IP Library › Granted Patent US 11,691,228
Granted Patent B2
US 11,691,228 · App. 17/302,127 · Granted Jul 4, 2023

Robotic welding system

Inventors: Abdolreza Abdollahi (North Vancouver, CA); Hassan Bateni (West Vancouver, CA); Soroush Karimzadeh (North Vancouver, CA)
Assignee: Novarc Technologies Inc.
B23K37/0229B23K9/0286B23K9/16B23K37/0276B23K37/0282B23K37/0426B25J9/04B25J9/1682B23K2101/06G05B2219/39132
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Quick Facts
Patent No.
US 11,691,228
App. No.
17/302,127
Granted
Jul 4, 2023
Kind
B2
Abstract

A robotic welding system comprises a supporting arm for attaching to a repositionable support structure, the supporting arm comprising a first mounting portion connectable to the repositionable support structure, and a second mounting portion rotatably coupled to the first mounting portion. A yaw rotary actuator rotates the second mounting portion about a yaw axis. A welding arm comprises a third mounting portion rotatably coupled to the second mounting portion of the supporting arm. A pitch rotary actuator rotates the third mounting portion about a pitch axis generally perpendicular to the yaw axis. A roll rotary actuator rotates a torch holder shaft about a roll axis generally perpendicular to the pitch axis. The shaft has a torch mounting portion for mounting a welding torch at an end thereof. A controller is operably coupled to the actuators to cause the welding torch to execute a welding pattern.

Claims (21)

1. A collaborative robotic welding system comprising:

a supporting arm for mounting on a support, the supporting arm comprising a first mounting portion and a second mounting portion rotatably coupled to the first mounting portion, the supporting arm extending vertically from the first mounting portion to the second mounting portion;

a yaw rotary actuator operably connected to the first mounting portion and the second mounting portion and configured to rotate the second mounting portion in relation to the first mounting portion about a yaw axis;

a welding arm comprising a third mounting portion rotatably coupled to the second mounting portion of the supporting arm;

a pitch rotary actuator connected between the second mounting portion of the supporting arm and the third mounting portion and configured to rotate the third mounting portion in relation to the second mounting portion about a pitch axis generally perpendicular to the yaw axis;

a safety encoder associated with the pitch rotary actuator and mounted on or near an axle of the welding arm;

a roll rotary actuator connected between the third mounting portion and a torch holder shaft and configured to rotate the torch holder shaft in relation to the third mounting portion about a roll axis generally perpendicular to the pitch axis, the torch holder shaft comprising a torch mounting portion at an end thereof configured for mounting a welding torch; and,

a controller operably coupled to the yaw, pitch and roll rotary actuators and the safety encoder associated with the pitch rotary actuator, and configured to control motion of the torch holder shaft to cause the welding torch to execute a multiple pass spool welding pattern and apply safety control protocols to limit force applied by the pitch rotary actuator based on feedback from the safety encoder associated with the pitch rotary actuator.

2. The collaborative robotic welding system of claim 1 wherein the second mounting portion is horizontally offset from the first mounting portion in a first lateral direction, and the third mounting portion is horizontally offset from the second mounting portion in a second lateral direction opposite to the first lateral direction, such that the torch holder shaft is pivotable along an arc that lies substantially within the same plane as the yaw axis.

3. The collaborative robotic welding system of claim 2 wherein the first mounting portion of the supporting arm comprises a flanged member, and the second mounting portion of the supporting arm comprises a pair of opposed supporting arm support plates, a horizontal mounting plate connected between upper portions of the supporting arm support plates, and a vertical mounting plate connected between lower portions of the supporting arm support plates.

4. The collaborative robotic welding system of claim 3 wherein the yaw rotary actuator comprises an electric servo motor mounted on an underside of the horizontal mounting plate and coupled to the flanged member through a first gearbox mounted on a topside of the horizontal mounting plate.

5. The collaborative robotic welding system of claim 4 wherein the pitch rotary actuator comprises an electric servo motor mounted on a first lateral side of the vertical mounting plate and coupled to the third mounting portion through a second gearbox mounted on a second lateral side of the vertical mounting plate opposite to the first lateral side.

6. The collaborative robotic welding system of claim 5 wherein the third mounting portion of the welding arm comprises a pair of opposed welding arm support plates, and a shaft mounting plate connected between the welding arm support plates.

7. The collaborative robotic welding system of claim 6 wherein the roll rotary actuator comprises an electric servo motor mounted on a rear side of the shaft mounting plate and coupled to the torch holding shaft through a third gearbox mounted on a front side of the shaft mounting plate.

8. The collaborative robotic welding system of claim 1 comprising a welder control assembly coupled to the supporting arm, the welder control assembly comprising one or more user interface elements operably coupled to the controller.

9. The collaborative robotic welding system of claim 8 wherein the welder control assembly is slidably mounted to the operator side of the supporting arm.

10. The collaborative robotic welding system of claim 1 comprising a sensor assembly attached to an underside of the welding arm, with a sensor cover extending from the welding arm for protecting the sensor assembly.

11. The collaborative robotic welding system of claim 10 wherein the sensor assembly comprises a camera, and wherein a mirror extends from the underside of the welding arm and is positioned to reflect an image of a tip of the welding torch to the camera.

12. The collaborative robotic welding system of claim 1 comprising a retractable stand extendable downwardly from a bottom of the supporting arm, with a foot attached to a bottom of the retractable stand and laterally offset from the retractable stand such that the foot is aligned with the yaw axis.

13. The collaborative robotic welding system of claim 1 comprising a safety encoder associated with the yaw rotary actuator, wherein the controller is configured to apply safety control protocols to limit force applied by the yaw rotary actuator based on feedback from the safety encoder associated with the yaw rotary actuator.

14. The collaborative robotic welding system of claim 13 comprising a safety encoder associated with the roll rotary actuator, wherein the controller is configured to apply safety control protocols to limit force applied by the roll rotary actuator based on feedback from the safety encoder associated with the roll rotary actuator.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Oct 10, 2023
From: BDC CAPITAL INC.
To: NOVARC TECHNOLOGIES INC.
Reel/Frame 065165/0812 →
SECURITY INTEREST Recorded Aug 2, 2022
From: NOVARC TECHNOLOGIES INC.
To: BDC CAPITAL INC.
Reel/Frame 060696/0518 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2021
From: ABDOLLAHI, ABDOLREZA; BATENI, HASSAN; KARIMZADEH, SOROUSH
To: NOVARC TECHNOLOGIES INC.
Reel/Frame 056060/0042 →
Priority Claims (1)
CA CA 2928413 · Apr 29, 2016 · national
Continuity (4)
Continuation 16866451 · May 4, 2020
Continuation 16089706
Provisional Application 62315968 · Mar 31, 2016
Related Publication 20210237209A1 · Aug 5, 2021