VEHICLE WITH REINFORCED GLASS STOP

DE602021038248T2Active Publication Date: 2025-09-10NISSAN MOTOR CO LTD +1
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Patent Information

Application Number
DE602021038248
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-04-22
Filing Date
2021-03-29
Publication Date
2025-09-10
Estimated Expiration
2041-03-29

AI Technical Summary

Technical Problem

Electric vehicles face challenges in protecting the electric traction battery from damage during accidental lateral impacts, particularly from external obstacles like posts, without causing the battery to catch fire or fall and without significantly increasing vehicle weight.

Method used

A reinforced glazing bead structure incorporating a non-deformable reinforcing tube made of steel, extending along the glazing bead's length, with deformable end zones to absorb impact energy, ensuring the battery's integrity by preventing direct impact and distributing energy absorption.

Benefits of technology

The reinforced glazing bead effectively protects the battery from lateral impacts, maintaining its integrity and preventing damage to other vehicle components while minimizing weight increase.

✦ Generated by Eureka AI based on patent content.
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Description

[0001] The present invention relates to a vehicle provided with a reinforced glazing bead. For the purposes of the description, reference will be made to a direct orthonormal reference frame XYZ conventionally used in automobile design, in which the X axis designates the front-rear longitudinal direction of the vehicle, oriented towards the rear, the Y axis designates the transverse direction and is oriented towards the right of the vehicle, the Z axis designates the vertical direction, and is oriented upwards.

[0002] Motor vehicles generally comprise a chassis configured to support all of the mechanical components and the body of the vehicle. The chassis typically comprises two longitudinal side members and a plurality of transverse cross members disposed between said side members. A motor vehicle floor is supported by the chassis and delimits the interior of the vehicle's passenger compartment. Generally, the floor of a motor vehicle comprises a rear portion called the "rear floor", connected to a front portion called the "front floor".

[0003] The rear floor delimits the rear passenger cabin and comprises a front part delimiting a floor area intended to receive the passengers' feet, also called a "foot well" and a rear part raised relative to the front part and delimiting a floor area intended to receive the seats of the second row of seats. The front and rear parts of the rear floor are connected by a shoulder or joining portion called a "glazing bead". Thus, the glazing bead constitutes a solid wall extending along a substantially transverse and vertical plane YZ of the vehicle.

[0004] For some electric vehicles, particularly hybrid vehicles, it is necessary to reinforce the body structure to effectively protect the electric traction battery in the event of an accidental impact of the vehicle against an external obstacle. In the event of such an impact, which may for example be caused by an external post positioned laterally relative to the vehicle, the battery must neither catch fire nor fall to the ground, and the internal modules that make up the battery must not be damaged. Only damage to the battery casing may be tolerated.

[0005] An electric vehicle according to the invention has a reinforced body structure making it possible to ensure, with safety and reliability, the safeguarding of the electric battery during an accidental impact of the vehicle against an external obstacle, and in particular during an accidental lateral impact linked to the presence of an external pole. An example can be seen in US 2019 / 275874 A1.

[0006] The present invention relates to an electric vehicle comprising a rear floor comprising a front part and a rear part, separated by a glazing bead, said rear part comprising a front portion provided with a compartment and an electric battery, the electric battery being housed in the compartment, said compartment being delimited by said glazing bead.

[0007] According to the invention, the glazing bead comprises a reinforcing tube extending along it over a length which is greater than or equal to the dimension of the battery considered along said glazing bead, the glazing bead comprising two deformable end zones extending on each side of the reinforcing tube. As a reminder, the glazing bead is a wall extending in a vertical and transverse plane YZ of the vehicle and separating the front part and the rear part of the rear floor, said rear part being intended to receive rear seats and the front part being provided for the feet of passengers who would be seated on the rear seats.The glazing bead constitutes a wall delimiting the compartment intended to house the battery, and according to the invention, it is reinforced by a non-deformable reinforcing tube intended to preserve the battery in the event of an impact of the vehicle against an external obstacle which may for example be a post in a lateral position relative to the vehicle. The deformable end zones of the glazing bead make it possible to absorb at least partially the energy produced during such an impact by deforming. It is in fact not desirable for the glazing bead to constitute in its entirety an non-deformable bar, because it could then transmit a large part of this energy to other elements of the vehicle and cause them to be damaged. The tube may for example be straight or curved, or may be bent by having two inclined segments. The tube may have a cross-section having for example a square, circular, rectangular or any other shape.Preferably, the reinforcement tube is an added part that can be attached to the glazing bead by any means, such as, for example, by welding or with screws and nuts. The reinforcement tube extends over the glazing bead in a preferably horizontal and transverse direction Y of the vehicle. Advantageously, the reinforcement tube is metallic and is for example made of steel. The tube covers the entire length of the side of the battery extending along the glazing bead, in order to preserve the integrity of said battery in the event of an impact of the vehicle against an external obstacle. Indeed, an external post in a lateral position relative to the vehicle will not be able to directly impact the battery due to the presence of the reinforcement tube.

