Tailgate intended to be integrated into the body of a motor vehicle.
The movable tailgate structure with a deployment device enhances aerodynamic performance by adjusting the trailing edge, addressing the limitations of fixed tailgates in reducing drag and improving air penetration.
Patent Information
- Application Number
- FR2024001730
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-02-22
- Publication Date
- 2025-08-29
AI Technical Summary
Existing tailgate structures on vehicles do not effectively reduce aerodynamic drag and improve air penetration coefficient while maintaining road holding, especially when the angle and height of the trailing edge are not varied.
A tailgate with a movable portion defining a trailing edge that can move between retracted and deployed positions, driven by a deployment device comprising a motor, toothed wheel, and curved rack, allowing the trailing edge to be adjusted for optimal aerodynamic performance.
Reduces aerodynamic drag and improves air penetration without increasing vehicle length, while enhancing road holding by adjusting the trailing edge position automatically or manually.
Smart Images

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Abstract
Description
Title of the invention: Tailgate intended to be integrated into the body of a motor vehicle.
[0001] The invention relates to a tailgate intended to be integrated into a body of a motor vehicle.
[0002] The aerodynamics of a car is, along with the engine, one of the most important technical aspects of a vehicle since it allows it to reduce its fuel or electrical energy consumption.
[0003] However, with speed, not only does air resistance oppose the movement of the vehicle, but also the air flows under the car tend to lift it or create turbulence.
[0004] It is therefore known to use aerodynamic deflectors to increase the aerodynamic support on the wheels, by suitably modifying the direction of the air flow at the rear part of the vehicle. The grip is then greatly improved, and this is all the more so as the speed of the vehicle is high.
[0005] In this technical field, there are in particular so-called mobile aerodynamic deflectors. As their name indicates, these devices comprise a mobile element, forming a deflector, which is capable of being deployed and / or of being oriented according to the speed of the vehicle. These elements have in particular a trailing edge corresponding to the rear part in the direction of flow making it possible to reduce aerodynamic drag.
[0006] For vehicles with a profiled body, the lower edge of the tailgate forms a deflector. It then comprises a fixed part and a movable part presenting the trailing edge.
[0007] The movable part can then be driven into a deployed position in which it is raised and therefore the trailing edge as well. In this way, the pressure on the rear part of the vehicle increases and detaches the air flow. Road holding is thus improved.
[0008] However, the proposed structure only improves the vehicle's handling. It does not reduce the coefficient of penetration in the air, if the angle and height of the trailing edge are not varied.
[0009] There is therefore a need for a tailgate structure that makes it possible to improve the vehicle's road holding while improving the coefficient of air penetration.
[0010] To this end, a tailgate is proposed intended to be integrated into a body of a motor vehicle, said tailgate having an upper edge connected to the body and a lower edge opposite said upper edge, said lower edge comprising a portion fixed relative to the tailgate and a movable portion secured to the fixed portion, said movable portion defining a trailing edge. The movable portion is mounted movable relative to the fixed portion between a retracted position in which the trailing edge is brought closer to the fixed portion and a deployed position in which the trailing edge is moved apart and lowered relative to the fixed portion whereby the tailgate is extended.
[0011] Thus, a characteristic of the invention lies in the installation of a movable part on the lower edge of the tailgate, making it possible to move the trailing edge of the vehicle. It will thus make it possible to move the trailing edge towards a position separated and lowered or raised relative to its initial position.
[0012] The object of the invention thus makes it possible to reduce aerodynamic drag and consequently to improve penetration in the air without increasing the length of the car while improving road holding.
[0013] Preferably, the tailgate comprises a deployment device capable of driving the movable part into movement between the retracted position and the deployed position along a curved trajectory.
[0014] The deployment device thus makes it possible to move the mobile part either partially or completely in the deployed position.
[0015] The deployment device may also cause the moving part to move when the vehicle reaches a certain speed, for example, the moving part may be caused to move to the fully deployed position when the vehicle reaches 80 km / h.
[0016] Advantageously, the deployment device comprises an internal curved rack secured to the mobile part, said rack being capable of driving the mobile part along the curved trajectory.
[0017] The use of a curved rack allows a curved trajectory to be carried out. In fact, the curved rack is connected to the moving part so as to guide the moving part to move it apart and lower it relative to the fixed part.
[0018] Preferably, the deployment device further comprises a toothed wheel driven by a motor, said toothed wheel meshing with the rack.
[0019] The use of a motor makes it possible to automatically control the deployment of the mobile part.
[0020] Preferably, the tailgate comprises at least two deployment devices.
