IP Library › Granted Patent US 11,285,557
Granted Patent B2
US 11,285,557 · App. 16/267,529 · Granted Mar 29, 2022

Dual wire welding or additive manufacturing system

Inventors: Alexander C. Mehlman (Strongsville, OH); Todd E. Kooken (Solon, OH); Steven R. Peters (Huntsburg, OH); Matthew A. Weeks (Walloon, AU); Bruce J. Chantry (Solon, OH); Bradford W. Petot (South Euclid, OH)
Assignee: LINCOLN GLOBAL, INC.
B23K9/04B23K9/23B23K35/3066B23H1/02B23K2103/04B23K2103/18
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Quick Facts
Patent No.
US 11,285,557
App. No.
16/267,529
Granted
Mar 29, 2022
Kind
B2
Abstract

A welding or additive manufacturing wire drive system includes a first drive roll and a second drive roll. One or both of the drive rolls has a circumferential groove for simultaneously driving both of a first wire electrode and a second wire electrode located between the drive rolls in the circumferential groove. A sensor device generates a signal or data corresponding to a consumed or remaining amount of one or both of the wire electrodes. The first wire electrode contacts the second wire electrode within the circumferential groove. The first wire electrode further contacts a first sidewall portion of the circumferential groove. The second wire electrode further contacts a second sidewall portion of the circumferential groove. Both of the wire electrodes are offset from a base portion of the circumferential groove, said base portion extending between the first sidewall portion and the second sidewall portion of the circumferential groove.

Claims (10)

1. A welding or additive manufacturing system, comprising:

a wire feeder including a first drive roll, a second drive roll, and a biasing member that biases the first drive roll toward the second drive roll or the second drive roll toward the first drive roll, wherein the first drive roll has a circumferential groove for simultaneously driving both of a first wire electrode and a second wire electrode, located between the first drive roll and the second drive roll, such that both of the first wire electrode and the second wire electrode are located together in a single circumferential groove of the first drive roll;

a welding torch including a contact tip having a first exit orifice for the first wire electrode and a second exit orifice for the second wire electrode, wherein the first and second exit orifices are separated from each other such that a distance S is provided between the first wire electrode and the second wire electrode, and the distance S is configured to facilitate formation of a bridge droplet between the first wire electrode and the second wire electrode while preventing solid portions of the first wire electrode delivered through the first exit orifice from contacting solid portions of the second wire electrode delivered through the second exit orifice during a deposition operation, where said bridge droplet couples the first wire electrode and the second wire electrode prior to contacting a molten puddle during the deposition operation; and

a sensor device that generates a signal or data corresponding to a consumed or remaining amount of one or both of the first wire electrode and the second wire electrode,

wherein the first drive roll has two circumferential grooves that are spaced axially along a circumference of the first drive roll.

2. The welding or additive manufacturing system of claim 1 , wherein both of the first wire electrode and the second wire electrode are offset from a concave base portion of the circumferential groove that extends between sidewall portions of the circumferential groove.

3. The welding or additive manufacturing system of claim 1 , wherein the distance S is in the range of 1.5 to 3.5 mm as measured between closest edges of the first wire electrode and the second wire electrode.

4. The welding or additive manufacturing system of claim 1 , wherein the distance S is in the range of 2 to 3 mm as measured between closest edges of the first wire electrode and the second wire electrode.

5. The welding or additive manufacturing system of claim 1 , wherein the distance S is in the range of 0.25 to 2.25 times the largest diameter of either of the first wire electrode and the second wire electrode, as measured between closest edges of the first wire electrode and the second wire electrode.

6. The welding or additive manufacturing system of claim 1 , wherein the distance S is in the range of 2.5 to 3.5 times the largest diameter of either of the first wire electrode and the second wire electrode, as measured between closest edges of the first wire electrode and the second wire electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2019
From: MEHLMAN, ALEXANDER C.; KOOKEN, TODD E.; PETERS, STEVEN R.; WEEKS, MATTHEW A.; CHANTRY, BRUCE J.; PETOT, BRADFORD W.
To: LINCOLN GLOBAL, INC.
Reel/Frame 048237/0023 →
Continuity (1)
Related Publication 20200246891A1 · Aug 6, 2020
Cited By (2)
US 12,583,046 US 12,723,877