IP Library Granted Patent US 12679284
Granted Patent B2
US 12679284 · App. 18/336,383 · Granted Jul 14, 2026

Folding and extendable beam assembly for use in a cargo compartment

Inventors: Gregory Kauffman (Cincinnati, OH); Jerome Jones (Independence, KY)
Assignee: Ancra International LLC
B60R11/00B60P7/15
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Quick Facts
Patent No.
US 12679284
App. No.
18/336,383
Granted
Jul 14, 2026
Kind
B2
Abstract

A beam and a beam storage assembly for a trailer (or other cargo compartment) can include various elements. For example, the beam storage assembly can include a first track assembly configured to attach to a first sidewall of the cargo compartment. The first track assembly can include a housing for storing the beam in a vertical orientation. In addition the beam can move from the stored state to a deployed state, in which the beam attaches to a second track assembly on the opposing second sidewall.

Claims (38)

1 . A beam-storage system for a cargo compartment, the system comprising:

a first track assembly configured to attach to a first sidewall of the cargo compartment;

a second track assembly configured to attach to a second sidewall of the cargo compartment and opposite the first track assembly; and

a beam assembly comprising:

a first end assembly configured to be secured to the first track assembly; and a second end assembly configured to be removably secured to and slidably engaged with the second track assembly;

wherein the beam assembly comprises a storage state in which the second end assembly is detached from the second track assembly and both the first and second end assemblies are disposed adjacent to the first sidewall, and

wherein the beam assembly comprises a deployed state in which the first end assembly is attached to and slidably engaged with the first track assembly and the second end assembly is attached to and slidably engaged with the second track assembly.

2 . The system of claim 1 , wherein the first track assembly comprises a housing, wherein the track of the first track assembly is positioned within the housing, and wherein the beam assembly is positioned within the housing in the storage state.

3 . The system of claim 2 , wherein the housing comprises a forward guard and a rearward guard, and wherein a track of the first track assembly is disposed in an axial space between the forward guard and the rearward guard.

4 . The system of claim 2 , wherein a storage compartment is formed in the housing, the storage compartment being bounded at least partially by walls of the forward guard and the rearward guard and a rear wall associated with the housing.

5 . The system of claim 4 , wherein in a cross section the beam assembly comprises a longer length and a shorter width, and wherein in the storage state the longer length extends between the forward guard and the rearward guard.

6 . The system of claim 4 , wherein a pocket is formed at a bottom of the storage compartment, the pocket comprising a plate extending between the forward guard and the rearward guard, and wherein the pocket is dimensioned to receive a portion of the second end assembly when the beam assembly is in the storage state.

7 . The system of claim 3 , wherein at least one of the forward guard and the rearward guard comprises a wall that is angled relative to the first sidewall of the cargo compartment.

8 . The system of claim 1 , wherein the track of the first track assembly comprises:

first and second rails, each extending between upper and lower ends of the first track assembly, and configured to slidingly mate with a carriage of the first end assembly, and

wherein a bracket assembly rotates relative to the carriage when the beam assembly moves between the storage state and the deployed state.

9 . The system of claim 1 , wherein the beam assembly comprises a carriage having one or more rails for slidably engaging the first track assembly, and wherein the beam assembly comprises a rectangular cross section having a length that is perpendicular to a longitudinal orientation of the one or more rails.

10 . The system of claim 1 , wherein the first track assembly and the second track assembly comprises a first stop and a second stop, respectively; wherein the first stop and the second stop are positioned at a substantially same height; and wherein the beam assembly is supported on the first stop and the second stop when in a deployed state.

11 . The system of claim 1 , wherein a track of the second track assembly comprises one or more rails configured to slidably mate with a carriage of the second end assembly, and wherein the track comprises a beam insertion space that omits the one or more rails and is dimensioned to receive the carriage of the second end assembly when the beam assembly is moved between the storage state and the deployed state.

12 . The system of claim 1 , wherein the first track assembly and the second track assembly are configured to attach to a rear door from of the cargo compartment.

13 . A beam-storage system for a cargo compartment, the system comprising:

a first track assembly comprising a housing and a first track positioned within the housing;

the housing comprising a forward guard, a rearward guard, and a back wall, with the first track being disposed on the back wall and in an axial space between the forward guard and the rearward guard; and

a beam assembly comprising a first end assembly having a carriage configured to be slidably secured to the first track, wherein the beam assembly is rotatable relative to the carriage to move between a stored state, in which the beam assembly is positioned in the axial space, and a deployed state, in which the beam assembly is substantially perpendicular relative to the first track; and

a second end assembly configured to be removably coupled to and slidably engaged with a second track when the beam assembly is in the deployed state.

14 . The system of claim 13 , wherein the beam assembly comprises a shorter width and a longer length, the shorter width being measured between a first face and a second face; and wherein in the stored state the first face is oriented towards the back wall.

15 . The system of claim 13 , wherein a pocket is positioned at a bottom of the storage compartment by a plate extending between the forward guard and the rearward guard, and wherein the pocket houses a portion of a second end assembly of the beam assembly when the beam assembly is in the storage state.

16 . The system of claim 13 , wherein the forward guard and the rearward guard taper towards one another.

17 . The system of claim 13 ,

wherein, in the stored state, both the first and second end assemblies are disposed between the forward guard and the rearward guard.

18 . A method comprising:

providing a first track assembly positioned on a first sidewall of a cargo compartment;

providing a second track assembly positioned on a second sidewall of the cargo compartment;

providing a beam assembly comprising a first end assembly configured to be secured to the first track assembly and a second end assembly configured to be removably secured and slidably engaged to the second track assembly;

positioning the beam assembly in a storage state in which both the first and second end assemblies are disposed adjacent to the first sidewall; and

moving the beam assembly to a deployed state in which the beam assembly extends across the cargo compartment from the first sidewall to the second sidewall.

19 . The method of claim 18 , wherein the first track assembly comprises a housing, and wherein the beam assembly is positioned in the vertical orientation within the housing in the storage state.

20 . The method of claim 19 , wherein the housing comprises a forward guard and a rearward guard, and wherein both the first and second end assemblies are positioned between the forward guard and the rearward guard in the storage state.