Tank including connecting elements for a stabilizer bar, chassis, body and equipped vehicle.
The integration of a hydrogen storage tank into the vehicle chassis, utilizing composite materials and innovative fixing elements, addresses the challenges of weight, aesthetics, and handling in existing hydrogen storage solutions, resulting in a lightweight, compact, and reliable storage system that enhances vehicle performance and habitability.
Patent Information
- Application Number
- FR2023012123
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-11-08
- Publication Date
- 2025-05-09
AI Technical Summary
Existing hydrogen storage solutions for vehicles, such as metallic cylindrical bottles, are heavy, bulky, and aesthetically unpleasing, making them unsuitable for private vehicles due to issues related to aesthetics, aerodynamic performance, and handling.
A tank with integrated hydrogen storage means that is part of the vehicle chassis, featuring composite material construction, stabilizer bar integration, and innovative fixing elements that allow for secure mounting of the rear wheel train, thereby replacing the traditional rear cradle.
The solution provides a lightweight, compact, and reliable hydrogen storage system that enhances vehicle handling and aerodynamics, while maintaining interior habitability and reducing maintenance needs.
Smart Images

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Abstract
Description
Title of the invention: Tank comprising connecting elements for a stabilizer bar, chassis, body and equipped vehicle. Technical field of the invention
[0001] The invention relates to a tank comprising connecting elements intended to fix a vehicle wheel set stabilizer bar. The invention also relates to a chassis comprising such a tank. The invention also relates to a body comprising such a chassis. The invention also relates to a vehicle comprising such a tank or such a chassis or such a body. State of the prior art
[0002] A vehicle, in particular a motor vehicle, equipped with a powertrain using hydrogen generally requires a means of storing hydrogen. Such a means of storing hydrogen generally comprises one or more metal “cylinders”, each having a substantially cylindrical shape whose length is much greater than the diameter. Such hydrogen cylinders are particularly heavy and bulky. Moreover, on a bus or coach, such cylinders are generally arranged substantially in a horizontal plane on the roof of such a vehicle.
[0003] However, such a solution cannot be adopted for a motor vehicle of the private vehicle type, in particular for problems linked to aesthetics and / or aerodynamic performance and / or performance in terms of road holding. Presentation of the invention
[0004] One of the aims of the invention is to provide a tank which overcomes the above drawbacks. In particular, the invention provides a tank comprising a hydrogen storage means forming part of the chassis without, however, impairing the habitability of a vehicle equipped with such a tank.
[0005] The invention presents optimized means for integrating the tank into the chassis. In particular, the tank comprises a solution for integrating the stabilizer bar. The stabilizer bars, or anti-roll bars, or anti-roll bars, are part of the suspension element. The suspension element of a motor vehicle is configured to absorb the impact of shocks that the wheels of a motor vehicle may encounter. The suspension element also contributes to the good road holding of the vehicle, as well as driving comfort. The stabilizer bars ensure the good road holding of the vehicle in all driving situations of the vehicle and more particularly in a bend, on uneven terrain or on a road deformed. The invention relates to a solution for integrating a stabilizer bar into a tank comprising a hydrogen storage means forming part of the chassis. Summary of the invention
[0006] To achieve this objective, the invention relates to a tank, in particular a tank intended to store hydrogen, the tank comprising fixing elements intended for the external fixing to the tank of a vehicle wheel set stabilizer bar, in particular a rear wheel set.
[0007] The tank can be obtained at least partially from composite material, in particular from composite material comprising fiberglass and / or carbon fiber.
[0008] The reservoir may comprise holes passing through the reservoir, in particular holes extending in a first direction and holes extending in a second direction and holes extending in a third direction, in particular the first, second and third directions being perpendicular to each other.
[0009] The tank may comprise tubes passing through the tank from one side to the other, in particular tubes made of composite material, the tubes being able to be intended to stiffen the tank, the through holes being able to extend within each tube.
[0010] The connecting elements intended for external fixing to the tank of the stabilizer bar may comprise fixing means for such a wheel set, in particular fixing means of the screw or bolt or stud type, said screws, bolts or studs being housed at least partially in certain through holes and engaging a guide bearing in which the stabilizer bar is housed.
