Vehicle gaseous fuel storage system
A pressure vessel mounting system for mounting a pressure vessel to a vehicle chassis is disclosed. The system includes a deformable bracket for dissipating force, for example force applied to an end of the pressure vessel. Via use of the pressure vessel mounting system, impact damage to pressure vessels may be reduced and/or eliminated.
1 . A pressure vessel mounting system for mounting a pressure vessel to a vehicle chassis, the system comprising:
a front bracket having a tank neck cavity and a front frame mounting flange;
a rear bracket having a deformable tank mount; and
a first outboard rail coupled to the front bracket and the rear bracket,
wherein the front bracket and the rear bracket are substantially parallel,
wherein the first outboard rail extends between the front bracket and the rear bracket substantially perpendicular thereto,
wherein the deformable tank mount comprises an inboard mounting arm and an outboard mounting arm coupled to the rear bracket,
wherein the rear bracket comprises a rear inboard bracket portion coupled to a rear outboard bracket portion, and wherein the rear inboard bracket portion comprises at least one flange coupled to the inboard mounting arm of the deformable tank mount and the rear outboard bracket portion comprises at least one flange coupled to the outboard mounting arm of the deformable tank mount.
2 . The pressure vessel mounting system of claim 1 , further comprising a second outboard rail coupled to and extending between the front bracket and the rear bracket, wherein the first outboard rail and the second outboard rail are substantially parallel to each other.
3 . The pressure vessel mounting system of claim 1 , further comprising a first inboard rail coupled to and extending between the front bracket and the rear bracket, wherein the first outboard rail and the first inboard rail are substantially parallel to each other.
4 . The pressure vessel mounting system of claim 1 , wherein the front bracket comprises a front inboard bracket portion and a front outboard bracket portion, and wherein the tank neck cavity is positioned in a portion of the front inboard bracket portion and the front outboard bracket portion.
5 . The pressure vessel mounting system of claim 4 , wherein the front inboard bracket portion comprises a first notch and the front outboard bracket portion comprises a second notch, and wherein, when the front inboard bracket portion is coupled to the front outboard bracket portion, the first notch and the second notch align to form the tank neck cavity.
6 . The pressure vessel mounting system of claim 1 , wherein the rear outboard bracket portion comprises an outer edge flange.
7 . A vehicle chassis, comprising:
a first frame rail substantially parallel to and spaced apart from a second frame rail;
at least two crossmembers coupled to the first frame rail and the second frame rail;
a gaseous fuel tank having a front neck, a rear neck, a front tank boss positioned concentrically within the front neck, and a rear tank boss positioned concentrically within the rear neck; and
a first gaseous fuel tank mounting assembly coupled to the first frame rail, the first gaseous fuel tank mounting assembly comprising:
a front bracket having a tank neck cavity and a front frame mounting flange;
a rear bracket having a deformable tank mount and a rear frame mounting flange; and
a first outboard rail coupled to the front bracket and the rear bracket,
wherein the front frame mounting flange and the rear frame mounting flange are coupled to the first frame rail,
wherein the front tank boss is coupled to the front bracket,
wherein the rear tank boss is coupled to the deformable tank mount,
wherein the front bracket and the rear bracket are substantially parallel,
wherein the first outboard rail defines a substantially 90 degree angle where it meets each of the front bracket and the rear bracket, and
wherein the deformable tank mount comprises an inboard mounting arm and an outboard mounting arm, and wherein the rear bracket comprises at least one flange coupled to the inboard mounting arm of the deformable tank mount and at least one flange coupled to the outboard mounting arm of the deformable tank mount.
8 . The vehicle chassis of claim 7 , further comprising a second outboard rail coupled to and extending between the front bracket and the rear bracket, wherein the first outboard rail and the second outboard rail are substantially parallel to each other.
9 . The vehicle chassis of claim 7 , further comprising a first inboard rail coupled to and extending between the front bracket and the rear bracket, wherein the first outboard rail and the first inboard rail are substantially parallel to each other.
10 . The vehicle chassis of claim 7 , wherein the front bracket comprises a front inboard bracket portion coupled to a front outboard bracket portion, and wherein the tank neck cavity is positioned in a portion of the front inboard bracket portion and the front outboard bracket portion.
11 . The vehicle chassis of claim 10 , wherein the front inboard bracket portion comprises a first notch and the front outboard bracket portion comprises a second notch, and wherein the first notch and the second notch align to form the tank neck cavity.
12 . The vehicle chassis of claim 10 , wherein the front inboard bracket portion comprises a first coupling flange coupled to a second coupling flange of the front outboard bracket portion.
13 . The vehicle chassis of claim 7 , wherein the rear bracket comprises a rear inboard bracket portion coupled to a rear outboard bracket portion, and wherein the rear outboard bracket portion comprises an outer edge flange coupled to the first outboard rail.
14 . A hydrogen electric vehicle, comprising:
a first frame rail substantially parallel to and spaced apart from a second frame rail;
at least two crossmembers coupled to the first frame rail and the second frame rail;
a gaseous fuel tank having a front neck, a rear neck, a front tank boss positioned concentrically within the front neck, and a rear tank boss positioned concentrically within the rear neck; and
a first gaseous fuel tank mounting assembly coupled to the first frame rail and comprising a front bracket having a tank neck cavity and a front frame mounting flange, a rear bracket having a deformable tank mount and a rear frame mounting flange, and a first outboard rail coupled to the front bracket and the rear bracket,
wherein the front frame mounting flange and the rear frame mounting flange are coupled to the first frame rail,
wherein the front tank boss is coupled to the front bracket,
wherein the rear tank boss is coupled to the deformable tank mount,
wherein the front bracket and the rear bracket are substantially parallel,
wherein the hydrogen electric vehicle is configured with a front end and a rear end defining a forward axis of motion for the hydrogen electric vehicle, and wherein the first outboard rail is substantially parallel to the forward axis of motion, and
wherein the deformable tank mount comprises an inboard mounting arm and an outboard mounting arm, and wherein the rear bracket comprises at least one flange coupled to the inboard mounting arm of the deformable tank mount and at least one flange coupled to the outboard mounting arm of the deformable tank mount.
15 . The hydrogen electric vehicle of claim 14 , further comprising a second gaseous fuel tank mounting assembly coupled to the second frame rail.
16 . The hydrogen electric vehicle of claim 14 , wherein the front bracket comprises a front inboard bracket portion coupled to a front outboard bracket portion, and wherein the tank neck cavity is positioned in a portion of the front inboard bracket portion and the front outboard bracket portion.
17 . The hydrogen electric vehicle of claim 16 , wherein the front inboard bracket portion comprises a first notch and the front outboard bracket portion comprises a second notch, and wherein the first notch and the second notch align to form the tank neck cavity.
18 . The hydrogen electric vehicle of claim 16 , wherein the front inboard bracket portion comprises a first coupling flange coupled to a second coupling flange of the front outboard bracket portion.
19 . The hydrogen electric vehicle of claim 14 , wherein the rear bracket comprises a rear inboard bracket portion coupled to a rear outboard bracket portion, and wherein the rear outboard bracket portion comprises an outer edge flange coupled to the first outboard rail.
20 . The hydrogen electric vehicle of claim 14 , further comprising a second outboard rail coupled to and extending between the front bracket and the rear bracket, wherein the first outboard rail and the second outboard rail are substantially parallel to each other.