IP Library Granted Patent US 7,034,245
Granted Patent B2
US 7,034,245 · App. 10/879,677 · Granted Apr 25, 2006

Systems and methods for controlling pilot arc current in an arc cutting or welding machine

Assignee: The ESAB Group, Inc.
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Quick Facts
Patent No.
US 7,034,245
App. No.
10/879,677
Granted
Apr 25, 2006
Kind
B2
Abstract

The systems and methods of the present invention provide a circuit for controlling the magnitude of the main and pilot arc current provided to an arc cutting or welding machine. In one embodiment, the circuit allows the user to set the pilot arc current such that it automatically tracks the main arc current setting. The pilot arc current is set to a value that is proportional to the main arc current, such that the pilot arc current value is tailored to the specific cutting operation to be performed and/or the specific nozzle and electrode being used. In an alternative embodiment, the circuit allows the user to select from different pilot arc current levels, such as low, medium, and high current levels. This allows the user to override the pilot arc control in instances where the plasma arc cutting or welding machine is operated under conditions not optimal for the selected nozzle and electrode.

Claims (72)

1. A system for controlling the pilot arc current supplied to an arc cutting or welding machine, said system comprising:

an output voltage source connected to the arc cutting or welding machine for providing both a pilot arc and main arc current thereto;

a main arc current control device connected to an input of said output voltage source, said main arc current control device providing a first reference signal to said output voltage source indicating the desired level of main arc current to be output by said output voltage source to the arc cutting or welding machine; and

a pilot arc current control device connected to an input of said output voltage source for providing a second reference signal to said output voltage source indicating the desired level of pilot arc current to be output by said output voltage source to the arc cutting or welding machine, said pilot arc current control device capable of providing the second reference signal that is one of:

proportional to the first reference signal output by said main arc current control device, such that the pilot arc current tracks the main arc current; and

at least one specific value set by a user.

2. A system according to claim 1 , wherein the specific value set by the user for the second reference signal is determined by a variable reference voltage that can be varied by a user.

3. A system according to claim 1 , wherein said outputs of said main arc current control device and said pilot arc current control device are connected to a common input of the output voltage source, such that controls for main arc current are input to the output voltage source during main arc mode and controls for pilot arc current are input to the output voltage source during pilot arc mode.

4. A system according to claim 1 further comprising a first current sensor for sensing the main arc current supplied by the output voltage source to the cutting and welding machine, wherein the first reference signal provided to said output voltage source is a difference signal representing a difference between an output of said main arc control device and the main arc current sensed by said first current sensor.

5. A system for controlling the pilot arc current supplied to an arc cutting or welding machine, said system comprising:

an output voltage source connected to the arc cutting or welding machine for providing both a pilot arc and main arc current thereto;

a main arc current control device connected to an input of said output voltage source, said main arc current control device providing a first reference signal to said output voltage source indicating the desired level of main arc current to be output by said output voltage source to the arc cutting or welding machine;

a pilot arc current control device connected to an input of said output voltage source for providing a second reference signal to said output voltage source indicating the desired level of pilot arc current to be output by said output voltage source to the arc cutting or welding machine, said pilot arc current control device capable of providing the second reference signal that is one of:

proportional to the first reference signal output by said main arc current control device, such that the pilot arc current tracks the main arc current; and

at least one specific value set by a user,

wherein said the outputs of said main arc current control device and said pilot arc current control device are connected to a common input of the output voltage source, such that controls for main arc current are input to the output voltage source during main arc mode and controls for pilot arc current are input to the output voltage source during pilot arc mode;

a current direction controller connected in series with the output of said pilot arc current control device; and

a transient voltage source in parallel with said current direction controller at a node,

wherein during the pilot arc mode, said current direction controller allows current flow from said pilot arc current control device to the input of the output voltage source, the current also charges said transient voltage source, and

wherein during the main arc mode, said current direction controller block current from said pilot arc current controller and said transient voltage source discharges to the input of the output voltage source.

6. A system according to claim 5 further comprising:

a first delay element connected in series with said current direction controller; and

a second delay element connect between the node and the input of the output voltage source,

wherein said first delay element controls the rate that said transient voltage source is charged by said pilot arc current control device, and

wherein said second delay element controls the rate at which the transient voltage source discharges to the output voltage source.

