IP Library Granted Patent US 6,902,635
Granted Patent B2
US 6,902,635 · App. 10/025,503 · Granted Jun 7, 2005

Multi-cell thermal processing unit

Assignee: Nitrex Metal Inc.
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 6,902,635
App. No.
10/025,503
Granted
Jun 7, 2005
Kind
B2
Abstract

The present invention relates to a multi cell thermal processing unit. The thermal processing unit comprises an air tight common chamber containing an atmosphere other than ambient air. A loading cell is linked to the common chamber via a gas tight door for providing to and receiving from the common chamber a workpiece. Further, a preheating cell is linked to the common chamber via a heat insulating door. The preheating cell provides a substantially fixed temperature for activating the workpiece. Thermochemical processing of the workpiece is provided by a first and a second thermochemical processing cell each linked to the common chamber via a heat insulating door. The first thermochemical processing cell provides substantially fixed first thermochemical processing conditions for nitriding the workpiece. The second thermochemical processing cell provides substantially fixed second thermochemical processing conditions for post nitriding treatment of the workpiece. A cooling cell linked to the common chamber provides controlled cooling of the workpiece. The thermal processing unit according to the invention, wherein thermochemical processing cells are operated under substantially constant conditions considerably facilitates control functions for providing predetermined conditions. This allows a substantially more accurate control of the thermochemical processing conditions which is especially advantageous for reproducibly thermochemical processing workpieces using nitriding processes.

Claims (95)

1. A multi cell thermal processing unit comprising:

an air tight expandable common chamber module for containing an atmosphere other than ambient air, the chamber module comprising N ports;

a loading cell linked to the first port of the common chamber module via a gas tight door for providing to and receiving from the common chamber module an iron-base alloy workpiece;

a first thermochemical processing cell linked to the second port of the common chamber module via a heat insulating door for thermochemical processing the workpiece, the first thermochemical processing cell for providing substantially fixed first thermochemical processing conditions of a thermochemical process for improving material characteristics of the iron-base alloy material of the workpiece;

a second thermochemical processing cell linked to the third port of the common chamber module via a heat insulating door for thermochemical processing the workpiece, the second thermochemical processing cell for providing substantially fixed second thermochemical processing conditions of the thermochemical process;

a transport mechanism disposed within the common chamber module for handling and transporting the workpiece within the thermal processing unit;

at least a processor in control communication with the first thermochemical processing cell, the second thermochemical processing cell, and the transport mechanism for:

processing data related to the thermochemical process in order to divide the thermochemical process into at least two portions and to determine at least the first and second thermochemical processing conditions based on operational ranges of at least the first and second thermochemical processing cells for optimizing operation of the multi cell thermal processing unit;

controlling provision of the first and the second thermochemical processing conditions; and,

controlling handling and transportation of the workpiece within the thermal processing unit; and,

N-3 sealing covers for airtightly sealing the remaining N-3 ports, the covers being removable for mating the common chamber module to a processing cell or another common chamber module.

2. A multi cell thermal processing unit as defined in claim 1 , comprising:

a second common chamber module having N ports, the first port of the second chamber module being connected to a fourth port of the common chamber module for providing transport communication therebetween;

a third thermochemical processing cell linked to the second port of the second common chamber module via a heat insulating door, the third thermochemical processing cell for providing substantially fixed third thermochemical processing conditions; and,

N-2 sealing covers for airtightly sealing the remaining N-2 ports, the covers being removable for mating the second common chamber module to a processing cell or another common chamber module.

3. A multi cell thermal processing unit as defined in claim 2 , comprising a control communication link between the third thermochemical processing cell and the at least a processor, the at least a processor for controlling provision of the third thermochemical processing conditions, wherein the substantially fixed third thermochemical processing conditions are a third portion of the thermochemical process.

4. A multi cell thermal processing unit as defined in claim 2 , comprising a fourth thermochemical processing cell linked to the third port of the second common chamber module via a heat insulating door, the fourth thermochemical processing cell for providing substantially fixed fourth thermochemical processing conditions.

5. A multi cell thermal processing unit comprising:

an air tight common chamber for containing an atmosphere other than ambient air;

a loading cell linked to the common chamber via a gas tight door for providing to and receiving from the common chamber an iron-base alloy workpiece;

a first thermochemical processing cell linked to the common chamber via a heat insulating door for thermochemical processing the workpiece, the first thermochemical processing cell for providing substantially fixed first thermochemical processing conditions of a thermochemical process for improving material characteristics of the iron-base alloy material of the workpiece;

a second thermochemical processing cell linked to the common chamber via a heat insulating door for thermochemical processing the workpiece, the second thermochemical processing cell for providing substantially fixed second thermochemical processing conditions of the thermochemical process;

a transport mechanism disposed within the common chamber for handling and transporting the workpiece within the thermal processing unit; and,

at least a processor in control communication with the first thermochemical processing cell, the second thermochemical processing cell, and the transport mechanism for:

processing data related to the thermochemical process in order to divide the thermochemical process into at least two portions and to determine at least the first and second thennochemical processing conditions based on operational ranges of at least the first and second thermochemical processing cells for optimizing operation of the multi cell thermal processing unit;

controlling provision of the first and the second thermochemical processing conditions; and,

controlling handling and transportation of the workpiece within the thermal processing unit.

