IP Library Granted Patent US 9,314,862
Granted Patent B2
US 9,314,862 · App. 14/292,120 · Granted Apr 19, 2016

Process for flux coating braze preforms and discrete parts

Inventor: Daniel J. Jossick (Exeter, NH)
Assignee: Lucas-Milhaupt, Inc.
B23K1/203B23K1/206B23K3/082B23K35/0244
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Quick Facts
Patent No.
US 9,314,862
App. No.
14/292,120
Granted
Apr 19, 2016
Kind
B2
Abstract

Systems and methods for evenly applying a flux coating to any number of different shaped parts with a single machine are described. The systems and methods provide advantages in that the flux coating may be applied accurately within 2% to 4% of desired thickness with 85% to 95% of the total yield of flux being applied, this minimizing waste. Thousands of parts may be batch treated with a single machine without operator input.

Claims (58)

1. A method of applying a brazing flux coating on a plurality of parts for a brazing operation comprising:

preparing the plurality of parts from a metal alloy into a preform in the shape of at least one of a ring, helix, triangle, and other geometric shape;

preparing the flux coating while preventing airborne humidity from being absorbed by the flux coating;

adding an acrylic resin binder to the flux coating;

tumbling the parts in a tumbling drum with a controlled atmosphere including a user definable temperature and humidity within the tumbling drum;

cycling the parts through a coating cycle comprising:

spraying the brazing flux coating from at least one nozzle within the tumbling drum during the tumbling for a user defined period of time;

coating the parts with the brazing flux coating with a uniform thickness of up to 0.015 in (0.381 mm), wherein the brazing flux coating is configured to melt and separate from the preform during the brazing operation;

tumbling the parts following the user defined period of time to cure the brazing flux to a desired hardness; and

repeating the coating cycle for a plurality of repetitions wherein the uniform thickness of brazing flux coating on the parts is uniformly increased with each coating cycle.

2. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising adding an iso-butyl methacrylate polymer to the brazing flux coating.

3. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 2 , further comprising mixing polyethylene carbonate with the binder.

4. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising coating the parts with the brazing flux while maintaining a coated weight of the part within 2% of an uncoated weight of the part.

5. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising spraying the flux from a nozzle with an opening from which the coating exits having an internal diameter of 0.05 in (1.27 mm) to 0.08 in (2.032 mm).

6. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising circulating the atmosphere within the tumbling drum with exhaust ducts.

7. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising adhering 85% to 95% of the sprayed brazing flux to the parts.

8. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising:

agitating the parts within the drum with at least one agitator during tumbling;

keeping the brazing flux coating covered prior to use in the tumbling drum to prevent evaporation or contamination of the brazing flux coating; and

maintaining the tumbling drum and the brazing flux coating free of a foreign matter, a dust, an oil, and a moisture prior to use in the tumbling drum.

9. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising spraying a sealant over the parts and brazing flux.

10. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising setting the parts on a conveyor that transports the parts into an enclosure with a plasma cleaning chamber, a heating chamber, and an ultrasonic brazing flux spraying chamber.

11. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 10 , further comprising plasma cleaning the parts in the plasma cleaning chamber to remove contaminants allowing a proper adhesion of the brazing flux coating to the parts.

12. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 11 , further comprising heating the parts after plasma cleaning in the heating chamber to a desired temperature.

13. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 12 , further comprising spraying the parts after heating with an ultrasonic sprayer configured to atomize a liquid brazing flux solution and coat a single side of the parts with the brazing flux coating and leaving an opposing side of the part free of the brazing flux coating.

14. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 10 , further comprising adjusting a speed of the conveyor to dry the parts to a desired moisture content.

15. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising spraying one of a metal and an alloy on the brazing flux coated parts, thus eliminating a need for an additional subsequent filler metal application during a brazing procedure.

16. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , wherein the uniform thickness of the brazing flux coating on the parts is within 2% of a desired thickness.

17. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 1 , further comprising:

preparing the brazing flux coating by mixing dimethyl carbonate, a binder, and a flux followed by filtering the brazing flux coating with a filter size of 325 mesh or smaller;

preventing a moisture from ambient air from being absorbed by the brazing flux coating by sealing the flux coating at all times prior to the spraying;

cleaning the parts free of any oils or residues prior to the coating;

adjusting a spray nozzle opening size to 0.050 in to 0.080 in;

adhering 85% through 95% of the sprayed brazing flux coating to the parts; and

coating the parts within 2% of a desired brazing flux coating thickness.

18. A method of applying a brazing flux coating on a plurality of parts for a brazing operation comprising:

preparing the plurality of parts from a metal alloy into a preform in the shape of at least one of a ring, helix, triangle, and other geometric shape;

adding an acrylic resin binder to the flux coating;

preventing a moisture from ambient air from being absorbed by the flux coating by sealing the flux coating at all times prior to a spraying operation;

maintaining the brazing flux coating in a moisture-free environment prior to application;

spraying the brazing flux coating from at least one nozzle within a tumbling drum during a tumbling operation for a user defined period of time;

maintaining a moisture and temperature level within the tumbling drum at a predetermined level;

coating the parts with the sprayed brazing flux with a uniform thickness up to 0.015 in (0.381 mm) thick while maintaining the coating thickness within a 2% deviation of a targeted thickness, wherein the brazing flux coating is configured to melt and separate from the preform during the brazing operation;

tumbling the parts following the user defined period of time; and

curing the brazing flux to a desired hardness within the tumbling drum with the maintained moisture and temperature level.

19. The method of applying a brazing flux coating on a plurality of parts for a brazing operation of claim 17 , further comprising:

mixing an iso-butyl methacrylate polymer with the brazing flux; and

mixing a polyethylene carbonate with the binder.

20. A method of applying a brazing flux coating on a plurality of parts comprising:

preparing the plurality of parts from a metal alloy into a preform in the shape of at least one of a ring, helix, triangle, and other geometric shape;

adding an acrylic resin binder to the flux coating;

preventing a moisture from ambient air from being absorbed by the flux coating by sealing the flux coating at all times prior to a spraying operation;

spraying the brazing flux from at least one nozzle with an opening of 0.05 in (1.27 mm) to 0.08 in (2.032 mm);

tumbling the parts for a user defined period of time within a tumbling drum;

coating the parts with the sprayed brazing flux to a uniform thickness, wherein the brazing flux coating is configured to melt and separate from the preform during the brazing operation;

curing the brazing flux to a desired hardness by circulating an atmosphere within the tumbling drum with exhaust ducts;

maintaining the uniform thickness within at least one of 2% of a desired thickness; and

adhering 85% to 95% of the sprayed flux to the parts.

Assignments (3)
CONVERSION Recorded Aug 5, 2025
From: LUCAS-MILHAUPT, INC.
To: LUCAS-MILHAUPT, LLC
Reel/Frame 072321/0624 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2025
From: JOSSICK, DANIEL J.
To: LUCAS-MILHAUPT, INC.
Reel/Frame 071498/0169 →
SECURITY INTEREST Recorded Nov 25, 2014
From: ARLON LLC; HANDY & HARMAN; HANDYTUBE CORPORATION; KASCO CORPORATION; LUCAS-MILHAUPT, INC.; OMG, INC.; PAM FASTENING TECHNOLOGY, INC.
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 034258/0200 →
Continuity (2)
Provisional Application 61829109 · May 30, 2013
Related Publication 20140374469A1 · Dec 25, 2014