[0021] The fixed part and the mobile part extend in a transverse direction. The two deployment devices are installed at the ends of the fixed part in the transverse direction, allowing better support of the mobile part during its deployment.
[0022] Advantageously, the movable part is pivotally mounted on the curved rack. This offers the possibility of pivoting the movable part relative to the rack when deploying the movable part.
[0023] Preferably, each deployment device comprises a connecting rod connected respectively to the fixed part and to the mobile part, said connecting rod being capable of maintaining the orientation of the mobile part along a substantially horizontal plane between the retracted position and the deployed position.
[0024] The movable part extends along a substantially horizontal plane. The connecting rod is, furthermore, capable of maintaining the orientation of the movable part along a substantially horizontal plane when it is in the retracted position or in the deployed position.
[0025] Preferably, the connecting rod has a first end mounted mobile in rotation on the mobile part and a second end mounted mobile in rotation and in translation on the fixed part.
[0026] The movement of the connecting rod thus makes it possible to maintain the orientation of the moving part in a substantially horizontal plane as will be explained in more detail in the remainder of the description. In addition, the length adjustment of this connecting rod may make it possible to optimize the performance of the system.
[0027] Advantageously, the second end is retained by an elastic member on the fixed part.
[0028] The use of an elastic member makes it possible to maintain the connecting rod at the fixed part under tension as will be explained below. In this way, the connecting rod makes it possible to maintain the moving part in a substantially horizontal plane.
[0029] The invention also relates to a motor vehicle comprising the tailgate as described above.
[0030] The object of the invention can thus be installed on motor vehicles comprising a tailgate such as present on sedan type vehicles or a trunk such as present on limousine type vehicles.
[0031] Other features and advantages of the invention will emerge from reading the description given below of several particular embodiments of the invention, given for informational but non-limiting purposes, with reference to the appended drawings in which:
[0032] [Fig-1] is a schematic rear perspective view of a tailgate of a vehicle automobile according to the invention.
[0033] [Fig.2] is a schematic perspective view of a detail of part of a tailgate of a motor vehicle according to the invention.
[0034] [Fig.3a] is a schematic side view of a part of a tailgate according to a first embodiment of the invention in a first position.
[0035] [Fig.3b] is a schematic side view of a part of a tailgate according to a first embodiment of the invention in a second position.
[0036] [Fig.4] is a schematic sectional view of a detail of part of a tailgate in deployed position according to a first embodiment of the invention.
[0037] [Fig.5a] is a schematic side view of a part of a tailgate according to the second embodiment of the invention in a first position.
[0038] [Fig.5b] is a schematic side view of a part of a tailgate according to the second embodiment of the invention in a second position.
[0039] [Fig.5c] is a schematic side view of a part of a tailgate according to the second embodiment of the invention in a third position.
[0040] In the figures, with respect to the reference (XY, Z), the motor vehicle extends longitudinally from front to rear along the X axis, transversely from left to right in the driving situation, along the Y axis and vertically opposite the support surface along the Z axis.
[0041] The invention relates to a tailgate intended to be integrated into a body of a motor vehicle.
[0042] [Fig.l] illustrates a tailgate 1 installed in the bodywork 3 of the motor vehicle.
[0043] The tailgate 1 has an upper edge 5 connected to the bodywork 3 as well as a lower border 7. The upper border 5 is rotatably mounted on the bodywork 3 by rotation means such as hinges (not shown in the figures).
[0044] With reference to [Fig.2], the lower edge 7 of the tailgate 1 has a fixed part 9 relative to the tailgate 1 and a movable part 11 secured to the fixed part 9.
[0045] The movable part 11 has a front part 49 distant from the fixed part 9 as well as a rear part 51 close to the fixed part. The movable part 11 also defines a trailing edge 13 of the vehicle close to the front part 49.
[0046] The movable part 11 is mounted to be movable in movement relative to the fixed part 9 between a retracted position and a deployed position.
[0047] Reference will now be made to [Fig.3a] and [Fig.3b] which illustrate the movable part 11 in the retracted and deployed position.
[0048] In the retracted position, the trailing edge 13, as illustrated in [Fig.3a], is brought closer to the fixed part 9. In this case, the movable part 11 is embedded in the tailgate 1 and forms a single unit with it.
[0049] In the deployed position, the trailing edge 13 as illustrated in [Fig.3b] is moved apart and lowered relative to the fixed part 9. The trailing edge 13 is moved apart along the longitudinal axis X so that the tailgate is elongated and it is lowered downwards along the vertical axis Z. In this way, the aerodynamic drag is reduced and the coefficient of penetration in the air is improved.