6. A multi cell thermal processing unit as defined in claim 5 , comprising a control communication link between the air tight common chamber and the at least a processor, the at least a processor for controlling provision of the atmosphere within the common chamber, the atmosphere substantially comprising an inert gas.

7. A multi cell thermal processing unit comprising:

an air tight common chamber for containing an atmosphere other than ambient air;

a loading cell linked to the common chamber via a gas tight door for providing to and receiving from the common chamber an iron-base alloy workpiece;

a first thermochemical processing cell linked to the common chamber via a heat insulating door for thermochemical processing the workpiece, the first thermochemical processing cell for providing substantially fixed first thermochemical processing conditions of a thermochemical process for improving material characteristics of the iron-base alloy material of the workpiece;

a second thermochemical processing cell linked to the common chamber via a heat insulating door for thermochemical processing the workpiece, the second thermochemical processing cell for providing substantially fixed second thermochemical processing conditions of the thermochemical process;

a transport mechanism disposed within the common chamber for handling and transporting the workpiece within the thermal processing unit; and,

at least a processor in control communication with the first thermochemical processing cell, the second thermochemical processing cell, and the transport mechanism for:

processing data related to the thermochemical process in order to divide the thermochemical process into at least two portions and to determine at least the first and second thermochemical processing conditions based on operational ranges of at least the first and second thermochemical processing cells for optimizing operation of the multi cell thermal processing unit;

controlling provision of a first atmosphere composition and a first temperature of the first thermochemical processing conditions, and a second atmosphere composition and a second temperature of the second thermochemical processing conditions; and,

controlling handling and transportation of the workpiece within the thermal processing unit.

8. A multi cell thermal processing unit as defined in claim 7 , comprising a control communication link between the air tight common chamber and the at least a processor, the at least a processor for controlling provision of the atmosphere within the common chamber, the atmosphere substantially comprising an inert gas.

9. A multi cell thermal processing unit as defined in claim 8 , comprising a third thermochemical processing cell linked to the common chamber via a heat insulating door, the third thermochemical processing cell for providing third thermochemical processing conditions of the thermochemical process.

10. A multi cell thermal processing unit as defined in claim 9 , wherein the heat insulating door of at least one of the thermochemical processing cells is also a gas tight door.

11. A multi cell thermal processing unit as defined in claim 8 , comprising a preheating cell linked to the common chamber via a heat insulating door, the preheating cell for providing a substantially fixed temperature for heating the workpiece to a predetermined temperature.

12. A multi cell thermal processing unit as defined in claim 11 , comprising a second other preheating cell linked to the common chamber via a heat insulating door, the second other preheating cell for providing a substantially fixed second other temperature for heating the workpiece to a predetermined second other temperature.

13. A multi cell thermal processing unit as defined in claim 11 , comprising a quenching cell linked to the common chamber via a gas tight door, the quenching cell for providing a predetermined quenching operation for the workpiece.

14. A multi cell thermal processing unit as defined in claim 13 , comprising a second other quenching cell linked to the common chamber via a gas tight door, the second other quenching cell for providing a second other predetermined quenching operation.

15. A multi cell thermal processing unit as defined in claim 11 , comprising a heating cell linked to the common chamber via a heat insulating door, the heating cell for providing heating of the workpiece to a predetermined temperature after quenching.

16. A multi cell thermal processing unit as defined in claim 15 , comprising a cooling cell linked to the common chamber, the cooling cell for cooling the workpiece.

17. A multi cell thermal processing unit comprising:

an air tight common chamber for containing an atmosphere substantially comprising an inert gas;

a loading cell linked to the common chamber via a gas tight door for providing to and receiving from the common chamber an iron-base alloy workpiece;

a first thermochemical processing cell linked to the common chamber for thermochemical processing the workpiece, the first thermochemical processing cell for providing first thermochemical processing conditions of a thermochemical process for improving material characteristics of the iron-base alloy material of the workpiece;

a second thermochemical processing cell linked to the common chamber for thermochemical processing the workpiece, the second thermochemical processing cell for providing second thermochemical processing conditions of the thermochemical process;

a transport mechanism disposed within the common chamber for handling and transporting the workpiece within the thermal processing unit; and,

at least a processor in control communication with the first thermochemical processing cell, the second thermochemical processing cell, and the transport mechanism for:

processing data related to the thermochemical process in order to divide the thermochemical process into at least two portions and to determine at least the first and second thermochemical processing conditions based on operational ranges of at least the first and second thermochemical processing cells for optimizing operation of the multi cell thermal processing unit, wherein the at least first and second thermochemical processing conditions are variable within ranges smaller than total ranges of the processing conditions of the thermochemical process;

controlling provision of the first and the second thermochemical processing conditions; and,

controlling handling and transportation of the workpiece within the thermal processing unit.

