MOTOR VEHICLE ORDER AND MOTOR VEHICLE WITH SUCH ORDER
Patent Information
- Application Number
- DE602023008502
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-10-14
- Filing Date
- 2023-09-13
- Publication Date
- 2025-11-12
- Estimated Expiration
- 2043-09-13
AI Technical Summary
Two-seater electric vehicles, or 'micro-city' cars, are prone to water infiltration and damage to electrical components due to gaps between underbody parts, especially when passing through fords, leading to degradation from mud and gravel.
The underbody assembly consists of left and right sub-assemblies made of a single piece of plastic, with interlocking profiles and a sealing gasket to minimize gaps, reducing the number of parts and enhancing sealing.
This design significantly reduces water infiltration and protects electrical components from mud and gravel, while lowering manufacturing and maintenance costs and simplifying the assembly process.
Description
[Technical field]
[0001] The invention relates to the field of motor vehicles and more particularly concerns a motor vehicle assembly and a motor vehicle comprising such an assembly. [Prior art]
[0002] Motor vehicles, in particular two-seater electric vehicles known as "micro-city cars", are known to include a set of parts assembled together to form the underbody of the motor vehicle.
[0003] Such a vehicle assembly comprises several parts added together, including a front floor, extended at the front by a left and right front wheel arch and by a front apron, separating the engine from the passenger compartment of the vehicle.
[0004] For example, documents FR2093943 and FR2698601 describe a vehicle floor that is separated into two parts along the longitudinal axis of the vehicle.
[0005] Similarly, the vehicle assembly also includes, in particular, a rear floor, extended at the rear by left and right rear wheel arches, left and right rear mudguards and a rear apron, these parts also being attached to each other.
[0006] The underbody of the motor vehicle is the part of the vehicle most exposed to splashes of water, mud, gravel and salt.
[0007] It has been observed that two-seater electric motor vehicles, so-called "micro-city" motor vehicles, which include such a vehicle assembly, are particularly prone to water infiltration inside their passenger compartment, especially when passing through a ford, with water entering at the junctions between the different parts forming the vehicle assembly at the level of the vehicle's underbody.
[0008] Similarly, electrical components mounted at the level of the underbody of the motor vehicle, in particular the traction battery powering the electric motor of the motor vehicle, or the battery charger, are regularly degraded by mud or gravel projections which enter through the junctions of the parts forming the motor vehicle assembly. [Description of the invention]
[0009] The present invention aims to overcome the aforementioned drawbacks and, to this end, relates to a motor vehicle assembly forming the underbody of said motor vehicle, comprising a left sub-assembly and a right sub-assembly, characterized in that said left and right sub-assemblies each consist of a single piece made of plastic material and in that said left and right sub-assemblies are joined together at a junction area. The left and right sub-assemblies are fitted together relative to each other. The left sub-assembly comprises a female profile and the right sub-assembly comprises a male profile cooperating with said female profile. The female profile is formed on the underside of said left sub-assembly and said male profile is formed on the underside of said right sub-assembly.
[0010] Thus, each left and right sub-assembly consists of a single piece made of plastic. This reduces, compared to prior art, the number of separate parts forming the vehicle assembly that defines the vehicle's underbody.
[0011] By reducing the number of added parts, the risk of water infiltration through the undercarriage of the motor vehicle is advantageously limited, infiltration which can occur in particular when the vehicle passes through a ford.
[0012] This also limits the risk of damage to electrical components mounted on the underbody of the motor vehicle that could occur from mud or gravel being thrown up during the movement of the motor vehicle.
[0013] Depending on optional characteristics of the assembly according to the invention: said left sub-assembly comprises at least a left floor, a left front apron and a left rear apron, a left front mudguard and a left rear mudguard, and said right sub-assembly comprises at least a right floor, a right front apron and a right rear apron, a right front mudguard and a right rear mudguard; said joining area extends longitudinally relative to said assembly; -; said female profile extends over the entire length of the left sub-assembly and said male profile extends over the entire length of the right sub-assembly; the assembly comprises a sealing gasket mounted between said male and female profiles; the assembly comprises a clipping system arranged to provide a fixing between said left sub-assembly and said right sub-assembly.
[0014] The invention also relates to a motor vehicle, remarkable in that it comprises an assembly obtained according to the invention. [Description of the drawings]
[0015] Other features, purposes and advantages of the invention will become apparent from the detailed description that follows, for understanding which reference should be made to the accompanying drawings in which: [ Fig. 1 [ ] schematically illustrates a motor vehicle according to the invention, in left rear isometric view. ] Fig. 2 [ ] is a right-front isometric view of the motor vehicle according to the invention. Fig. 3 [ ] is a top view of the motor vehicle according to the invention. Fig. 4 ] is a cross-sectional view along line IV-IV of the figure 3 , in perspective. [Description of the embodiments]
[0016] In the following description, elements with an identical structure or analogous functions are designated by the same reference.