[0050] The trailing edge 13 can then be moved away by at least 50 millimeters along the longitudinal axis X relative to the fixed part 9 and be lowered by at least 50 millimeters relative to the fixed part 9 along the vertical axis Z.
[0051] The movable part 11 can also be driven into movement and maintained in intermediate positions between the retracted position and the deployed position.
[0052] With reference to [Fig.4], the mobile part 11 is driven into movement by a deployment device 15 along a curved trajectory.
[0053] The invention is not limited to a single deployment device 15. Indeed, depending on the size, shape and weight of the mobile part 11, one or more deployment devices 15 can be used to drive the mobile part 11 into motion.
[0054] Preferably, the tailgate 1 has two deployment devices 15. The two deployment devices are installed at the ends of the movable part in the transverse direction, allowing better support of the movable part, particularly during its deployment.
[0055] The deployment device 15 comprises a motor (not shown in the figures) driving a toothed wheel 19. The motor and the toothed wheel 19 are installed at the fixed part 9 of the lower edge 7. The toothed wheel 19 and the motor are connected by at least one axis of rotation (not shown in the figures) so that the motor drives the toothed wheel 19.
[0056] The motor makes it possible to automate the deployment device 15.
[0057] It may also comprise a control system (not shown in the figures) allowing the user of the vehicle to trigger the partial or complete deployment of the mobile part 11 when he wishes or a control system allowing the partial or complete deployment of the mobile part 11 to be triggered when the vehicle reaches a certain speed.
[0058] The deployment device 15 is not limited to a single motor, the number of motors required can be adapted according to the size or shape of the mobile part 11.
[0059] The deployment device 15 further comprises an internal curved rack 21 secured to the movable part 11 and engaged by the toothed wheel.
[0060] The curved rack 21 extends along an arc of a circle and has a radius of curvature of between 20 centimeters and 90 centimeters.
[0061] The rack 21 has a plurality of teeth (not shown in the figures) on the concave portion. The plurality of teeth is meshed by the toothed wheel 19 to drive the rack 21 and thus the movable portion 11 into motion.
[0062] The rack 21 is, furthermore, held in position by guide rollers 25. The concave part and the opposite convex part bear against the guide rollers 25.
[0063] The device 15 has three guide rollers and a drive roller. The concave part rests on two guide rollers while the convex part rests on a guide roller and a drive roller. They thus make it possible to guide the movement of the rack 21 according to the circle that it defines.
[0064] The rack 21 has a connecting end 47 connected to the front part 49 of the movable part 11.
[0065] When the movable part 11 is in the retracted position, the rack 21 is installed in the tailgate 1 at the level of a cavity 27.
[0066] As illustrated in [Fig.4], the tailgate 1 may have an internal fairing 23 extending around the fixed part 9 so that when the mobile part 11 is deployed, the fairing 23 ensures the sealing and closing of the tailgate 1.
[0067] The tailgate 1 may also have fasteners (not shown in the figures) in particular at the lower edge 7, preferably at the fairing 23. The fasteners thus make it possible to attach a bicycle rack or even a roof rack, once the system is deployed and held in this position by locking means. When the system is folded, the fasteners are concealed.
[0068] [Fig.5a] to [Fig.5c] show a second embodiment of the invention. In this embodiment, the structure of the tailgate 1 and the deployment device 15 is the same as in the first embodiment.
[0069] According to this second embodiment, the front part 49 of the movable part 11 is pivotally mounted on the connecting end 47 of the curved rack 21.
[0070] This provides the possibility for the mobile part 11 to pivot vertically independently of the deployment movement of the mobile part 11.
[0071] To maintain the orientation of the mobile part 11 along a substantially horizontal plane during its deployment, the deployment device 15 further comprises a connecting rod 29.
[0072] The connecting rod 29 comprises two arms respectively, a first 53 and a second 55 extending in substantially opposite directions and joined together by a C-shaped part 57.
[0073] The connecting rod 29 further has a first end 31 at the level of the first arm 53 and a second end 33 at the level of the second arm 55.
[0074] The shape of the connecting rod 29 is chosen so that it goes around the other elements of the deployment device 15 and in particular the shaft connecting the devices together (not shown in the figures).
[0075] However, the shape of the connecting rod 29 is not limited to the shape described above.
[0076] The first end 31 of the connecting rod 29 is connected to the rear part 51 of the part mobile 11.
[0077] And the second end 33 of the connecting rod 29 is connected to the fixed part 9.
[0078] The second end 33 is retained by an elastic member 35, for example a helical spring, on the fixed part 9. More precisely, the second end 33 also has an oblong slot 37 into which a finger 39 extends. The finger 39 is secured to the fixed part 9.
