IP Library › Granted Patent US 11,628,575
Granted Patent B2
US 11,628,575 · App. 16/994,913 · Granted Apr 18, 2023

Robot controller and arc welding robot system

Inventor: Shigeo Yoshida (Yamanashi, JP)
Assignee: FANUC CORPORATION
B25J13/08B23K9/126B23K37/02B25J9/1651B25J9/1676B25J13/06
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Quick Facts
Patent No.
US 11,628,575
App. No.
16/994,913
Granted
Apr 18, 2023
Kind
B2
Abstract

A robot controller includes a contact detection unit that detects contact of a welding wire protruding from a welding torch with a welding target, an override-value adjustment unit that sets and changes an override value for increasing or decreasing an operating speed of the robot from a predetermined speed, and a control unit which receives an operation signal from a teaching operation device and that controls the robot according to the operation signal at the operating speed based on the override value which is set by the override-value adjustment unit. When the contact of the welding wire with the welding target is detected by the contact detection unit, the control unit temporarily stops the robot, and the override-value adjustment unit decreases the override value.

Claims (18)

1. A robot controller that controls motion of a robot, to which a welding torch is connected, wherein the robot controller controls the motion of the robot during a jog operation of the robot in which an operator manually operates the robot to teach a moving route of the welding torch using a teaching operation device, the robot controller comprising:

a contact detector that detects contact of a welding wire protruding from the welding torch with a welding target;

an override-value adjuster that sets and changes an override value for increasing or decreasing an operating speed of the robot from a predetermined speed; and

a processor that receives an operation signal for manual operation of the robot based on manual input to the teaching operation device by the operator and that controls the robot according to the operation signal at the operating speed based on the override value, the override value being set by the override-value adjuster,

wherein, when contact of the welding wire with the welding target is detected, the processor temporarily stops the robot, and, when the contact of the welding wire with the welding target is detected by the contact detector, the override-value adjuster decreases the override value, and the processor makes the robot move in response to the operation signal based on the manual input by the operator with the override value decreased by the override-value adjuster.

2. The robot controller according to claim 1 , wherein the processor prohibits a motion of the robot in a direction toward the welding target after the contact is detected by the contact detector.

3. An arc welding robot system comprising:

a robot to which a welding torch is connected; and

a robot controller according to claim 1 , which controls the robot.

4. A robot controller that controls motion of a robot, to which a welding torch is connected, during a jog operation of the robot using a teaching operation device, the robot controller comprising:

a contact detector that detects contact of a welding wire protruding from the welding torch with the welding target;

an override-value adjuster that sets and changes an override value for increasing or decreasing an operating speed of the robot from a predetermined speed; and

a processor that receives an operation signal from the teaching operation device and that controls the robot according to the operation signal at the operating speed based on the override value, the override value being set by the override-value adjuster,

wherein the processor temporarily stops the robot and the override-value adjuster decreases the override value when the contact of the welding wire with the welding target is detected by the contact detector,

wherein, after the contact is detected by the contact detector and when the welding wire is moved in a direction away from the welding target by a predetermined distance by a motion of the robot, the override-value adjuster increases the override value.

5. The robot controller according to claim 4 , wherein the override-value adjuster increases the override value by an amount corresponding to a distance between the welding wire and the welding target.

6. The robot controller according to claim 4 , wherein, when the override value is increased by the override-value adjuster, the processor performs a notification operation for making an operator recognize that the override value has been increased.

7. The robot controller according to claim 6 , wherein the notification operation includes a temporary stop of the robot.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2020
From: YOSHIDA, SHIGEO
To: FANUC CORPORATION
Reel/Frame 053511/0760 →
Priority Claims (1)
JP JP2019157802 · Aug 30, 2019 · national
Continuity (1)
Related Publication 20210060792A1 · Mar 4, 2021