IP Library › Granted Patent US 12,227,362
Granted Patent B1
US 12,227,362 · App. 17/994,239 · Granted Feb 18, 2025

Conveyor idler support structure and methods for constructing the same

Inventors: Kevin J. Guay (West Lebanon, NH); Alexander J. Moskalenko (Springfield, NH); Zachary P. Kerin (White River Junction, VT)
Assignee: NHI Mechanical Motion, LLC
B65G15/60B21D43/00B65G21/02B65G39/09B65G39/12B22F5/003F16C33/805
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Quick Facts
Patent No.
US 12,227,362
App. No.
17/994,239
Granted
Feb 18, 2025
Kind
B1
Abstract

This invention provides framework for supporting a plurality of conveyor idlers, mounted on central risers and end risers, and a method for constructing the same. A center section comprises, an upper component having a downwardly oriented channel with a sidewalls. It includes a first pair of central riser tabs folded upwardly from the top surface. The center section also comprises a lower component having an upwardly oriented channel with sidewalls. It includes a second pair of central riser tabs folded upwardly from the top surface. The upper component is sized and arranged to nest within the lower component and the first pair of central riser tabs overlap on the second pair of central riser tabs. A pair of end risers are mounted at each opposing ends of the center section, formed from sheet metal, and affixed to the opposing ends of the center section.

Claims (20)

1. A framework for supporting a plurality of conveyor idlers, mounted on central risers and end risers comprising:

a center section, formed from sheet metal, comprising, (a) an upper component defining a downwardly oriented channel having a longitudinal top surface and longitudinal sidewalls spaced apart from each other at an outer width, and including a first pair of spaced apart central riser tabs folded upwardly from the top surface, and (b) a lower component defining an upwardly oriented channel having longitudinal sidewalls spaced apart from each other at an inner width, and including a second pair of spaced apart central riser tabs folded upwardly from the top surface, wherein the outer width is less than the inner width so that the sidewalls of the upper component nest within the sidewalls of the lower component and the first pair of spaced apart central riser tabs and second pair of spaced apart central riser tabs engaging each other an overlapping relationship to form a pair of spaced apart central risers; and

a pair of end risers mounted at each opposing ends of the center section, formed from sheet metal, and affixed to the opposing ends of the center section, respectively, by metal attachment processes.

2. The framework as set forth in claim 1 wherein the end risers comprise a base mounting section and a riser section with a fold line therebetween at an approximate right angle, and wherein a lower portion of the riser section includes wings folded at right angles so as to reinforce the lower portion.

3. The framework as set forth in claim 2 wherein the end risers define a plurality of bends at a top section of, and above, the lower portion, the bends being arranged to align an axis of rotation of a respective outer idler at an upward and outward angle with respect to the central risers.

4. The framework as set forth in claim 3 wherein at least some of the bends include a reinforcing dimple.

5. The framework as set forth in claim 4 wherein the end risers include slots that are arranged to receive tabs on a respective of the ends of the center section.

6. The framework as set forth in claim 5 wherein the end risers are attached to the center sections by at least one of welding and brazing.

7. The framework as set forth in claim 1 , further comprising, gussets located between each of the first pair of spaced apart central riser tabs on the upper component and adjacent ones of the second pair of spaced apart central riser tabs on the lower component.

8. The framework as set forth in claim 7 wherein each of the pair of spaced apart central riser tabs in the upper component include a reinforcing dimple formed at a fold line relative to the top longitudinal surface.

9. A method of manufacture of the framework comprising the steps of:

forming a center section from sheet metal that comprises (a) an upper component defining a downwardly oriented channel having a longitudinal top surface and longitudinal sidewalls spaced apart from each other at an outer width, and including a first pair of spaced apart central riser tabs folded upwardly from the top surface, and (b) a lower component defining an upwardly oriented channel having longitudinal sidewalls spaced apart from each other at an inner width, and including a second pair of spaced apart central riser tabs folded upwardly from the top surface, wherein the outer width is less than the inner width;

forming a pair of end risers, and affixing each of the pair of the end risers at each of respective opposing ends of the center section by metal attachment processes;

wherein the step of forming the center section further comprises folding a first sheet metal blank into the upper component and a second sheet metal blank into the lower component, the step of folding including (a) bending upward, from cutouts in the upper component, the first pair of spaced apart central riser tabs and (b) bending upward, from cutouts in the lower component, the second pair of spaced apart central riser tabs; and

nesting the upper component with respect to the lower component, wherein the sidewalls of the upper component nest within the sidewalls of the lower component and the first pair of spaced apart central riser tabs and second pair of spaced apart central riser tabs engage each other in an overlapping relationship to form a pair of spaced apart central risers.

10. The method as set forth in claim 9 , further comprising, positioning gussets located between each of the first pair of spaced apart central riser tabs and adjacent one of the second pair of spaced apart central riser tabs.

11. The method as set forth in claim 9 , further comprising, forming each of the end risers by folding a third metal blank and a fourth sheet metal blank, respectively.

12. The method as set forth in claim 11 wherein the third sheet metal blank and the fourth sheet metal blank are substantially identical.

13. The method as set forth in claim 9 , further comprising, attaching a first end shaft axle on a first end of each of a pair of outer idlers into respective slots in each of opposing end risers and sliding a keyway on a second end shaft axle on a second end of each of the pair of outer idlers into each of respective slots on each of each of the pair of spaced apart central risers.

14. The method as set forth in claim 13 , further comprising, sliding keyway slots on each of an opposing first end shaft axle and a second end shaft axle of a center idler, respectively, into each of opposing slots on each of each of the pair of spaced apart central risers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2023
From: GUAY, KEVIN J.; MOSKALENKO, ALEXANDER J.; KERIN, ZACHARY P.
To: NHI MECHANICAL MOTION, LLC DBA NEW HAMPSHIRE INDUSTRIES
Reel/Frame 062570/0497 →
Continuity (3)
Continuation In Part 17839062 · Jun 13, 2022
Continuation 17174579 · Feb 12, 2021
Division 16773875 · Jan 27, 2020
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