[0079] The oblong lumen 37 has a proximal stop edge 41 close to the C-shaped portion 57, a distal stop edge 43 opposite the proximal stop edge 41 as well as two opposite parallel guide edges connecting them.
[0080] When the connecting rod is driven into movement between two extreme positions. The two guide edges then come into sliding support on the finger 39, the second arm of the connecting rod is thus blocked by the two proximal 41 and distal 43 stop edges.
[0081] The first end 31 of the connecting rod 29 is mounted to be able to move in rotation on the rear part 51 of the moving part 11 while the second end 33 is mounted to be able to move in rotation and translation on the finger 39.
[0082] To illustrate the movement, we will now refer to [Fig.5a], [Fig.5b] and [Fig.5c] which illustrate the mobile part 11 in the retracted and deployed position as well as in an intermediate position.
[0083] When the movable part 11 is in the retracted position, the connecting rod 29 extends along a vertical component while the proximal stop edge 41 is located in the vicinity of the finger 39, as illustrated in [Fig.5a].
[0084] The drive roller drives the curved rack 21 along the trajectory that it defines. The rack 21 then drives the front part 49 of the movable part 11 in movement along its arc of a circle, the movable part 11 is then moved away from the fixed part 9.
[0085] The movement of the movable part 11 causes the first end 31 of the connecting rod 29 to be driven while the second end of the connecting rod 29 is held downwards by the elastic member.
[0086] The connecting rod 29 therefore exerts a force on the rear part 51 of the mobile part 11 making it possible to maintain its orientation along a substantially horizontal plane as it was when the mobile part 11 is in the retracted position.
[0087] The oblong light 37 in combination with the finger 39 allows the connecting rod to follow the movement of the movable part 11 to guide its deployment between the retracted position and the deployed position.
[0088] [Fig.5c] illustrates the deployment device 15, when the movable part 11 is in the deployed position. The connecting rod 29 has then pivoted through an angle of approximately 45 degrees and is in a substantially horizontal position along the longitudinal axis X while the finger 39 is resting on the distal stop edge 43. This angle of 45° is given as a non-limiting example and is of course adjustable when designing the system depending on the desired deployment.
[0089] In this case, the mobile part 11 is maintained in a substantially horizontal plane in the deployed position.
Claims
Claims
1. Tailgate (1) intended to be integrated into a body (3) of a motor vehicle, said tailgate (1) having an upper edge (5) connected to the body (3) and a lower edge (7) opposite said upper edge (5), said lower edge (7) comprising a fixed part (9) relative to the tailgate (1) and a movable part (11) integral with the fixed part (9), said movable part (11) defining a trailing edge (13), characterized in that the movable part (11) is mounted movable in movement relative to the fixed part (9) between a retracted position in which the trailing edge (13) is brought closer to the fixed part (9) and a deployed position in which the trailing edge (13) is moved apart and lowered relative to the fixed part (9) whereby the tailgate (1) is extended.
2. Tailgate (1) according to claim 1, characterized in that the tailgate (1) comprises a deployment device (15) capable of driving the movable part (11) into movement between the retracted position and the deployed position along a curved trajectory.
3. Tailgate (1) according to claim 2, characterized in that the deployment device (15) comprises an internal curved rack (21) integral with the movable part (11), said rack (21) being capable of driving the movable part (11) along the curved trajectory.
4. Tailgate (1) according to claim 3, characterized in that the deployment device (15) further comprises a toothed wheel (19) driven by a motor, said toothed wheel (19) meshing with the rack (21).
5. Tailgate (1) according to any one of claims 2 to 4, characterized in that the tailgate (1) comprises at least two deployment devices (15).
6. Tailgate (1) according to claim 3 and one of claims 4 to 5, characterized in that the movable part (11) is pivotally mounted on the curved rack (21).
7. Tailgate (1) according to any one of claims 2 to 6, characterized in that each deployment device (15) comprises a connecting rod (29) connected respectively to the fixed part (9) and to the movable part (11), said connecting rod (29) being capable of maintaining the orientation of the movable part (11) along a substantially horizontal plane between the retracted position and the deployed position.
8. Tailgate (1) according to claim 7 characterized in that the connecting rod (29) has a first end (31) mounted to move in rotation on the moving part (11) and a second end (33) mounted to move in rotation and in translation on the fixed part (9).
9. Tailgate (1) according to claim 8 characterized in that the second end (33) is retained by an elastic member (35) on the fixed part (9).
10. A motor vehicle comprising a tailgate (1) according to any one of claims 1 to 9.
Citation Information
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