[0017] By convention, and without limitation, we will adopt longitudinal, vertical and transverse orientations indicated by the direct trihedron (L, V, T) designating the longitudinal, vertical and transverse axes of the vehicle.
[0018] In what follows, the terms "front", "rear", "left", "right", "lower" and "upper" are understood in relation to the vehicle.
[0019] We refer to figures 1 and 2 schematically showing an example of an embodiment of a motor vehicle 1 according to the invention, respectively in rear left isometric view and front right isometric view.
[0020] Motor vehicle 1 is an electric vehicle, of the "micro-city" type, for example with two seats.
[0021] The motor vehicle 1 comprises an assembly 3 defining a part of the body of the motor vehicle 1 and forming the underbody of the motor vehicle 1.
[0022] The assembly 3 of motor vehicle 1 is intended to be supported by a set of wheels 5.
[0023] The motor vehicle 1 illustrated in the figures is a quadricycle.
[0024] However, the present invention applies in the same way to motor vehicles of the "tricycle" type.
[0025] The set 3 comprises a left subset 7g and a right subset 7d assembled together at a junction zone 9.
[0026] In the embodiment illustrated in the figures, the junction zone 9 extends longitudinally relative to the motor vehicle 1.
[0027] According to an alternative embodiment not shown in the figures, the junction zone 9 between the left sub-assemblies 7g and right sub-assemblies 7d extends in another direction, for example in a transverse direction relative to the motor vehicle 1.
[0028] The left subassembly 7g includes a left floor 11g, defining a lower part of the passenger compartment of the motor vehicle 1.
[0029] The left sub-assembly 7g further comprises a left front apron 13g, separating part of the engine from the passenger compartment of the motor vehicle 1 and extending the left floor 11g at the front.
[0030] The left sub-assembly 7g further includes a left front mudguard 15g, extending over the corresponding wheel 5 and extending the left front apron 13g laterally outwards.
[0031] As more clearly seen at the figure 2 , the left sub-assembly 7g further includes a left rear apron 17g, extending the left floor 11g to the rear.
[0032] The left sub-assembly 7g further includes a left rear mudguard 19g, extending over the corresponding wheel 5 and extending the left rear apron 17g laterally outwards.
[0033] Thus, the left subset 7g comprises: a left floor 11g, a left front apron 13g, a left front mudguard 15g, a left rear apron 17g, and a left rear mudguard 19g.
[0034] According to the invention, the left subassembly 7g consists of a single piece made of plastic material, for example polypropylene.
[0035] The left sub-assembly 7g can for example be obtained by a plastic injection molding process, known to those skilled in the art.
[0036] We refer to the figure 3 showing motor vehicle 1 from a top view.
[0037] The description made for the left sub-assembly 7g of the assembly 3 of motor vehicle 1 applies in the same way to the right sub-assembly 7d.
[0038] The right subassembly 7d includes a right floor 11d, defining a lower part of the passenger compartment of the motor vehicle 1. When the left subassemblies 7g and right subassemblies 7d are assembled together, the right floor 11d defines with the left floor 11g the floor 11 of the motor vehicle 1.
[0039] The right subassembly 7d further includes a right front apron 13d, separating part of the engine from the passenger compartment of the motor vehicle 1 and extending the right floor 11d at the front. When the left subassemblies 7g and 7d are assembled together, the right front apron 13d, together with the left front apron 13g, forms the front apron 13 of the motor vehicle 1.
[0040] The right sub-assembly 7d further includes a right front mudguard 15d, extending over the corresponding wheel 5 and extending the right front apron 13d laterally outwards.
[0041] The right subassembly 7d further comprises a right rear apron 17d, extending the right floor 11d to the rear. When the left subassemblies 7g and right subassemblies 7d are assembled together, the right rear apron 17d forms, together with the left rear apron 17g, the rear apron 17 of the motor vehicle 1.
[0042] The right sub-assembly 7d further includes a right rear mudguard 19d, extending over the corresponding wheel 5 and extending the right rear apron 17d laterally outwards.
[0043] Thus, the right subset 7d comprises: a right floor 11d, a right front apron 13d, a right front mudguard 15d, a right rear apron 17d, and a right rear mudguard 19d.
[0044] According to the invention, the right subassembly 7d consists of a single piece made of plastic material, for example polypropylene.
[0045] As is the case for the left sub-assembly 7g, the right sub-assembly 7d can, for example, be obtained by a plastic injection molding process, known to those skilled in the art.