[0011] The invention also relates to a vehicle chassis, in particular a motor vehicle, the chassis comprising a tank as defined above, the rear axle comprising two lateral struts on either side of the tank, said lateral struts being connected by the stabilizer bar.
[0012] The invention also relates to a vehicle body, in particular a motor vehicle, the body comprising a chassis as defined above and a wheel set, in particular a rear wheel set, the wheel set being fixed at least partially to the tank by the connecting elements, the connecting elements comprising a right plate fixed to the tank and a left plate fixed to the tank.
[0013] The right plate may comprise a right front yoke and a right rear yoke and the left plate may comprise a left front yoke and a left rear yoke.
[0014] The connecting elements may comprise on the right side: - a right front connecting rod mounted in pivot connection with respect to the right front yoke and a right rear connecting rod mounted in pivot connection with respect to the right rear yoke, and the connecting elements may include on the left side: - a left front connecting rod mounted in a pivot connection with respect to the left front yoke and a left rear connecting rod mounted in a pivot connection with respect to the left rear yoke.
[0015] The fixing means housed in through holes can ensure the fixing of the right plate and the left plate on the tank.
[0016] The reservoir may comprise a left cavity intended to receive at least partially the left plate and a right cavity intended to receive at least partially the right plate.
[0017] The invention also relates to a vehicle, in particular a motor vehicle, comprising a tank as defined previously, or a chassis as defined previously, or a body as defined previously. Presentation of figures
[0018] These objects, characteristics and advantages of the present invention will be explained in detail in the following description of an embodiment of a reservoir given without limitation in relation to the attached figures among which:
[0019] [Fig.l] is a schematic view of a motor vehicle according to one embodiment of the invention.
[0020] [Fig.2] is a perspective bottom view of a box according to one embodiment of the invention.
[0021] [Fig. 3] is a partial perspective view of the body according to the embodiment of the invention.
[0022] [Fig.4] is a partial perspective view of the rear of the body according to the embodiment of the invention. Detailed description
[0023] The direction in which a vehicle, in particular a motor vehicle, moves in a straight line is defined as the longitudinal direction X. By convention, the direction perpendicular to the longitudinal direction, located in a plane parallel to the ground, is called the transverse direction Y. The third direction, perpendicular to the other two, is called the vertical direction Z. Thus, a direct XYZ reference frame is used in which X is the longitudinal direction in the front-rear direction of the vehicle, therefore directed towards the rear, Y is the transverse direction directed towards the right and Z is the vertical direction directed upwards. The forward direction corresponds to the direction in which the vehicle usually moves in the longitudinal direction and is opposite to the rear direction.
[0024] As illustrated in Figures 1 and 2, a vehicle, for example a motor vehicle 1, comprises a chassis 2. The vehicle 1 comprises a body 3. The vehicle 1 comprises a rear wheel set 20. The vehicle 1, or the body 3, or the chassis 2, comprises a tank 10. Preferably, the tank 10 makes it possible to store hydrogen or dihydrogen. In this case, the vehicle 1 is equipped with a powertrain operating, at least partially, with hydrogen.
[0025] More specifically, as illustrated in Figures 2, 3 and 4, the tank 10 comprises connecting elements 5 intended to fix a vehicle wheel set. Preferably, the connecting elements 5 make it possible to fix the rear wheel set 20. The body 3 comprises the chassis 2 and the wheel set fixed at least partially on the tank 10.
[0026] The tank 10 is obtained entirely, or at least partially, from composite material. For example, the composite material comprises fiberglass. Alternatively, or in addition, the composite material comprises carbon fiber. Alternatively, or in addition, the composite material comprises Kevlar fiber (registered trademark). As illustrated in Figures 2 to 4, the tank 10 is for example generally shaped in the shape of a rectangular parallelepiped. Preferably, the tank 10 comprises holes 11 passing through it. As illustrated in particular in Figures 2 and 3, holes 1IV extend in a first direction. Preferably, the first direction is parallel or substantially parallel to the vertical direction Z. Preferably, holes 11L extend in a second direction. Preferably, the second direction is parallel or substantially parallel to the longitudinal direction X.Preferably, HT holes extend in a third direction. Preferably, the third direction is parallel or substantially parallel to the transverse direction Y. Thus, advantageously, the first, second and third directions are perpendicular to each other.
