented in FIGS. 3 to 5.
- the wiping part 16 (and therefore the wiping unit 14) has a dimension (or a size), in a direction orthogonal to the optical surface 12, which is reduced during the stroke of the wiper unit between the extreme positions due to the inclination.
- the wiping part and therefore the wiping unit 14
- the wiping unit 14 - and more precisely, the wiping part 16 and/or the support element 18 - acts like a spring.
- the wiping part 16 and/or the support element 18 can be at least partly in mesh, the mesh absorbing the variation in dimension.
- the extension 24 is capable of penetrating into the oval shape by deformation of the oval shape, during the reversal.
- the extension 24 causes the curvatures to compress during the rollover.
- the greater rigidity of the support element 18 makes it possible to maintain the wiping unit 14 in contact with the optical surface 12.
- the profile of the wiping part 16 and/or the support element 18 can be sized to turn around in a "classic" way.
- the device 10 may further comprise a conduit for cleaning liquid in the wiping unit 14.
- a conduit for cleaning liquid in the wiping unit 14 This also makes it possible to project the liquid as close as possible to the contact between the wiping unit 14 and the optical surface 12. This makes it possible to improve the wiping of the optical surface 12.
- the cleaning liquid pipe is a liquid channel (not visible in the figures) added or provided in the wiping unit 14 in mesh - or in a lattice area in the form of a channel. Orifices for the projection of the liquid are also integrated directly into the wiping unit 14. This makes it possible to take advantage of the architecture of the wiping unit 14 to allow the conduct of fluid.
- the device 10 comprises a duct 30 connected to the wiping unit 14.
- the duct 30 allows the routing of the cleaning liquid to the wiping unit 14.
- the device 10 can also include resistive heating tracks in the wiping part. This makes it possible to heat the wiping part 16 in order to maintain good flexibility when cold, or to melt the ice or snow which would block its correct operation.
- a conductive material is inserted into the wiper unit gel4. This is done during the step of manufacturing the wiper unit 14, for example by additive manufacturing of such a material in the wiper unit 14.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Water Supply & Treatment (AREA)
- Cleaning In General (AREA)
- User Interface Of Digital Computer (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR2201366A FR3132683B1 (fr) | 2022-02-16 | 2022-02-16 | Dispositif d’essuyage d’une surface optique d’au moins un élément optique de véhicule |
| PCT/EP2023/053943 WO2023156550A1 (fr) | 2022-02-16 | 2023-02-16 | Dispositif d'essuyage d'une surface optique d'au moins un élément optique de véhicule |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4479278A1 true EP4479278A1 (fr) | 2024-12-25 |
Family
ID=81346259
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23705407.7A Pending EP4479278A1 (fr) | 2022-02-16 | 2023-02-16 | Dispositif d'essuyage d'une surface optique d'au moins un élément optique de véhicule |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US20250178570A1 (fr) |
| EP (1) | EP4479278A1 (fr) |
| CN (1) | CN118695970A (fr) |
| FR (1) | FR3132683B1 (fr) |
| WO (1) | WO2023156550A1 (fr) |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2566726A1 (fr) * | 1984-06-28 | 1986-01-03 | Michel Dominique | Lame d'essuyage souple |
| FR2642027B1 (fr) * | 1989-01-25 | 1991-09-06 | Mecaplast Sam | Dispositif d'essuie-vitre arriere |
| AU2424192A (en) * | 1991-08-16 | 1993-03-16 | Andrew John Saville Sneath | Wiper assembly and method of producing same |
| DE10243287A1 (de) * | 2002-09-18 | 2004-05-19 | Volkswagen Ag | Scheibenwischer für Fahrzeuge |
| DE102013226456A1 (de) * | 2013-12-18 | 2015-06-18 | Robert Bosch Gmbh | Scheibenwischvorrichtung mit integrierter Reinigungs-(Jetwiper)-Funktionalität |
-
2022
- 2022-02-16 FR FR2201366A patent/FR3132683B1/fr active Active
-
2023
- 2023-02-16 EP EP23705407.7A patent/EP4479278A1/fr active Pending
- 2023-02-16 US US18/837,221 patent/US20250178570A1/en active Pending
- 2023-02-16 CN CN202380021743.4A patent/CN118695970A/zh active Pending
- 2023-02-16 WO PCT/EP2023/053943 patent/WO2023156550A1/fr not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| FR3132683B1 (fr) | 2024-05-31 |
| WO2023156550A1 (fr) | 2023-08-24 |
| CN118695970A (zh) | 2024-09-24 |
| US20250178570A1 (en) | 2025-06-05 |
| FR3132683A1 (fr) | 2023-08-18 |
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