[0046] We refer to the figure 4 showing a cross-sectional view along line IV-IV of the figure 3 , in perspective.
[0047] In an example of the realization of assembly 3, the assembly between the right sub-assemblies 7d and left sub-assemblies 7g at the level of the junction zone 9 is obtained by interlocking between the sub-assemblies 7d, 7g.
[0048] To do this, a female profile 25 is made on the left sub-assembly 7g.
[0049] The left subset 7g has a top face 21g and a bottom face 23g. Similarly, the right subset 7d has a top face 21d and a bottom face 23d.
[0050] In the illustrated embodiment example, the female profile 25 is made under the lower face 23g of the left sub-assembly 7g.
[0051] According to an alternative embodiment not shown, the female profile 25 can be made on another face of the right subassembly 7d, in particular on the upper face 21g.
[0052] In one example of implementation, the female profile 25 has an L-shape.
[0053] For this purpose, the female profile 25 has a first edge 27, extending from the lower face 23g of the left sub-assembly 7g, substantially perpendicular to said lower face 23g.
[0054] The female profile 25 has a second edge 29 extending from the first edge 27 substantially parallel to the lower face 23g of the left sub-assembly 7g.
[0055] The assembly formed by the first edge 27 and the second edge 29 defines the L-shaped female profile 25.
[0056] The female profile 25 can extend over the entire length of the left subassembly 7g, in particular over the entire length of the lower face 23g when the female profile 25 is made under the lower face 23g of the left subassembly 7g.
[0057] Alternatively, the female profile 25 can extend over only part of the length of the left sub-assembly 7g.
[0058] The female profile 25 is for example made close to a right lateral edge 31 of the left subassembly 7g.
[0059] The right sub-assembly 7d comprises a male profile 33 cooperating with the female profile 25.
[0060] In the illustrated embodiment example, the male profile 33 is made under the lower face 23d of the right sub-assembly 7d.
[0061] According to an alternative embodiment not shown, the male profile 33 can be made on another face of the right subassembly 7d, in particular the upper face 21d.
[0062] In one example of an embodiment, the male profile 33 also has an L-shape.
[0063] The male profile 33 has a first edge 35, extending from the lower face 23d of the right subassembly 7d, substantially perpendicular to said lower face 23d.
[0064] The male profile 33 has a second edge 37 extending from the first edge 35 substantially parallel to the lower face 23d of the right subassembly 7d.
[0065] The assembly formed by the first edge 35 and the second edge 37 defines the male L-shaped profile 33.
[0066] The male profile 33 can extend over the entire length of the straight subassembly 7d, in particular over the entire length of the lower face 23d when the male profile 33 is made under the lower face 23d of the straight subassembly 7d.
[0067] Alternatively, the male profile 33 can extend over only part of the length of the straight sub-assembly 7d.
[0068] The male profile 33 of the right subassembly 7d is arranged so as to open into the female profile 25 of the left subassembly 7g. For this purpose, the male profile 33 extends, for example, from a left lateral edge 39 of the right subassembly 7d.
[0069] Assembly 3 also includes a sealing gasket 41, or sealing foam, mounted between the male 33 and female 25 profiles.
[0070] In the realization of assembly 3 illustrated in the figures, the sealing joint 41 has a U-shaped cross-section.
[0071] The sealing gasket 41 is inserted between the female profile 25 and the male profile 33, so as to form a sandwich comprising the female profile 25, the sealing gasket 41 and the male profile 33.
[0072] This makes it possible to easily ensure good contact between the left sub-assembly 7g and the right sub-assembly 7d and to limit the dispersion of the sealing gasket 41, which makes it possible to seal the assembly 3 at the level of the underside of the motor vehicle 1 of the invention.
[0073] The example shown indicates that the female profile 25 is fitted to the left sub-assembly 7g and that the male profile 33 is fitted to the right sub-assembly 7d. However, the reverse is of course possible.
[0074] The fitting of the right sub-assembly 7d onto the left sub-assembly 7g is thus obtained at the level of the junction area 9 by the introduction of the male profile 33 into the sealing joint 41, itself mounted in the female profile 25.
[0075] According to an embodiment of assembly 3 not shown in the figures, assembly 3 includes a clipping system arranged to operate a fixing between the left sub-assembly 7g and the right sub-assembly 7d.
[0076] For example, the clipping system may include one or more fixing clip(s) mounted under the lower face 23d of the right subassembly 7d and cooperating with one or more centering device(s) mounted under the lower face 23g of the left subassembly 7g.
[0077] Thanks to the present invention, the front left aprons 13g and rear left aprons 17g, and the front left mudguards 15g and rear left mudguards 19g are integrated into the left floor 11g so as to form the left sub-assembly 7g.
