IP Library Granted Patent US 10,730,695
Granted Patent B2
US 10,730,695 · App. 16/377,615 · Granted Aug 4, 2020

Side-loading robotic arm for front-end loading vehicles

Inventor: Anthony Stephen Kouri (Breckenridge, TX)
B65F3/041B25J5/00B25J11/008B65F1/122B65F3/00B65F2003/023
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Quick Facts
Patent No.
US 10,730,695
App. No.
16/377,615
Granted
Aug 4, 2020
Kind
B2
Abstract

A side-loading robotic arm for use with front-end loaders. The robotic arm is configured for disposition forward of a liftable container. The robotic arm includes a tip arm that is pivotable between a stowed position and an operational position. The stowed position stores the tip arm and gripper arms inside a vertical plane of the lifting forks of the front-end loader. Preferably, the tip arm and gripper arms are disposed in a cut-out recess on a sidewall of the liftable container. The operational position extends the tip arm and gripper arms outside of the vertical plane of the major lifting arms of the front-end loader.

Claims (39)

1. A side-loading robotic arm, comprising:

a pair of lateral rails disposed in parallel and attached to a front wall of a liftable container;

a base motor attached to one end of the pair of lateral rails;

a carriage body slidingly disposed on the pair of lateral rails and operationally connected to the base motor;

a raising arm pivotingly attached at one end to the carriage body and configured so as to pivot in a vertical plane oriented parallel to the pair of lateral rails;

a tip arm pivotingly attached to the raising arm opposite the carriage body, wherein the tip arm is pivotable between a vertical stowed position and a horizontal operational position relative to a sidewall of the liftable container; and

a pair of gripper arms attached to the tip arm, wherein the tip arm and pair of gripper arms conform within a plane of the sidewall of the liftable container when in the vertical stowed position, and wherein the tip arm and pair of gripper arms extend away from the plane of the sidewall of the liftable container when in the horizontal operational position.

2. The robotic arm of claim 1 , wherein the carriage body is operationally connected to the base motor by a reciprocating device configured to move the carriage body back and forth along the pair of lateral rails.

3. The robotic arm of claim 1 , further comprising a lift cylinder operationally connected at one end to the carriage body and at an opposite end to the raising arm.

4. The robotic arm of claim 1 , further comprising a tip cylinder operationally connected at one end to the tip arm and at an opposite end to the raising arm.

5. The robotic arm of claim 1 , wherein the tip arm comprises an attachment portion and an offset portion, each perpendicularly connected to the other.

6. The robotic arm of claim 5 , wherein the attachment portion is connected at one end to the raising arm and at an opposite end to the offset portion.

7. The robotic arm of claim 6 , wherein the attachment portion extends the pair of gripper arms wider than the sidewall of the liftable container when the tip arm is in the horizontal operational position.

8. The robotic arm of claim 5 , wherein the offset portion is connected at one end to the attachment portion, and the gripper arms are attached to the offset portion at a mid-point or an opposite end relative to the attachment portion.

9. The robotic arm of claim 1 , wherein the vertical stowed position disposes the tip arm and pair of gripper arms in a cut-out recess on the sidewall of the liftable container.

10. The robotic arm of claim 9 , further comprising a bracket attached to the sidewall of the liftable container configured for selective attachment to a flange on the tip arm.

11. A side-loading robotic arm, comprising:

a pair of lateral rails disposed in parallel attached to a front wall of a liftable container;

a base motor attached to one end of the pair of lateral rails;

a carriage body slidingly disposed on the pair of lateral rails and operationally connected to the base motor;

a raising arm pivotingly attached at one end to the carriage body and configured so as to pivot in a vertical plane oriented parallel to the pair of lateral rails;

a tip arm pivotingly attached to the raising arm opposite the carriage body and a tip cylinder operationally connected at one end to the tip arm and at an opposite end to the raising arm, wherein the tip cylinder is configured to pivot the tip arm between a vertical stowed position and a horizontal operational position relative to a sidewall of the liftable container; and

a pair of gripper arms attached to the tip arm, wherein the tip arm and pair of gripper arms conform within a plane of the sidewall of the liftable container when in the vertical stowed position, and wherein the tip arm and pair of gripper arms extend away from the plane of the sidewall of the liftable container when in the horizontal operational position.

12. The robotic arm of claim 11 , wherein the carriage body is operationally connected to the base motor by a reciprocating device configured to move the carriage body back and forth along the pair of lateral rails.

13. The robotic arm of claim 11 , further comprising a lift cylinder operationally connected at one end to the carriage body and at an opposite end to the raising arm.

14. The robotic arm of claim 11 , wherein the tip arm comprises an attachment portion and an offset portion, each perpendicularly connected to the other.

15. The robotic arm of claim 14 , wherein the attachment portion is connected at one end to the raising arm and at an opposite end to the offset portion.

16. The robotic arm of claim 15 , wherein the attachment portion extends the pair of gripper arms wider than the sidewall of the liftable container when the tip arm is in the horizontal operational position.

17. The robotic arm of claim 15 , wherein the offset portion is connected at one end to the attachment portion, and the gripper arms are attached to the offset portion at a mid-point or an opposite end relative to the attachment portion.

18. The robotic arm of claim 11 , wherein the vertical stowed position disposes the tip arm in a cut-out recess on the sidewall of the liftable container.

19. The robotic arm of claim 18 , further comprising a bracket attached to the sidewall of the liftable container configured for selective attachment to a flange on the tip arm.

20. A side-loading robotic arm, comprising:

a pair of lateral rails disposed in parallel and attached to a front wall of a liftable container;

a base motor attached to one end of the pair of lateral rails;

a carriage body slidingly disposed on the pair of lateral rails and operationally connected to the base motor;

a raising arm pivotingly attached at one end to the carriage body and configured so as to pivot in a vertical plane oriented parallel to the pair of lateral rails;

a tip arm having an attachment portion perpendicularly connected to an offset portion, wherein the attachment portion is pivotingly attached to the raising arm opposite the carriage body, wherein the tip arm is pivotable between a vertical stowed position and a horizontal operational position relative to a sidewall of the liftable container;

a pair of gripper arms attached to the offset portion of the tip arm, wherein the tip arm and pair of gripper arms conform within a plane of the sidewall of the liftable container when in the vertical stowed position, and wherein the tip arm and pair of gripper arms extend away from the plane of the sidewall of the liftable container when in the horizontal operational position; and

wherein the vertical stowed position disposes the tip arm in a cut-out recess on the sidewall of the liftable container.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2022
From: KOURI, ANTHONY STEPHEN
To: BRIDGEPORT TRUCK MANUFACTURING, INC.
Reel/Frame 058997/0563 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2022
From: BRIDGEPORT TRUCK MANUFACTURING, INC.
To: EZPACK BRIDGEPORT, LLC
Reel/Frame 058998/0019 →
Continuity (3)
Continuation In Part 16235343 · Dec 28, 2018
Provisional Application 62611147 · Dec 28, 2017
Related Publication 20190233206A1 · Aug 1, 2019