IP Library › Granted Patent US 11,471,969
Granted Patent B2
US 11,471,969 · App. 16/136,840 · Granted Oct 18, 2022

Orbital welding device with improved security and reduced failure probability

Inventors: Markus Tamm (Uberlingen, DE); Marcel Foh (Markdorf, DE)
Assignee: Illinois Tool Works Inc.
B23K9/0286B23K37/0276B23K37/053B23K37/0533B23K26/282B23K2101/06
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,471,969
App. No.
16/136,840
Granted
Oct 18, 2022
Kind
B2
Abstract

An orbital welding device ( 1 ) having a welding head ( 2 ), the welding head having a tubular mount ( 3 ) and a welding electrode holder ( 4 ) rotatably supported with respect to the tubular mount ( 3 ), the orbital welding device ( 1 ) having an electric motor ( 6 ) activated by a motor controller ( 5 ) of the orbital welding device ( 1 ), which is configured to drive the welding electrode holder ( 4 ) and thus to rotate the same with respect to the tubular mount ( 3 ), wherein the orbital welding device ( 1 ) has an electric torque measuring device ( 7 ), which is configured to measure a torque applied by the motor ( 6 ) to the welding electrode holder ( 4 ), wherein the torque measuring device ( 7 ) is connected to the motor controller ( 5 ), and wherein the motor controller ( 5 ) is configured to stop the motor ( 6 ) automatically if the torque exceeds a predetermined first torque.

Claims (18)

1. An orbital welding device, comprising:

a weld head having a tubular mount and a welding electrode holder mounted rotatably with respect to the tubular mount;

a motor controller;

an electric motor, which is activated by the motor controller and is configured to drive the welding electrode holder to turn the welding electrode holder with respect to the tubular mount; and

an electrical torque measuring device, configured to measure a torque applied to the welding electrode holder by the motor, wherein the torque measuring device is connected to the motor controller, and the motor controller is configured to stop the motor automatically if the torque exceeds a predetermined first torque;

wherein the motor controller is configured to start the motor automatically in the opposite direction for a defined time or for a defined number of revolutions directly after the motor has been stopped in response to the predetermined first torque being exceeded.

2. The orbital welding device of claim 1 , wherein the electrical torque measuring device has a current measuring device, which is configured to measure an electrical motor current for driving the motor as a value representing the torque.

3. The orbital welding device of claim 1 , wherein the motor controller is configured to stop the motor again automatically if the torque exceeds again the predetermined torque after the motor has been started in the opposite direction for a defined time or for a defined number of revolutions directly after the motor has been stopped because of the first predetermined torque being exceeded.

4. The orbital welding device of claim 1 , wherein the orbital welding device is configured to, in response to the torque exceeding a second predetermined torque throughout a predetermined time period, do one or more of: output at least one of a visual signal, an acoustic signal, or a haptic signal; send an electrical signal for at least one of visual output, acoustic output, or haptic output on another device; or store an indication on a storage unit, wherein the second predetermined torque is less than the first predetermined torque.

5. The orbital welding device of claim 1 , wherein the motor controller and the electrical torque measuring device are arranged in a welding power source of the orbital welding device, while the motor is arranged in the weld head.

6. An orbital welding device, comprising:

a weld head having a tubular mount and a welding electrode holder mounted rotatably with respect to the tubular mount;

a motor controller;

an electric motor, which is activated by the motor controller and is configured to drive the welding electrode holder to turn the welding electrode holder with respect to the tubular mount; and

an electrical torque measuring device, configured to measure a torque applied to the welding electrode holder by the motor, wherein the torque measuring device is connected to the motor controller, and the motor controller is configured to stop the motor automatically if the torque exceeds a predetermined first torque;

wherein the motor controller is configured to, in response to the torque exceeding a second predetermined torque, do one or more of: output at least one of a visual signal, an acoustic signal, or a haptic signal; send an electrical signal for at least one of visual output, acoustic output, or haptic output on another device; or store an indication on a storage unit, wherein the second predetermined torque is less than the first predetermined torque; and

wherein the motor controller is configured to start the motor automatically in the opposite direction directly after the motor has been stopped in response to the predetermined first torque being exceeded; and

wherein the motor controller is configured to stop the motor again automatically if the torque exceeds again the first predetermined torque after the motor has been started in the opposite direction directly after the motor has been stopped because of the first predetermined torque being exceeded.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2021
From: TAMM, MARKUS; FOH, MARCEL
To: ILLINOIS TOOL WORKS INC.
Reel/Frame 056359/0835 →
Priority Claims (1)
DE 102017122069.0 · Sep 22, 2017 · national
Continuity (1)
Related Publication 20190091788A1 · Mar 28, 2019
Cited By (2)
US 12,502,736 US 12,551,960