IP Library Granted Patent US 11,319,154
Granted Patent B1
US 11,319,154 · App. 17/164,870 · Granted May 3, 2022

Motor-driven roller conveyor assembly construction jig and a method of using same

Inventor: Richard R. Kosik, Sr. (Hughestown, PA)
Assignee: Itoh Denki USA Inc.
B65G13/06B65G13/11
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Quick Facts
Patent No.
US 11,319,154
App. No.
17/164,870
Granted
May 3, 2022
Kind
B1
Abstract

A roller conveyor assembly construction system, including a rotatable jig assembly, a plurality of aligner assemblies, wherein each of the plurality of aligner assemblies is operatively connected to the jig assembly, a plurality of rollers located on each of the plurality of aligner assemblies, and a frame assembly operatively connected to the plurality of rollers, wherein the frame assembly is removably connected to each of the plurality of aligner assemblies.

Claims (88)

1. A roller conveyor assembly construction system, comprising:

a rotatable jig assembly;

a plurality of aligner plates, wherein each of the plurality of aligner plates is operatively connected to the jig assembly;

a plurality of rollers located on each of the plurality of aligner plates; and

a frame assembly operatively connected to the plurality of rollers, wherein the frame assembly is removably connected to each of the plurality of aligner plates.

2. The roller conveyor assembly construction system, according to claim 1 , wherein the rotatable jig assembly is further comprised of:

a plurality of leg supports;

a plurality of leg support braces, wherein each of the plurality of leg support braces is operatively connected to each of the plurality of leg supports;

a jig extension operatively connected to each of the plurality of leg supports;

a plurality of legs operatively connected to each of the plurality of leg supports and the jig extension;

a rotatable axle operatively connected to the plurality of legs;

a plurality of rotatable arms, wherein each of the plurality of rotatable arms is operatively connected to the rotatable axle; and

a plurality of aligner retaining arms, wherein each of the plurality of aligner retaining arms is operatively connected to each of the plurality of arms and wherein each of the plurality of aligner retaining arms includes a plurality of slots located along a length of each of the plurality of aligner retaining arms.

3. The roller conveyor assembly construction system, according to claim 2 , wherein the rotatable jig assembly is further comprised of:

a plurality of arm length adjustors operatively connected to each of the plurality of arms; and

a plurality of jig height adjustors, wherein each of the plurality of jig height adjustors is operatively connected to each of the plurality of legs.

4. The roller conveyor assembly construction system, according to claim 2 , wherein the rotatable jig assembly is further comprised of:

a plurality of aligner retainers, wherein each of the plurality of aligner retainers is operatively connected to one of the plurality of slots.

5. The roller conveyor assembly construction system, according to claim 2 , wherein each of the plurality of aligner assemblies is further comprised of:

a plurality of aligner plates, wherein each of the aligner plates is located within one of the plurality of slots;

a plurality of hex-hole shaped slots located along a length of each of the plurality of aligner plates; and

a plurality of shaft aligner lifting/lowering assemblies operatively connected to each of the plurality of aligner plates.

6. The roller conveyor assembly construction system, according to claim 1 , wherein the plurality of rollers is further comprised of:

a plurality of motor-driven rollers; and

a plurality of idler rollers located adjacent to each of the plurality of motor-driven rollers.

7. The roller conveyor assembly construction system, according to claim 1 , wherein the frame assembly is further comprised of:

a plurality of frame rails;

a plurality of frame stays, wherein each of the plurality of frame stays is operatively connected to each of the plurality of frame rails; and

a plurality of hex-shaped openings located along a length of each of the plurality of frame rails.

8. A method of constructing a roller conveyor assembly, comprising the steps of:

providing a rotatable jig assembly;

removably attaching a plurality of aligner plates to the jig assembly;

placing a plurality of rollers on each of the plurality of aligner plates; and

attaching a frame assembly to the plurality of rollers to form a roller conveyor assembly.

9. The method of constructing a roller conveyor assembly, according to claim 8 , wherein the step of providing the rotatable jig assembly is further comprised of:

providing a plurality of leg supports;

attaching a plurality of leg support braces to each of the plurality of leg supports;

attaching a jig extension to each of the plurality of leg supports;

attaching a plurality of legs to each of the plurality of leg supports;

attaching a rotatable axle to the plurality of legs;

attaching a plurality of rotatable arms to the rotatable axle; and

attaching a plurality of aligner retaining arms to each of the plurality of arms, wherein each of the plurality of aligner retaining arms includes a plurality of slots located along a length of each of the plurality of aligner retaining arms.