7. A system according to claim 6 , wherein said second delay element has a larger delay characteristic than said first delay characteristic.

8. A system according to claim 6 , wherein said first and second delay elements are resistive elements and said transient voltage source is a capacitive element.

9. A system for controlling the pilot arc current supplied to an arc cutting or welding machine, said system comprising:

an output voltage source connected to the arc cutting or welding machine for providing both a pilot arc and main arc current thereto;

a main arc current control device connected to an input of said output voltage source, said main arc current control device providing a first reference signal to said output voltage source indicating the desired level of main arc current to be output by said output voltage source to the arc cutting or welding machine;

a pilot arc current control device connected to an input of said output voltage source for providing a second reference signal to said output voltage source indicating the desired level of pilot arc current to be output by said output voltage source to the arc cutting or welding machine, said pilot arc current control device capable of providing the second reference signal that is one of:

proportional to the first reference signal output by said main arc current control device, such that the pilot arc current tracks the main arc current; and

at least one specific value set by a user; and

a second current sensor for sensing the pilot arc current supplied by the output voltage source to the cutting and welding machine, wherein the second reference signal provided to said output voltage source is a difference signal representing a difference between an output of said pilot arc control device and the pilot arc current sensed by said second current sensor.

10. A system for controlling the pilot arc current supplied to an arc cutting or welding machine, said system comprising:

an output voltage source connected to the arc cutting or welding machine for providing both a pilot arc and main arc current thereto;

a main arc current control device connected to an input of said output voltage source, said main arc current control device providing a first reference signal to said output voltage source indicating the desired level of main arc current to be output by said output voltage source to the arc cutting or welding machine; and

a pilot arc current control device connected to an input of said output voltage source for providing a second reference signal to said output voltage source indicating the desired level of pilot arc current to be output by said output voltage source to the arc cutting or welding machine, said pilot arc current control device capable of providing the second reference signal that is proportional to the first reference signal output by said main arc current control device, such that the pilot arc current tracks the main arc current.

11. A system according to claim 10 , wherein said outputs of said main arc current control device and said pilot arc current control device are connected to a common input of the output voltage source, such that controls for main arc current are input to the output voltage source during main arc mode and controls for pilot arc current are input to the output voltage source during pilot arc mode.

12. A system according to claim 11 further comprising:

a current direction controller connected in series with the output of said pilot arc current control device; and

a transient voltage source in parallel with said current direction controller at a node,

wherein during the pilot arc mode, said current direction controller allows current flow from said pilot arc current control device to the input of the output voltage source, the current also charges said transient voltage source, and

wherein during the main arc mode, said current direction controller block current from said pilot arc current controller and said transient voltage source discharges to the input of the output voltage source.

13. A system according to claim 12 further comprising:

a first delay element connected in series with said current direction controller; and

a second delay element connect between the node and the input of the output voltage source,

wherein said first delay element controls the rate that said transient voltage source is charged by said pilot arc current control device, and

wherein said second delay element controls the rate at which the transient voltage source discharges to the output voltage source.

14. A system according to claim 13 , wherein said second delay element has a larger delay characteristic than said first delay characteristic.

15. A system according to claim 13 , wherein said first and second delay elements are resistive elements and said transient voltage source is a capacitive element.

16. A system according to claim 10 further comprising a first current sensor for sensing the main arc current supplied by the output voltage source to the cutting and welding machine, wherein the first reference signal provided to said output voltage source is a difference signal representing a difference between an output of said main arc control device and the main arc current sensed by said first current sensor.

17. A system according to claim 10 further comprising a second current sensor for sensing the pilot arc current supplied by the output voltage source to the cutting and welding machine, wherein the second reference signal provided to said output voltage source is a difference signal representing a difference between an output of said pilot arc control device and the pilot arc current sensed by said second current sensor.

