IP Library Patent Application 15697154
Patent Application
App. No. 15/697,154

CONNECTION FOR THE CROSS MEMBER AND SILL (PONTOON)

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Quick Facts
Patent No.
US None
App. No.
15/697,154
Abstract

A beam connection system for an electric vehicle includes a longitudinal support beam coupled with a chassis of the electric vehicle and a rear cross beam extending from a right side of a passenger compartment of the electric vehicle to a left side of the passenger compartment. The rear cross beam is generally orthogonal to the longitudinal support beam. A connector is disposed between the longitudinal support beam and the rear cross beam and configured to couple the longitudinal support beam and the rear cross beam with one another. The connector includes a first portion configured to receive an end of the rear cross beam and a second portion configured to receive a medial portion of the longitudinal support beam.

Claims (54)

1 . A beam connection system for an electric vehicle, the beam connection system comprising:

a longitudinal support beam coupled with a chassis of the electric vehicle;

a rear cross beam extending from a right side of a passenger compartment of the electric vehicle to a left side of the passenger compartment, the rear cross beam being generally orthogonal to the longitudinal support beam; and

a connector disposed between the longitudinal support beam and the rear cross beam and configured to couple the longitudinal support beam and the rear cross beam with one another, the connector comprising:

a first portion configured to receive an end of the rear cross beam; and

a second portion configured to receive a medial portion of the longitudinal support beam.

2 . The beam connection system for an electric vehicle of claim 1 , wherein:

the first portion defines a flange configured to extend around an entire outer periphery of the end of the rear cross beam.

3 . The beam connection system for an electric vehicle of claim 1 , wherein:

the second portion defines a flange configured to extend around an entirety of a side wall of the longitudinal support beam and to extend around at least a portion of one or both of a top surface or a bottom surface of the longitudinal support beam.

4 . The beam connection system for an electric vehicle of claim 1 , wherein:

one or both of the longitudinal support beam and the rear cross beam comprise extruded aluminum.

5 . The beam connection system for an electric vehicle of claim 1 , wherein:

the connector comprises cast aluminum.

6 . The beam connection system for an electric vehicle of claim 1 , wherein:

the connector is secured to the longitudinal support beam and the rear cross beam using a plurality of fasteners.

7 . The beam connection system for an electric vehicle of claim 1 , wherein:

the longitudinal support beam defines a sill of the passenger compartment.

8 . A beam connection system for an electric vehicle, the beam connection system comprising:

a longitudinal support beam coupled with a chassis of the electric vehicle;

a rear cross beam extending from a right side of a passenger compartment of the electric vehicle to a left side of the passenger compartment, the rear cross beam being generally orthogonal to the longitudinal support beam; and

a connector configured to receive a portion of the longitudinal support beam and a portion of the rear cross beam to couple the longitudinal support beam and the rear cross beam with one another, the connector comprising:

a first portion defining a first flange configured to extend around an entire outer periphery of the end of the rear cross beam; and

a second portion defining a second flange configured to extend around an entirety of a side wall of the longitudinal support beam and to extend around at least a portion of one or both of a top wall or a bottom wall of the longitudinal support beam.

9 . The beam connection system for an electric vehicle of claim 8 , wherein:

the second flange has a generally u-shaped profile.

10 . The beam connection system for an electric vehicle of claim 8 , wherein:

the first flange and the second flange extend generally orthogonal to one another.

11 . The beam connection system for an electric vehicle of claim 8 , wherein:

a width of the first flange is between about 1-3 cm long.

12 . The beam connection system for an electric vehicle of claim 8 , wherein:

a width of the second flange is between about 1-3 cm long.

13 . The beam connection system for an electric vehicle of claim 8 , wherein:

one or both of the longitudinal support beam and the rear cross beam defines an interior comprising a plurality of ribs.

14 . The beam connection system for an electric vehicle of claim 8 , wherein:

an underside of the rear cross beam defines a plurality of mounting features configured for mounting a battery assembly to an underside of the electric vehicle.

15 . A method for connecting support beams of an electric vehicle, the method comprising:

positioning a rear cross beam at a base of a passenger compartment of an electric vehicle such that the rear cross beam extends from a left side of the passenger compartment to a right side of a passenger compartment;

securing a first portion of a connector to an end of the rear cross beam;

positioning a medial portion of a longitudinal support beam against a second portion of the connector; and

securing the second portion of the connector to the medial portion of the longitudinal support beam.

16 . The method for connecting support beams of an electric vehicle of claim 15 , wherein:

the first portion defines a first flange configured to extend around an entire outer periphery of the end of the rear cross beam; and

the second portion defines a second flange configured to extend around an entirety of a side wall of the longitudinal support beam and to extend around at least a portion of one or both of a top wall or a bottom wall of the longitudinal support beam.

17 . The method for connecting support beams of an electric vehicle of claim 16 , wherein:

securing the first portion comprises fastening the first flange to the outer periphery of the end of the rear cross beam; and

securing the second portion comprises fastening the second flange to one or more of the side wall, the top wall, or the bottom wall of the longitudinal support beam.

18 . The method for connecting support beams of an electric vehicle of claim 16 , wherein:

the first flange and the second flange extend generally orthogonal to one another.

19 . The method for connecting support beams of an electric vehicle of claim 15 , wherein:

the connector comprises cast aluminum.

20 . The method for connecting support beams of an electric vehicle of claim 15 , wherein:

positioning a battery assembly against an underside of the electric vehicle; and

securing a plurality of fasteners with a plurality of mounting features defined in an underside of the rear cross beam to secure the battery assembly against the underside of the electric vehicle.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2018
From: MAIER, JENS
To: THUNDER POWER NEW ENERGY VEHICLE DEVELOPMENT COMPANY LIMITED
Reel/Frame 046833/0521 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2018
From: THUNDER POWER NEW ENERGY VEHICLE DEVELOPMENT COMPANY LIMITED
To: THUNDER POWER ELECTRIC VEHICLE LIMITED
Reel/Frame 046833/0550 →