[0008] According to a possible characteristic of the invention, the reinforcing tube is rectilinear and is fixed to the glazing bead so as to extend parallel to said glazing bead. With respect to an accidental impact against an external obstacle which may for example be a side post, a reinforcing tube of rectilinear shape is more effective than a tube having any other shape with the same weight. The direction in which the reinforcing tube extends is preferably horizontal and transverse Y.

[0009] According to a possible characteristic of the invention, the tube is fixed in an upper zone of the glazing bead so that an upper longitudinal edge of the reinforcing tube is tangent to an upper longitudinal edge of the glazing bead. It is in this particular position that the reinforcing tube has been found to be most effective against an accidental impact of the vehicle against an external obstacle.

[0010] According to a possible feature of the invention, the tube is hollow. In this way, the tube can perfectly play its role of protecting the electric battery, without excessively increasing the weight of the vehicle.

[0011] According to a possible characteristic of the invention, the tube is delimited by a closed wall, one side of the wall having been deformed to come into contact with another side of said wall by defining two parallel secondary tubes. In this way, the cross-section of the reinforcing tube has a B-shaped profile. It is with such a cross-sectional shape that the reinforcing tube has been judged to be the most effective, because it shows an increased stiffness compared to a tube having another cross-sectional profile. The cross-sectional area of ​​each secondary tube is less than the cross-sectional area of ​​the reinforcing tube. Advantageously, the two secondary tubes have identical dimensions.

[0012] According to a possible characteristic of the invention, the two secondary tubes are closed and are separated by a contact zone between the two sides of said wall. For this configuration, the reinforcement tube has increased stiffness, while not overloading the vehicle too much.

[0013] According to a possible characteristic of the invention, the glazing bead comprises a first wall secured to the rear floor, the reinforcing tube being secured to a second wall of said glazing bead which is fixed to said first wall, so that the reinforcing tube is located between said first wall and said second wall. Advantageously, the second wall has a certain stiffness and can also play the role of a second protective element with respect to the battery by completing the reinforcing tube.

[0014] According to a possible characteristic of the invention, the reinforcing tube is secured to the second wall by welding. This means of connection is particularly effective, especially if it is achieved by means of several welding points distributed over the entire length of the reinforcing tube.

[0015] According to a possible characteristic of the invention, the second wall has two perpendicular faces, the reinforcing tube being welded to said two faces. In this way the connection of the reinforcing tube to the glazing bead is robust and stable, since it is carried out in two perpendicular directions of space.

[0016] According to a possible characteristic of the invention, the tube and the second wall are made of profiled steel. This is a material with good rigidity while being easy to machine.

[0017] A vehicle according to the invention has the advantage of having an electric battery which is well protected against accidental impact of said vehicle against an external obstacle, thanks to the judicious insertion of a reinforcement tube which is of simple geometry and which is compact, in a floor glazing bead. In addition, this insertion does not require tools specifically designed for this operation, nor complicated manipulations requiring great care and precision.