18. A multi cell thermal processing unit as defined in claim 17 , comprising a preheating cell linked to the common chamber via a heat insulating door, the preheating cell for providing a substantially fixed temperature for heating the workpiece.

19. A method for thermal processing a workpiece comprising:

dividing a thermochemical process for improving material characteristics of an iron-base alloy material of the workpiece into at least two portions and determining corresponding thermochemical processing conditions based on operational ranges of at least two thermochemical processing cells, wherein the determined corresponding thermochemical processing conditions are variable within ranges smaller than total ranges of the processing conditions of the thermochemical process;

providing the workpiece to a first thermochemical processing cell linked to a common chamber containing an atmosphere other than ambient air;

thermochemical processing the workpiece by providing first thermochemical processing conditions of the thermochemical process;

transferring via the common chamber the workpiece from the first thermochemical processing cell to a second thermochemical processing cell linked to the common chamber after elapse of a first predetermined time interval;

thermochemical processing the workpiece by providing second thermochemical processing conditions of the thermochemical process; and,

removing the workpiece from the second thermochemical processing cell after elapse of a second predetermined time interval.

20. A method for thermal processing a workpiece as defined in claim 19 , comprising:

providing a second workpiece to the first thermochemical processing cell after transferring the workpiece to the second thermochemical processing cell; and,

thermochemical processing the second workpiece by providing the first thermochemical processing conditions of the thermochemical process.

21. A method for thermal processing a workpiece as defined in claim 19 , comprising:

transferring via the common chamber the workpiece from the second thermochemical processing cell to a third thermochemical processing cell linked to the common chamber;

thermochemical processing the workpiece by providing third thermochemical processing conditions of the thermochemical process; and,

removing the workpiece from the third thermochemical processing cell after elapse of a third predetermined time interval.

22. A method for thermal processing a workpiece as defined in claim 21 , wherein at least one of the determined thermochemical processing conditions is substantially fixed.

23. A method for thermal processing a workpieee as defined in claim 21 , comprising:

providing the workpiece to a preheating cell linked to the common chamber; and,

preheating the workpiece to a predetermined temperature.

24. A method for thermal processing a workpiece as defined in claim 23 , comprising:

transferring via the common chamber the workpiece from the preheating cell to a second preheating cell linked to the common chamber; and,

preheating the workpiece to a second predetermined temperature.

25. A multi cell thermal processing unit comprising:

an air tight common chamber for containing an atmosphere other than ambient air;

a loading cell linked to the common chamber via a gas tight door for providing to and receiving from the common chamber an iron-base alloy workpiece;

a first thermochemical processing cell linked to the common chamber via a heat insulating door for thermochemical processing the workpiece, the first thermochemical processing cell for providing substantially fixed first thermochemical processing conditions of a thermochemical process for improving material characteristics of the iron-base alloy material of the workpiece;

a second thermochemical processing cell linked to the common chamber via a heat insulating door for thermochemical processing the workpiece, the second thermochemical processing cell for providing substantially fixed second thermochemical processing conditions of the thermochemical process;

a transport mechanism disposed within the common chamber for handling and transporting the workpiece within the thermal processing unit; and,

at least a processor in control communication with the first thermochemical processing cell, the second thermochemical processing cell, and the transport mechanism for:

processing data related to the thermochemical process in order to divide the thermochemical process into at least two portions and to determine at least the first and second thermochemical processing conditions based on operational ranges of at least the first and second thermochemical processing cells for optimizing operation of the multi cell thermal processing unit, wherein the at least first and second thermochemical processing conditions are variable within ranges smaller than total ranges of the processing conditions of the thermochemical process;

controlling provision of the first and the second thermochemical processing conditions, wherein at least one of the first and the second thermochemical processing conditions comprises a predetermined potential corresponding to the thermochemical process; and,

controlling handling and transportation of the workpiece within the thermal processing unit.

26. A multi cell thermal processing unit as defined in claim 25 , comprising:

a third thermochemical processing cell linked to the common chamber via a heat insulating door, the third thermochemical processing cell for providing third thermochemical processing conditions of the thermochemical process.

27. A multi cell thermal processing unit as defined in claim 26 , wherein the heat insulating door of at least one of the thermochemical processing cells is also a gas tight door.

28. A multi cell thermal processing unit as defined in claim 5 , wherein the thermochemical process is one of nitriding, carburizing, carbo-nitriding, and nitro-carburizing.

29. A multi cell thermal processing unit as defined in claim 17 , wherein the thermochemical process is one of nitriding, carburizing, carbo-nitriding, and nitro-carburizing.

30. A multi cell thermal processing unit as defined in claim 19 , wherein the thermochemical process is one of nitriding, carburizing, carbo-nitriding, and nitro-carburizing.

Assignments (2)
SECURITY INTEREST Recorded Sep 21, 2015
From: NITREX METAL, INC.
To: BANK OF MONTREAL
Reel/Frame 036609/0996 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2002
From: KORWIN, MICHEL J.; SZYMBORSKI, JANUSZ
To: NITREX METAL INC.
Reel/Frame 012624/0619 →
Continuity (1)
Related Publication 20030116894A1 · Jun 26, 2003