18. A system for controlling the pilot arc current supplied to an arc cutting or welding machine, said system comprising:

an output voltage source connected to the arc cutting or welding machine for providing both a pilot arc and main arc current thereto;

a main arc current control device connected to an input of said output voltage source, said main arc current control device providing a first reference signal to said output voltage source indicating the desired level of main arc current to be output by said output voltage source to the arc cutting or welding machine; and

a pilot arc current control device connected to an input of said output voltage source for providing a second reference signal to said output voltage source indicating the desired level of pilot arc current to be output by said output voltage source to the arc cutting or welding machine, said pilot arc current control device capable of providing the second reference signal that is proportional to the first reference signal output by said main arc current control device, such that the pilot arc current tracks the main arc current,

wherein said the outputs of said main arc current control device and said pilot arc current control device are connected to a common input of the output voltage source, such that controls for main arc current are input to the output voltage source during main arc mode and controls for pilot arc current are input to the output voltage source during pilot arc mode;

a current direction controller connected in series with the output of said pilot arc current control device; and

a transient voltage source in parallel with said current direction controller at a node,

wherein during the pilot arc mode, said current direction controller allows current flow from said pilot arc current control device to the input of the output voltage source, the current also charges said transient voltage source, and

wherein during the main arc mode, said current direction controller block current from said pilot arc current controller and said transient voltage source discharges to the input of the output voltage source.

19. A system according to claim 18 further comprising:

a first delay element connected in series with said current direction controller; and

a second delay element connect between the node and the input of the output voltage source,

wherein said first delay element controls the rate that said transient voltage source is charged by said pilot arc current control device, and

wherein said second delay element controls the rate at which the transient voltage source discharges to the output voltage source.

20. A system for controlling the pilot arc current supplied to an arc cutting or welding machine, said system comprising:

an output voltage source connected to the arc cutting or welding machine for providing both a pilot arc and main arc current thereto;

a main arc current control device connected to an input of said output voltage source, said main arc current control device providing a first reference signal to said output voltage source indicating the desired level of main arc current to be output by said output voltage source to the arc cutting or welding machine;

a pilot arc current control device connected to an input of said output voltage source for providing a second reference signal to said output voltage source indicating the desired level of pilot arc current to be output by said output voltage source to the arc cutting or welding machine, said pilot arc current control device capable of providing the second reference signal that is proportional to the first reference signal output by said main arc current control device, such that the pilot arc current tracks the main arc current; and

a second current sensor for sensing the pilot arc current supplied by the output voltage source to the cutting and welding machine, wherein the second reference signal provided to said output voltage source is a difference signal representing a difference between an output of said pilot arc control device and the pilot arc current sensed by said second current sensor.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jun 12, 2015
From: DEUTSCHE BANK AG NEW YORK BRANCH
To: COLFAX CORPORATION; CONSTELLATION PUMPS CORPORATION; CLARUS FLUID INTELLIGENCE, LLC; ALCOTEC WIRE CORPORATION; ALLOY RODS GLOBAL INC.; ANDERSON GROUP INC.; ESAB AB; EMSA HOLDINGS INC.; THE ESAB GROUP INC.; DISTRIBUTION MINING & EQUIPMENT COMPANY, LLC; HOWDEN GROUP LIMITED; HOWDEN COMPRESSORS, INC.; HOWDEN NORTH AMERICA INC.; IMO INDUSTRIES INC.; HOWDEN AMERICAN FAN COMPANY; SHAWEBONE HOLDINGS INC.; STOODY COMPANY; TOTAL LUBRICATION MANAGEMENT COMPANY; VICTOR EQUIPMENT COMPANY; VICTOR TECHNOLOGIES INTERNATIONAL, INC.
Reel/Frame 035903/0051 →
US INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded May 17, 2012
From: ALCOTEC WIRE CORPORATION; ALLOY RODS GLOBAL, INC.; ANDERSON GROUP INC.; DISTRIBUTION MINING & EQUIPMENT COMPANY, LLC; EMSA HOLDINGS, INC.; HOWDEN COMPRESSORS, INC.; HOWDEN NORTH AMERICA INC.; HOWDEN VARIAX INC.; SHAND HOLDINGS, INC.; SHAWEBONE HOLDINGS INC.; THE ESAB GROUP, INC.
To: DEUTSCHE BANK AG NEW YORK BRANCH
Reel/Frame 028225/0020 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2004
From: ELDRIDGE, RICHARD ALLEN
To: ESAB GROUP, INC., THE
Reel/Frame 015141/0276 →
Continuity (1)
Related Publication 20050284849A1 · Dec 29, 2005