IP Library Granted Patent US 10,370,808
Granted Patent B2
US 10,370,808 · App. 16/104,714 · Granted Aug 6, 2019

Modular vehicle barrier

Inventor: William H. Neusch (Marble Falls, TX)
Assignee: Neusch Innovations, LP
E01F13/12E01F13/02
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Quick Facts
Patent No.
US 10,370,808
App. No.
16/104,714
Granted
Aug 6, 2019
Kind
B2
Abstract

An exemplary modular vehicle barrier includes a rigid, generally L-shaped frame having a base and an upright portion. The base including two or more joists spaced apart and extending orthogonal to a foot plate, wherein the foot plate is attached to a bottom surface at a front end of the two or more joists, the upright portion configured in a ladder arrangement having spaced apart vertical posts secured at bottom ends to a bottom beam and at top ends to a top beam, wherein the bottom beam is attached to a top surface at a back end of the two or more joists, and a wedge point formed the bottom surface of the second end of the two or more joists.

Claims (31)

1. A modular vehicle barrier, comprising:

a rigid, generally L-shaped frame having a base and an upright portion;

the base including two or more joists spaced apart and extending orthogonal to a foot plate, wherein the foot plate is attached to a bottom surface at a front end of the two or more joists;

the upright portion configured in a ladder arrangement having spaced apart vertical posts secured at bottom ends to a bottom beam and at top ends to a top beam, wherein the bottom beam is attached to a top surface at a back end of the two or more joists; and

a wedge point formed at the bottom surface of the back end of the two or more joists.

2. The modular vehicle barrier of claim 1 , wherein the upright portion is spaced forward of the wedge point toward the front end.

3. The modular vehicle barrier of claim 1 , wherein L-shaped frame has a lateral length of approximately 20 feet.

4. The modular vehicle barrier of claim 1 , wherein the top beam is attached to top surfaces of the vertical posts whereby the top beam and the vertical posts extend in the same vertical plane.

5. The modular vehicle barrier of claim 1 , wherein the top beam is secured to a front face of the vertical posts such that the top beam and the vertical posts are aligned in different vertical planes.

6. The modular vehicle barrier of claim 1 , wherein the foot plate elevates the front end of the two or more joists relative to the back end of the two or more joists.

7. The modular vehicle barrier of claim 1 , wherein the two or more joists, the vertical posts, the top beam, and the bottom beam are constructed of hollow tubular members and/or I-beams.

8. The modular vehicle barrier of claim 1 , wherein the generally L-shaped frame is configured to achieve a crash rating in accordance with ASTM F2656.

9. The modular vehicle barrier of claim 8 , wherein the upright portion is spaced forward of the wedge point toward the front end.

10. The modular vehicle barrier of claim 1 , wherein the generally L-shaped frame is crash-rated M30-P2 in accordance with ASTM F2656.

11. The modular vehicle barrier of claim 10 , wherein the upright portion is spaced forward of the wedge point toward the front end.

12. The modular vehicle barrier of claim 1 , wherein the top beam is attached to top surfaces of the vertical posts whereby the top beam and the vertical posts extend in the same vertical plane; and

the foot plate elevates the front end of the two or more joists relative to the back end of the two or more joists.

13. The modular vehicle barrier of claim 12 , wherein the two or more joists, the vertical posts, the top beam, and the bottom beam are constructed of hollow tubular members and/or I-beams.

14. The modular vehicle barrier of claim 1 , wherein the top beam is secured to a front face of the vertical posts such that the top beam and the vertical posts are aligned in different vertical planes; and

the foot plate elevates the front end of the two or more joists relative to the back end of the two or more joists.

15. The modular vehicle barrier of claim 14 , wherein the two or more joists, the vertical posts, the top beam, and the bottom beam are constructed of hollow tubular members and/or I-beams.

16. The modular vehicle barrier of claim 1 , wherein the top beam is constructed of a hollow tubular member and further comprising:

an extension arm that is slidably disposed in a first end of the top beam and configured to mate with an adjacent L-shaped frame; and

the upright portion comprising a connector located on a second end opposite the first end, the connector adapted to attach to an extension arm and comprising vertically spaced apart plates.

17. The modular vehicle barrier of claim 16 , wherein the foot plate elevates the front end of the two or more joists relative to the back end of the two or more joists; and

the top beam and the vertical posts are aligned in a same vertical plane or the top beam and the vertical posts are aligned in different vertical planes.

18. A method comprising:

positioning a modular vehicle barrier (MVB) on a ground surface, the MVB comprising a rigid, generally L-shaped frame having a base positioned on the ground and an upright portion, the base including two or more joists spaced apart and extending orthogonal to a foot plate, wherein the foot plate is attached to a bottom surface at a front end of the two or more joists, the upright portion configured in a ladder arrangement having spaced apart vertical posts secured at bottom ends to a bottom beam and at top ends to a top beam, wherein the bottom beam is attached to a top surface at a back end of the two or more joists, and a wedge point formed at the bottom surface of the back end of the two or more joists.

19. The method of claim 18 , further comprising crashing a motor vehicle traveling in a direction from the front end to the back end into the upper portion; and

stopping the vehicle within less than about 23 feet of the top beam to achieve a crash rating in accordance with ASTM F2656.

20. The method of claim 19 , wherein the motor vehicle was approximately 15,000 pounds and traveling at approximately 30 miles per hour when it impacts the upper portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2019
From: NEUSCH, WILLIAM H
To: NEUSCH INNOVATIONS, LP
Reel/Frame 049535/0516 →
Continuity (2)
Provisional Application 62546971 · Aug 17, 2017
Related Publication 20190055705A1 · Feb 21, 2019
Cited By (1)
US 12,378,737