[0018] A detailed description of a preferred embodiment of a vehicle according to the invention is given below with reference to the following figures: [ Fig. 1 ] represents a perspective view of a vehicle according to the invention showing the positioning of the electric battery relative to the glazing bead, [ Fig. 2 ] represents a perspective view of a rear part of the rear floor of a vehicle according to the invention, [ Fig. 3 ] represents a top view of a rear part of the rear floor of a vehicle according to the invention, showing the location of the electric battery relative to the glazing bead, [ Fig. 4 ] represents a longitudinal axial sectional view along an XZ plane of a glazing bead and an electric battery of a vehicle according to the invention, [ Fig. 5 ] represents an exploded perspective view of a window glazing bead of a vehicle according to the invention, [ Fig. 6 ] represents a perspective view of the fitted glazing bead of the figure 4 , [ Fig. 7 ] represents a perspective view of a second face of the glazing bead of a vehicle according to the invention and on which the reinforcement tube is fixed, [ Fig. 8 ] represents a perspective view of the rear part of a rear floor of a vehicle according to the invention, showing the reinforcement tube placed in the glazing bead.

[0019] Referring to the figures 1 et 2 , a motor vehicle 1 according to the invention, comprises a chassis configured to support all of the mechanical components and the bodywork of said vehicle. The chassis conventionally comprises two longitudinal side members and a plurality of transverse cross members arranged between said side members, said side members and said cross members not being visible in the figures. A floor of the vehicle is supported by the chassis and delimits the interior of the passenger compartment of the vehicle. The floor of a motor vehicle comprises a rear part 3, called the “rear floor”, connected to a front part called the “front floor”.

[0020] The rear floor 3 delimits the rear passenger cabin and comprises a front portion delimiting a floor area intended to receive the passengers' feet, also called a "foot well" and a rear portion 4 raised relative to the front portion and delimiting a floor area intended to receive the seats of the second row of seats. The front and rear portions 4 of the rear floor 3 are connected by a shoulder or joining portion called a "glazing bead" 5. Thus, the glazing bead 5 constitutes a solid wall extending along a substantially transverse and vertical plane YZ of the vehicle. The front portion of the rear floor 3 is not visible in the figures.

[0021] Referring to the figures 1 et 3 , a vehicle 1 according to the invention is an electric or hybrid vehicle comprising an electric battery 6 placed in a compartment 7 of the rear part 4 of the rear floor 3, said compartment 7 being placed near the glazing bead 5. Schematically, the compartment 7 has a rectangular shape, a large front side of which comprises the glazing bead 5. The battery 6 is conventionally delimited by a box 9 having a receptacle 10 covered by a lid 11 and which is placed in the compartment 7.

[0022] When an accidental impact of the vehicle 1 occurs against an external obstacle which may for example be an external post in a lateral position relative to said vehicle 1, the electric battery 6 housed in the compartment 7 is not protected and may suffer significant damage which may have severe repercussions on the environment.

[0023] Referring to the figures 4 à 8 , in order to preserve the integrity of this electric battery 6 during such an impact, a vehicle 1 according to the invention comprises a reinforcing tube 100 intended to be fixed to the glazing bead 5 in order in particular to prevent the compartment 7 housing the battery 6 from being too strongly deformed.

[0024] Referring to the figures 5, 6 And 8the reinforcing tube 100 is rectilinear and is preferably made of profiled steel. This tube 100 is elongated and hollow, and is delimited by a continuous and closed wall. This wall has a first flat face 101 and a second flat face 102 whose width is less than that of said first flat wall 101. The second flat face 102 is pressed against a central zone of the first flat wall 101 and connects said first flat wall 101 by means of two rounded walls 103, 104 defining two identical and parallel secondary tubes 105, 106. In this way, the two secondary tubes 105, 106 each delimit a secondary channel and are separated from each other by the contact zone between the first flat wall 101 and the second flat wall 102. The profile of the cross-section of the reinforcing tube 100 therefore has a general B-shaped shape.

[0025] Referring to the figures 4 à 8 , the glazing bead 5 comprises a first elongated flat wall 107 extending in a vertical and transverse plane YZ of the vehicle over the entire width of the rear floor 3. This first flat wall 107 clearly marks a shoulder between the front part (not visible in the figures) and the rear part 4 of the rear floor 3, which is raised relative to said front part.

[0026] The glazing bead 5 also comprises a second flat wall 108, intended to be fixed to the first flat wall 107. This second flat wall 108 is elongated, and comprises a main face 109 and a secondary face 110, said two faces being perpendicular. The secondary face 110 is shorter than the main face 109. This second flat face 108 is preferably made of profiled steel and constitutes a reinforcing element for the glazing bead 5, completing the reinforcing tube 100.