[0027] Preferably, the holes 11 come from hollow tubes 14 arranged within the tank 10. Indeed, the tank 10 comprises tubes or reinforcement tubes or wells 14 passing through the tank 10 from one side to the other. For example, the tubes 14 are made of composite material. Alternatively, the tubes 14 are made of steel, or aluminum alloy, or another material. Thus, thanks to the presence of tubes 14 which pass through the tank 10 in the three directions X, Y, Z, the holes 11 formed within each tube 14 also pass through the tank.
[0028] Although the hollow tubes 14 are preferably of circular cross-section, tubes of hexagonal, square, rectangular or other cross-section shapes may also be suitable.
[0029] As illustrated in particular in Figures 2 and 3, the connecting elements 5 comprise fixing means 12 for fixing the wheel set 20 to the tank 10. Each fastening means or insert 12 is for example of the screw, or bolt, or stud type, preferably metallic. Thus, preferably, each fastening means 12 comprises a threaded rod, at least a partially threaded rod whose thread is intended to cooperate with a tapped element such as a nut for example. Thus, fastening means 12, in particular their rods, extend within through holes 11. In other words, the rod of the fastening means or insert is housed, at least partially, in predefined through holes 11, that is to say in hollow tubes 14 predefined according to the desired locations relative to the tank. Note that each fastening means 12 preferably exceeds the length of the hollow tube 14.Alternatively, in the case of a nut or a threaded element inserted partly, or entirely, within the hollow tube 14, the length of the rod is for example equal to or even less than the length of the hollow tube crossed, or partially crossed by the fixing means 12.
[0030] For example, the tubes accommodate inserts having various shapes and / or different lengths, in particular depending on the length of the hollow tube 14 to be crossed. Advantageously, the inserts are cylindrical and threaded to facilitate the mounting of screwed elements such as screws, for example with a metric pitch. Thus, the fixing means or inserts are installed in the tubes at the appropriate locations of the tank 10.
[0031] Preferably, as illustrated in FIGS. 2 and 3, the connecting elements 5 comprise a right plate 30R fixed to the tank 10 and a left plate 30L fixed to the tank 10.The fixing of each plate 30R, 30L on the tank 10 is ensured by means of fixing means or inserts 12 seen previously. Preferably, the right plate and the left plate comprise holes intended for the passage of fixing means 12. More precisely, each fixing means 12 is housed, at least partially, in a through hole 11 and passes through a hole in the corresponding plate to ensure the fixing of the right plate 30R and the left plate 30L on the tank 10. In other words, each plate is sandwiched between a shoulder or a nut or a washer or a screw or bolt head of the fixing means 12 and the tank 10.
[0032] For example, each plate is fixed by means of four fixing means 12. Alternatively, fewer or more fixing means 12 may be suitable. Note that the number of fixing means 12 used to fix the same plate may depend on the “pitch” or distance in a given direction between two axes of holes side by side in this direction. As a reminder, each hole 11 preferably comes from a tube 14 passing through the tank 10. For example, the values of the pitches in the vertical, longitudinal and transverse directions are identical. Alternatively, the values of the pitches in the X, Y and Z directions are different or two of them are identical and the third has a lower or higher value. For example, the pitch is of the order of 120 mm.
[0033] As illustrated in particular in [Fig.2], preferably the left plate 30L comprises a left front yoke 3 IL and a left rear yoke 32L. In the same way, the right plate 30R comprises a right front yoke 31R and a right rear yoke 32R. For example, each plate has an overall angle iron shape arranged so as to use holes 1IV extending in the vertical direction and holes HT extending in the transverse direction.
[0034] Preferably, the connecting elements 5 comprise on the right side, a right front link 40R mounted in pivot connection relative to the right front yoke 31R and a right rear link 50R mounted in pivot connection relative to the right rear yoke 32R. Preferably, the connecting elements 5 comprise on the left side a left front link 40L mounted in pivot connection relative to the left front yoke 31L and a left rear link 50L mounted in pivot connection relative to the left rear yoke 32L. For example, the yokes 31R, 31L, 32R, 32L have axes extending longitudinally, or substantially longitudinally. The two links 40R, 50R on the right side are connected to a right rear wheel hub. In the same way, the two links 40L, 50L on the left side are connected to a left rear wheel hub.
