IP Library Granted Patent US 11,053,078
Granted Patent B1
US 11,053,078 · App. 16/808,204 · Granted Jul 6, 2021

Load reactive braking systems and devices

Inventors: Wesley K. Stegmiller (Jamestown, ND); Wallace Harold Larson (Jamestown, ND); Dustin Paul Scheer (Jamestown, ND)
Assignee: Goodrich Corporation
B65G13/00B64D9/00B65G13/075B65G65/005F16D65/186B64D2009/006F16D55/36
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Quick Facts
Patent No.
US 11,053,078
App. No.
16/808,204
Granted
Jul 6, 2021
Kind
B1
Abstract

A roller assembly comprises a first axle having a first inner shaft and a second axle having a second inner shaft. The roller assembly may further comprise a plurality of roller elements between the first inner shaft and the second inner shaft. The roller assembly may further comprise a roller disposed between a first tension strap and a second tensions strap.

Claims (39)

1. A roller assembly, comprising:

a first axle including a first flange and a first inner shaft;

a second axle including a second flange and a second inner shaft, the first inner shaft extending from the first flange toward the second flange, the second inner shaft extending from the second flange toward the first flange;

a first plurality of roller elements disposed between a radially outer surface of the second inner shaft and a radially inner surface of the first inner shaft; and

a biasing member including at least one link or cam roller positioned at an angle relative to a roller axis producing an axial force based on the applied load on the roller reacting to the first or second inner shaft,

wherein the second inner shaft comprises a plurality of grooves configured to receive the first plurality of roller elements, and wherein the plurality of grooves are semi-spherical in shape.

2. The roller assembly of claim 1 , further comprising at least one biasing member including at least one of a torsion spring, a compression spring or a spring washer reacting on to the first or second inner shaft.

3. The roller assembly of claim 1 , further comprising a first coupling disposed between a first support bearing and a first outer shaft of the first axle, wherein the first outer shaft extends from the first flange away from the second flange, and wherein a second plurality of roller elements are disposed between a radially outer surface of the first outer shaft and a radially inner surface of the first coupling.

4. The roller assembly of claim 3 , further comprising a second coupling disposed between a second support bearing and a second outer shaft of the first axle, wherein the second outer shaft extends from the second flange away from the first flange, and wherein a third plurality of roller elements are disposed between a radially outer surface of the first outer shaft and a radially inner surface of the coupling.

5. The roller assembly of claim 3 , further comprising a roller, a first side plate coupled to the first coupling, and a second side plate disposed opposite the first side plate, the roller disposed between the first side plate and the second side plate.

6. The roller assembly of claim 5 , further comprising a first tension strap extending from the first side plate to the second side plate and a second tension strap extending from the first side plate to the second side plate, the roller disposed between the first tension strap and the second tension strap.

7. A roller assembly for a cargo loading system, comprising:

a roller having an outer surface;

a housing radially inward from the outer surface;

a first side plate;

a second side plate disposed opposite the first side plate, the roller disposed between the first side plate and the second side plate;

a first tension strap extending from the first side plate and the second side plate, the roller disposed adjacent to the first tension strap;

a brake arrangement retained within the housing; and

an axle assembly disposed at least partially within the housing, the axle assembly configured to apply a compressive force to the brake arrangement, the axle assembly including a first axle having a first inner shaft and a second axle having a second inner shaft,

wherein the roller assembly comprises a first plurality of roller elements disposed between the first inner shaft and the second inner shaft,

wherein the roller assembly further comprises a first coupling and a first bearing support,

wherein the first axle further comprises a first outer shaft,

wherein the first coupling is disposed between the first bearing support and the first outer shaft, and

wherein a second plurality of roller elements are disposed between the first coupling and the first outer shaft.

8. The roller assembly for the cargo loading system of claim 7 , wherein the brake arrangement is configured to produce a braking force proportional to a load on the outer surface.

9. The roller assembly for the cargo loading system of claim 7 , wherein the axle assembly comprises a first plunger and a second plunger configured to apply the compressive force to the brake arrangement.

10. The roller assembly for the cargo loading system of claim 9 , wherein the first plunger and the second plunger are configured to translate towards the brake arrangement in response a load on the outer surface.

11. The roller assembly for the cargo loading system of claim 7 , further comprising a second tension strap extending from the first side plate to the second side plate, the roller disposed between the first tension strap and the second tension strap.

12. A cargo loading system, comprising:

a tray having a first side wall, a second side wall, and a base extending between the first side wall and the second side wall; and

a roller assembly having a roller and disposed between the first side wall and the second side wall, the roller assembly including a brake arrangement positioned at least partially within a housing of the roller assembly and configured to increase resistance to rotation of the housing proportionally to a load applied against an outer surface of the roller,

wherein the roller assembly comprises a first axle having a first inner shaft, a second axle having a second inner shaft, and a first plurality of roller elements disposed between the first inner shaft and the second inner shaft,

wherein the roller assembly further comprises a first coupling and a first bearing support,

wherein the first axle further comprises a first outer shaft,

wherein the first coupling is disposed between the first bearing support and the first outer shaft, and

wherein a second plurality of roller elements are disposed between the first coupling and the first outer shaft.

13. The cargo loading system of claim 12 , wherein the roller assembly comprises a first tension strap coupled to the first side wall and the second side wall and a second tension strap coupled to the first side wall and the second side wall, the roller disposed between the first tension strap and the second tension strap.

14. The cargo loading system of claim 12 , wherein the roller assembly further comprises a second coupling and a second bearing support, wherein the second axle further comprises a second outer shaft, wherein the second coupling is disposed between the second bearing support and the second outer shaft, and wherein a third plurality of roller elements are disposed between the second coupling and the second outer shaft.

15. The cargo loading system of claim 12 , wherein the second inner shaft comprises a plurality of grooves disposed in a radially outer surface of the second inner shaft, and wherein the first plurality of roller elements are disposed in the plurality of grooves.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2020
From: STEGMILLER, WESLEY K.; LARSON, WALLACE HAROLD; SCHEER, DUSTIN PAUL
To: GOODRICH CORPORATION
Reel/Frame 052000/0802 →
Cited By (2)
US 12,415,602 US 12,668,439