10. The method of constructing a roller conveyor assembly, according to claim 9 , wherein the step of providing the rotatable jig assembly is further comprised of:

attaching a plurality of arm length adjustors to each of the plurality of arms; and

attaching a plurality of jig height adjustors to each of the plurality of legs.

11. The method of constructing a roller conveyor assembly, according to claim 9 , wherein the step of providing the rotatable jig assembly is further comprised of:

removably attaching each of a plurality of aligner retainers to each of the plurality of slots.

12. The method of constructing a roller conveyor assembly, according to claim 11 , wherein the step of removably attaching a plurality of aligner assemblies to the jig assembly is further comprised of:

placing a plurality of aligner plates within one of the plurality of slots;

providing a plurality of hex-hole shaped slots located along a length of each of the plurality of aligner plates; and

removably attaching each of the plurality of aligner retainers to each of the plurality of aligner plates.

13. The method of constructing a roller conveyor assembly, according to claim 12 , wherein the step of placing a plurality of rollers on each of the plurality of aligner assemblies is further comprised of:

raising the plurality of aligner plates;

placing a plurality of motor-driven rollers on the plurality of aligner plates, wherein each of the plurality of motor-driven rollers is located within one of the plurality of hex-hole shaped slots; and

placing a plurality of idler rollers on the plurality of aligner plates, wherein each of the plurality of idler rollers is located within one of the plurality of hex-hole shaped slots, and wherein a predetermined number of the plurality of idler rollers are located adjacent to each of the plurality of motor-driven rollers.

14. The method of constructing a roller conveyor assembly, according to claim 8 , wherein the step of attaching a frame assembly to the plurality of rollers is further comprised of:

providing a plurality of frame rails;

attaching a plurality of frame stays to each of the plurality of frame rails; and

providing a plurality of hex-shaped openings along a length of each of the plurality of frame rails.

15. The method of constructing a roller conveyor assembly, according to claim 13 , wherein the method is further comprised of:

locating the frame assembly over the plurality of rollers and the plurality of aligner assemblies;

removably attaching the frame assembly to each of the plurality of aligner assemblies; and

lowering the plurality of aligner plates.

16. The method of constructing a roller conveyor assembly, according to claim 15 , wherein the method is further comprised of:

rotating the plurality of rotatable arms such that the plurality of aligner assemblies is separated from the frame assembly and the plurality of rollers; and

securing the plurality of rollers to the frame assembly.

17. An apparatus for constructing a motor-driven roller and idler roller conveyor section, comprising:

a rotatable jig assembly;

a plurality of aligner plates, wherein each of the plurality of aligner plates is operatively connected to the jig assembly;

a plurality of motor-driven rollers and idler rollers located on each of the plurality of aligner plates; and

a frame assembly operatively connected to the plurality of motor-driven rollers and idler rollers, wherein the frame assembly is removably connected to each of the plurality of aligner plates.

18. The apparatus, according to claim 17 , wherein the rotatable jig assembly is further comprised of:

a plurality of leg supports;

a plurality of leg support braces, wherein each of the plurality of leg support braces is operatively connected to each of the plurality of leg supports;

a jig extension operatively connected to each of the plurality of leg supports;

a plurality of legs operatively connected to each of the plurality of leg supports;

a rotatable axle operatively connected to the plurality of legs;

a plurality of rotatable arms, wherein each of the plurality of rotatable arms is operatively connected to the rotatable axle;

a plurality of aligner retaining arms, wherein each of the plurality of aligner retaining arms is operatively connected to each of the plurality of arms and wherein each of the plurality of aligner retaining arms includes a plurality of slots located a length of each of the plurality of aligner retaining arms; and

a plurality of aligner retainers, wherein each of the plurality of aligner retainers is operatively connected to one of the plurality of slots.

19. The apparatus, according to claim 18 , wherein each of the plurality of aligner assemblies is further comprised of:

a plurality of aligner plates, wherein each of the aligner plates is located within one of the plurality of slots;

a plurality of hex-hole shaped slots located along a length of each of the plurality of aligner plates; and

a plurality of shaft aligner lifting/lowering assemblies operatively connected to each of the plurality of aligner plates.

20. The apparatus, according to claim 17 , wherein the frame assembly is further comprised of:

a plurality of frame rails;

a plurality of frame stays, wherein each of the plurality of frame stays is operatively connected to each of the plurality of frame rails; and

a plurality of hex-shaped openings located along a length of each of the plurality of frame rails.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2022
From: KOSIK, RICHARD R., SR.
To: ITOH DENKI USA, INC
Reel/Frame 059130/0308 →