[0035] Preferably, the reservoir 10 is shaped to receive the connecting elements 5 within a right clearance for the right side and a left clearance for the left side. In other words, as illustrated in Figures 2 and 3, the reservoir comprises a left cavity 13L intended to receive at least partially the left plate 30L and a right cavity 13R intended to receive at least partially the right plate 30R. Preferably, the right cavity 13R is the symmetry, or substantially the symmetry, of the left cavity 13L with respect to a median plane.
[0036] For example, each cavity extends, from a bottom 17 of the tank, over substantially half of the thickness E of the tank in the vertical direction.
[0037] As visible in [Fig.2], 3 and 4, the tank comprises fixing elements 6, 60, 61 intended to hold a stabilizer bar 65. The stabilizer bar 65, anti-roll bar, torsion bar or anti-roll bar is a device which increases the stability of the vehicle during rolling movements of the vehicle. It makes it possible to apply a righting torque opposing differential movements between the right wheel and the left wheel and does not generate a specific force when the movements are equal and in the same direction. The torsion bar 65 is generally free to rotate relative to the body and its ends are connected to each wheel of the axle considered, here a rear axle 20.
[0038] In the embodiment shown, the stabilizer bar 65 has a U shape and connects by means of links 66 each sliding element of the suspension, that is to say each support tube 80 R and 80L of the lateral shock absorbers.
[0039] It is fixed to the tank by means of several guide bearings 60. The bearings guide are in the form of a spacer 63, itself fixed at each end to holes 111 passing through the tank, by means of screws 61, as visible in [Fig.3]. Alternatively, other fixing means can be used. The guide bearings 60 are for example made up of an elastomer block hollowed out in its center to allow the passage of the bar, and an external frame constituted here by the spacer 63. The guidance of the torsion bar 65 by means of the guide bearings 60 secured to the tank makes it possible to obtain a limitation of the roll angle during turns and thus contributes to obtaining good suspension comfort in the majority of driving cases.
[0040] In summary, the solution proposes a polymorphic and unique tank. Indeed, only one tank is provided for the same vehicle. As a reminder, preferably, the tank is capable of storing hydrogen, generally under a pressure of the order of 700 bars. Thanks to its rigidity and its resistance in all directions, in particular obtained by the presence of the tubes 14 extending in the directions X, Y, Z, the tank 10 replaces the rear part of the chassis. Thus, the vehicle does not include a side member in its rear zone, nor a cradle, the tank ensuring the support of the rear axle. In other words, the tank is sufficiently rigid to replace the rear part of side members intended to ensure the support of a vehicle rear axle. Indeed, the fixing of the rear axle 20 relative to the chassis 2 is ensured by means of the plates 30R, 30L fixed directly on the tank 10.As a reminder, the fixing means 12 pass through tubes 14 which themselves pass through the tank 10 to hold the plates on the tank. Thus certain holes 11T, 1IV, 11L in the transverse, vertical and longitudinal directions provided by hollow tubes 14 receive the fixing means 12 allowing the fixing of the plates relative to the tank. In other words, the fixing of the rear axle is ensured directly on the tank 10, the tank being a structural part of the chassis 2.
[0041] The usual cradle is replaced by two adapted parts, in this case the two plates 30R, 30L fixed by inserts 12 passing through the hollow reinforcement tubes 14, to receive the elements of the rear axle.
[0042] Advantageously, the rear axle 20, with its torsion bar 65, can be mounted beforehand, possibly in time hidden from the assembly line, on the tank 10. A pre-adjustment of the rear axle can then be carried out before final assembly on the vehicle body. This then results in a saving of time and an economy.
[0043] The solution is particularly suitable for a vehicle using hydrogen in its powertrain and can be used on both a private and commercial motor vehicle.
[0044] The solution makes it possible to reduce the mass of the vehicle chassis, in particular due to the shortening or absence of the side members in the rear part and / or the absence cross member and / or the absence of a cradle. In addition, the mass of the tank 10, preferably made of composite material, is much lower than a tank made up of one or more cylindrical metal cylinders. In addition, since the tank is unique, there is no need for fittings and / or pipes and / or high-pressure piping to combine several volumes together, which avoids the maintenance and risks of leaks inherent in such junctions during the life of the vehicle. Thus, the tank is particularly reliable and requires little or no maintenance. Unlike metal cylinders, the shape of the tank 10 can be easily adapted to the needs, particularly in terms of the dimensions of the different vehicle bodies. This results in a particularly compact tank that can be specifically integrated into the underbody of vehicles.Finally, despite the presence of the structural tank 10, the volume of the vehicle's passenger compartment is not reduced.