[0078] Similarly, the front right aprons 13d and rear right aprons 17d, and the front right mudguards 15d and rear right aprons 19d are integrated into the right floor 11d so as to form the right sub-assembly 7d.
[0079] Thus, each left sub-assembly 7g and right sub-assembly 7d consists of a single piece made of plastic material, for example polypropylene.
[0080] Compared to the previous art, the number of added parts forming the assembly 3 of motor vehicle 1 and defining the base of motor vehicle 1 is then reduced.
[0081] By reducing the number of added parts, we advantageously limit the risk of water infiltration through the underbody of the motor vehicle 1, infiltration which can occur in particular when passing said vehicle through a ford.
[0082] We also limit the risk of damage to electrical components mounted on the underbody of motor vehicle 1 which could occur from mud or gravel projections during the movement of motor vehicle 1.
[0083] Thanks to the present invention, the quality of the underbody of the motor vehicle 1 according to the invention is greatly improved, compared to motor vehicles of the prior art.
[0084] Furthermore, by reducing the number of parts to be assembled, the manufacturing cost and assembly time of assembly 3 according to the invention are minimized. Maintenance costs for the motor vehicle 1 equipped with such an assembly are also reduced, costs incurred in the prior art to repair damage caused by water infiltration and mud and gravel spray.
[0085] Furthermore, the fact that the entire invention is made from two sub-assemblies 7g, 7d which are assembled together makes it possible to limit the complexity of making the tooling for implementing the plastic injection molding process and to limit the cost of this tooling, compared with the cost that would be obtained by an assembly made in one piece.
[0086] We also limit the cooling time that needs to be applied to the two sub-assemblies 7g, 7d when they come out of the mold, by comparison with the cooling time that would be required if the assembly were made in one piece.
[0087] The present invention is particularly suited to two-seater electric motor vehicles known as "micro-city cars", especially those whose maximum speed is capped at 45 km / h.
[0088] However, the assembly 3 of motor vehicle 1 according to the invention can be adapted to equip other types of electric motor vehicles, for example those with four or five seats.
[0089] Also, the assembly 3 of motor vehicle 1 according to the invention can be adapted to equip electric motor vehicles whose maximum speed is not necessarily capped at 45 km / h.
[0090] As will be understood, the present invention is not limited to the embodiments of this motor vehicle assembly and of this motor vehicle comprising such an assembly, described above only by way of illustrative examples, but on the contrary it encompasses all variants involving the technical equivalents of the means described as well as their combinations if these fall within the scope of the invention as represented by the claims.
Claims
1. An assembly (3) of a motor vehicle (1) forming the base of said motor vehicle (1), comprising a left subassembly (7g) and a right subassembly (7d), said left (7g) and right (7d) subassemblies each consisting of a single realised component of plastic material and in that said left (7g) and right (7d) subassemblies are assembled together on the level of a junction zone (9), said left (7g) and right (7d) subassemblies being fitted relative to each other, said left (7g) subassembly comprising a female section (25) and said right-hand subassembly (7d) comprises a male section (33) cooperating with said female section (25), characterised in that said female section (25) is made under a lower face (23g) of said left-hand subassembly (7g) and in that said male section (33) is made under a lower face (23d) of said right-hand subassembly (7d).
2. An assembly (3) of a motor vehicle (1) according to claim 1, characterised in that said left-hand subassembly (7g) comprises at least: - a left floor (11g), - a left front apron (13g) and a left rear apron (17g), - a left front mudguard (15g) and a left rear mudguard (19g), and in that said straight subassembly (7d) comprises at least: - a straight floor (11d), - a right front apron (13d) and a right rear apron (17d), - a right front mudguard (15d) and a right rear mudguard (19d).
3. Motor vehicle assembly (3) according to either of Claims 1 and 2, characterised in that the said junction zone (9) extends longitudinally relative to the said assembly (3).
4. A motor vehicle assembly (3) according to one of the previous claims, wherein said female section (25) extends over the entire length of said left-hand subassembly (7g) and wherein said male section (33) extends over the entire length of said right-hand subassembly (7d).
5. Assembly (3) of a motor vehicle (1) according to any one of the previous claims, characterised in that it comprises a sealing gasket (41) mounted between the said male (33) and female (25) profiles.
6. Assembly (3) of a motor vehicle (1) according to any one of the previous claims, characterised in that it comprises a clip-fastening system arranged to effect a fastening between said left subassembly (7g) and said right subassembly (7d).
7. Motor vehicle (1), characterised in that it comprises an assembly (3) obtained according to any one of the previous claims.