[0027] Referring to the figures 7 et 8 , the reinforcing tube 100 is fixed to the second flat wall 108 of the glazing bead 5 by welding using several welding beads 112. More specifically, the reinforcing tube 100 is fixed to an upper zone of the glazing bead 5 so that a longitudinal axis of the tube 100 is parallel to a longitudinal axis of the second wall 108, and so that said tube 100 comes into contact with the two perpendicular faces 109, 110 of said second wall 108. In this way, the reinforcing tube 100 is welded to both said perpendicular faces 109, 110 by means of several welding beads 112 extending regularly along said reinforcing tube 100. The reinforcing tube 100 is placed against the second flat wall 108 so that the two rounded walls 103, 104 delimiting the two secondary tubes 105, 106 are in contact with the main face 109 of said secondary wall 108.

[0028] Referring to the figures 4, 6 And8 , once the reinforcing tube 100 has been welded to the second wall 108 of the glazing bead 5, said second flat wall 108 is secured to the first flat wall 107 of said glazing bead 5. This securing is carried out so that the main face 109 of the second wall 108 is parallel to said first flat wall 107 and so that the secondary face 110 extends perpendicular to said first flat wall 107. The reinforcing tube 100 is then housed between said two walls 107, 108. Advantageously, the second wall 108 is welded to the first flat wall 107.

[0029] Referring to the figures 3 , 5 , 6 And 7the reinforcing tube 100 is non-deformable, and extends in a central zone of the glazing bead 5. In this way, the glazing bead 5 has two deformable zones 113, 114 located on each side of the reinforcing tube 100. The purpose of the reinforcing tube 100 is to preserve the electric battery 6 housed in the compartment 7, in the event of an accidental impact of the vehicle against an external obstacle. Thanks to this reinforcing tube 100, said battery 6 will be protected and will have very little risk of being damaged. The two deformable lateral zones 113, 114 of the glazing bead 5 have the purpose, in association with other deformable regions of the structure of the vehicle to which they are attached, of absorbing at least part of the energy which was produced during this impact, in particular to prevent this energy from being transmitted elsewhere in the floor 3, and from being able to cause significant damage.

Claims

1. Electric vehicle (1) comprising a rear floor (3) having a front part and a rear part (4) separated by a partition (5), said rear part (4) having a front portion equipped with a compartment (7) and an electric battery (6), the electric battery (6) being housed in the compartment (7), said compartment (7) being delimited by said partition (5), characterized in that the partition (5) comprises a non-deformable reinforcing tube (100) extending along said partition over a length that is greater than or equal to the dimension of the battery (6) considered along said partition (5), and in that the partition (5) comprises two deformable end regions (113, 114) extending on each side of the reinforcing tube (100).

2. Electric vehicle according to Claim 1, characterized in that the reinforcing tube (100) is rectilinear and is fastened to the partition (5) so as to extend parallel to said partition (5).

3. Electric vehicle according to Claim 2, characterized in that the tube (100) is fastened in an upper region of the partition (5) such that an upper longitudinal edge of the reinforcing tube (100) is tangential to an upper longitudinal edge of the partition (5).

4. Electric vehicle according to either one of Claims 2 and 3, characterized in that the tube (100) is hollow.

5. Electric vehicle according to Claim 4, characterized in that the tube (100) is delimited by a closed wall, and in that one side of the wall has been deformed in order to come into contact with another side of said wall, defining two parallel secondary tubes (105, 106).

6. Electric vehicle according to Claim 5, characterized in that the two secondary tubes (105, 106) are closed and are separated by a region of contact between the two sides of said wall.

7. Electric vehicle according to any one of Claims 1 to 6, characterized in that the partition (5) comprises a first wall (107) attached to the rear floor (3), and in that the reinforcing tube (100) is secured to a second wall (108) of said partition (5), which is fastened to said first wall (107), so that the reinforcing tube (100) is situated between said first wall (107) and said second wall (108).

8. Vehicle according to Claim 7, characterized in that the reinforcing tube (100) is secured to the second wall (108) by welding.

9. Vehicle according to Claim 8, characterized in that the second wall (108) has two perpendicular faces (109, 110), and in that the reinforcing tube (100) is welded to said two faces (109, 110).

10. Electric vehicle according to any one of Claims 7 to 9, characterized in that the tube (100) and the second wall (108) are made of profiled steel.