Battery arrangement having compressed foam plate
View Patent ↗A structure of an electric or hybrid vehicle includes a floor, a battery container secured beneath the floor, and a compressed foam plate arranged between the battery container and the floor.
1. A stricture for an electric or hybrid vehicle, comprising:
a floor;
a battery tray secured beneath the floor; and
a compressed foam plate arranged between the battery tray and the floor,
wherein a surface of the foam plate comprises microscopic perforations configured for evacuating air contained in the foam when the foam plate is compressed and/or configured to avoid ingress of water into the foam, and
wherein a density of the microscopic perforations is between 2 and 10 of the microscopic perforations per mm 2 of the surface of the foam plate.
2. The vehicle structure as claimed in claim 1 , wherein the foam plate further comprises a hole that opens on only one of its faces, the hole being configured for evacuating air contained in the foam when the foam plate is compressed.
3. The vehicle structure as claimed in claim 1 , wherein the foam plate further comprises a portion positioned toward the rear of the vehicle, of which the surface comprises holes configured for evacuating air contained in the foam when the foam plate is compressed.
4. The vehicle structure as claimed in claim 1 , wherein the foam plate is compressed between the floor and the battery tray with a degree of compression of between 20% and 40% inclusive.
5. The vehicle structure as claimed in claim 4 , wherein the degree of compression of the foam plate is between 30% and 40% inclusive.
6. The vehicle structure as claimed in claim 1 , wherein a thickness of the foam plate when compressed is between 10 mm and 20 mm inclusive, with a degree of compression of 30% of the foam plate.
7. The vehicle structure as claimed in claim 1 , wherein a thickness of the foam plate when compressed is between 13 mm and 14 mm inclusive, with a degree of compression of 30% of the foam plate.
8. The vehicle structure as claimed in claim 1 , wherein a thickness of the foam plate when compressed is 13 mm, with a degree of compression of 30% of the foam plate.
9. The vehicle structure as claimed in claim 1 , wherein the foam plate comprises a polyurethane foam.
10. The vehicle structure as claimed in claim 1 , wherein the foam is a foam having cells of dimensions smaller than 2 mm.
11. The vehicle structure as claimed in claim 1 , wherein the surface of the foam plate that comprises microscopic perforations is a top face of the foam plate, and a bottom face of the foam plate does not include any of the microscopic perforations.
12. The vehicle structure as claimed in claim 1 , wherein at least one of the microscopic perforations passes completely through a length of the foam plate.
13. The vehicle structure as claimed in claim 1 , wherein at least one of the microscopic perforations passes completely through a width of the foam plate.
14. A vehicle, comprising:
a floor;
a battery tray secured beneath the floor; and
a compressed foam plate arranged between the battery tray and the floor,
wherein a surface of the foam plate comprises microscopic perforations configured for evacuating air contained in the foam when the foam plate is compressed and/or configured to avoid ingress of water into the foam, and
wherein a density of the microscopic perforations is between 2 and 10 of the microscopic perforations per mm 2 of the surface of the foam plate.
15. The vehicle as claimed in claim 14 , wherein the vehicle is a hybrid vehicle or an electric motor vehicle.
16. A method for assembling a vehicle structure comprising:
perforating a foam plate;
arranging the foam plate between a vehicle floor and a vehicle battery tray;
compressing the foam plate to a degree of compression of between 20% and 40%; and
securing the battery tray to the floor in such a way that the foam plate remains compressed to a degree of compression of between 20% and 40%,
wherein a surface of the foam plate comprises microscopic perforations configured for evacuating air contained in the foam when the foam plate is compressed and/or configured to avoid ingress of water into the foam, and
wherein a density of the microscopic perforations is between 2 and 10 of the microscopic perforations per mm 2 of the surface of the foam plate.