[0045] The solution has no impact on the aesthetics of the vehicle. It also does not affect aerodynamic performance. In addition, it is beneficial in terms of road holding, as the mass of the tank lowers the vehicle's center of gravity.
[0046] As a remark, the solution therefore achieves the desired objective of improving the installation of a means of storing hydrogen within a vehicle, in particular a motor vehicle, without encroaching on the habitability of such a vehicle, while allowing good suspension comfort thanks to the fixing of the anti-roll bar on the tank.
Claims
Claims
1. Tank (10), in particular a tank intended to store hydrogen, characterized in that the tank (10) comprises fixing elements (6, 60, 61) intended for the external fixing to the tank of a stabilizer bar (65) of a vehicle wheel set, in particular a rear wheel set (20).
2. Tank (10) according to the preceding claim, characterized in that the tank (10) is obtained at least partially from composite material, in particular from composite material comprising fiberglass and / or carbon fiber.
3. Tank (10) according to one of the preceding claims, characterized in that the tank (10) comprises holes (11) passing through the tank (10), in particular holes (11V) extending in a first direction and holes (11L) extending in a second direction and holes (HT) extending in a third direction, in particular the first, second and third directions are perpendicular to each other.
4. Tank (10) according to the preceding claim, characterized in that the tank (10) comprises tubes (14) passing through the tank (10) from one side to the other, in particular tubes (14) made of composite material, the tubes (14) being intended to stiffen the tank (10), the through holes (11) extending within each tube (14).
5. Tank (10) according to one of claims 3 or 4, characterized in that the fixing elements (6, 60, 61) intended for the external fixing to the tank of the stabilizer bar (65), comprise guide bearings (60) and fixing means (61) of the screw, bolt or stud type, said screws, bolts or studs (61) being housed at least partially in certain through holes (11) and engaging a guide bearing (60) in which the stabilizer bar (65) is housed.
6. Chassis (2) of a vehicle, in particular of a motor vehicle (1), characterized in that the chassis (2) comprises a tank (10) according to one of the preceding claims, the rear axle comprising two lateral struts on either side of the tank, said lateral struts being connected by the stabilizer bar (65)
7. Vehicle body (3), in particular a motor vehicle (1), comprising a chassis (2) according to the preceding claim and a wheel set, in particular a rear wheel set (20), characterized in that that the wheel set is fixed at least partially to the tank (10) by the connecting elements (5), the connecting elements (5) comprising a right plate (30R) fixed to the tank (10) and a left plate (30L) fixed to the tank (10)
8. Body (3) according to the preceding claim, in combination with claim 5, characterized in that the right plate (30R) comprises a right front yoke (31 R) and a right rear yoke (32R) and in that the left plate (30L) comprises a left front yoke (3 IL) and a left rear yoke (32L), the connecting elements (5) comprising on the right side: - a right front link (40R) mounted in pivot connection relative to the right front yoke (31R) and a right rear link (50R) mounted in pivot connection relative to the right rear yoke (32R),and the connecting elements (5) comprising on the left side: - a left front connecting rod (40L) mounted in pivot connection relative to the left front yoke (3 IL) and a left rear connecting rod (50L) mounted in pivot connection relative to the left rear yoke (32L) and in that the fixing means (12) housed in through holes (11) ensure the fixing of the right plate (30R) and the left plate (30L) on the tank (10).,
9. Box (2) according to one of claims 7 to 8, characterized in that the reservoir (10) comprises a left cavity (13L) intended to receive at least partially the left plate (30L) and a right cavity (13R) intended to receive at least partially the right plate (30R).
10. Vehicle, in particular a motor vehicle (1), characterized in that it comprises a tank (10) according to one of claims 1 to 5, or a chassis (2) according to claim 6, or a body (3) according to one of claims 7 to 9.
Citation Information
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