IP Library › Granted Patent US 8,887,533
Granted Patent B2
US 8,887,533 · App. 13/763,819 · Granted Nov 18, 2014

Apparatus and method for controlling moisture in the manufacture of glass fiber insulation

Inventors: Timothy J. Johnson (Pataskala, OH); David R. Mirth (Reynoldsburg, OH); Michael Timothy Pellegrin (Newark, OH); Frank Bruce Inglis (Richmond Hill, CA); Terry Burn (Kansas City, MO)
Assignee: Owens Corning Intellectual Capital, LLC
D04H1/642C03B37/10C03C25/26D04H13/008D04H1/4226
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Quick Facts
Patent No.
US 8,887,533
App. No.
13/763,819
Granted
Nov 18, 2014
Kind
B2
Abstract

Apparatus, systems and methods for monitoring and controlling the amount of moisture introduced into the forming hood area in the manufacture of mineral fiber insulation products. Moisture from coolant liquids, binder dispersions and binder diluents are all introduced deliberately into a forming hood; ambient moisture and water from combustion are additional sources. A series of global variable control valves, one for each fluid system; as well as individual variable control valves for each fiberizing unit are provided with associated meters. Sensors monitor fibrous pack conditions and ambient conditions and provide inputs to the valve control system. A specific 3-ring liquid dispensing system is also disclosed.

Claims (54)

1. A manufacturing system for making a fibrous product, the system comprising:

a plurality of fiberizing arrangements associated with a conveyor movable in a machine direction, each fiberizing arrangement comprising:

a fiberizer configured to form fibers from a source of molten material;

a blower configured to direct the fibers from the fiberizer toward the conveyor;

a coolant fluid dispenser configured to spray the fibers with a coolant to cool the fibers;

a plurality binder dispensers configured to atomize a binder dispersion and spray cooled fibers with the atomized binder dispersion;

a controller programmed to adjust flow to at least one of said binder dispensers to provide atomized binder dispersion fluid droplets that are a different size than atomized binder dispersion fluid droplets provided by at least one other binder dispenser.

2. The manufacturing system of claim 1 wherein the controller is programmed to provide flow to a first binder dispenser to provide atomized binder dispersion fluid droplets that are larger than atomized binder dispersion fluid droplets provided by at least one other binder dispenser that is downstream of the first binder dispenser.

3. The manufacturing system of claim 1 wherein the coolant liquid is water.

4. The manufacturing system of claim 1 wherein the controller is programmed to control the flow rate of the sprayed coolant liquid such that the coolant liquid is maintained in the range of about 44% to about 60% of total liquids applied to the fibers.

5. The manufacturing system of claim 1 further comprising an oven for curing the binder in the pack.

6. The manufacturing system of claim 1 wherein the binder dispenser of each fiberizing arrangement comprises a plurality of binder spray rings.

7. The manufacturing system of claim 1 wherein the coolant fluid dispenser of each fiberizing arrangement comprises a plurality of coolant spray rings and the controller is programmed to provide flow to two or more of the coolant fluid spray rings spray coolant fluid at different flow rates.

8. A manufacturing system for making a fibrous product, the system comprising:

a plurality of fiberizing arrangements associated with a conveyor movable in a machine direction, each fiberizing arrangement comprising:

a fiberizer configured to form fibers from a source of molten material;

a blower configured to direct the fibers from the fiberizer toward the conveyor;

a plurality of coolant fluid dispensers configured to atomize a coolant fluid and spray the fibers with the atomized coolant to cool the fibers;

a binder dispenser configured to spray the cooled fibers with a binder dispersion;

a controller programmed to adjust flow to at least one of said coolant fluid dispensers to provide atomized coolant fluid droplets that are a different size than atomized coolant fluid droplets provided by at least one other coolant fluid dispenser.

9. The manufacturing system of claim 8 wherein the controller is programmed to provide flow to a first coolant dispenser to provide atomized coolant fluid droplets that are larger than atomized coolant fluid droplets provided by at least one other coolant fluid dispenser that is downstream of the first coolant fluid dispenser.

10. The manufacturing system of claim 8 wherein the coolant liquid is water.

11. The manufacturing system of claim 10 wherein the controller controls the flow rate of the sprayed coolant liquid such that the coolant liquid is maintained in the range of about 44% to about 60% of total liquids applied to the fibers.

12. The manufacturing system of claim 8 further comprising an oven for curing the binder in the pack.

13. The manufacturing system of claim 8 wherein the binder dispenser of each fiberizing arrangement comprises a plurality of binder spray rings and the controller is programmed to provide flow to two or more of the binder spray rings to spray binder at different flow rates.

14. The manufacturing system of claim 8 wherein the coolant fluid dispenser of each fiberizing arrangement comprises a plurality of coolant spray rings.

15. A manufacturing system for making a fibrous product, the system comprising:

a plurality of fiberizing arrangements associated with a conveyor movable in a machine direction, each fiberizing arrangement comprising:

a fiberizer configured to form fibers from a source of molten material;

a blower configured to direct the fibers from the fiberizer toward the conveyor;

a first coolant fluid dispensing ring;

a controller programmed to adjust flow to the first coolant fluid dispensing ring to atomize coolant fluid to form coolant fluid droplets that are a first size and spray the fibers with the atomized coolant fluid droplets having the first size to cool the fibers;

a second coolant fluid dispensing ring;

wherein the controller is programmed to adjust flow to the second coolant fluid dispensing ring to atomize coolant fluid to form coolant fluid droplets that are a second size and spray the fibers with the atomized coolant fluid droplets having the second size to cool the fibers, wherein said first size is different than said second size;

a binder dispenser configured to spray the cooled fibers with a binder dispersion.

16. The manufacturing system of claim 15 wherein the controller controls the binder dispenser to control the flow rate of the binder dispersion.

17. The manufacturing system of claim 15 wherein the coolant liquid is water.

18. The manufacturing system of claim 17 wherein the controller controls the flow rate of the sprayed coolant liquid such that the coolant liquid is maintained in the range of about 44% to about 60% of total liquids applied to the fibers.

19. The manufacturing system of claim 15 further comprising an oven for curing the binder in the pack.

20. The manufacturing system of claim 15 wherein the binder dispenser of each fiberizing arrangement comprises a plurality of binder spray rings and the controller is programmed to provide flow to two or more of the binder spray rings spray binder at different flow rates.

21. The manufacturing system of claim 15 wherein the first coolant fluid dispensing ring is controlled by the controller to spray the coolant fluid at a different flow rate than the second coolant fluid dispensing ring.

22. A manufacturing system for making a fibrous product, the system comprising:

a plurality of fiberizing arrangements associated with a conveyor movable in a machine direction, each fiberizing arrangement comprising:

a fiberizer configured to form fibers from a source of molten material;

a blower configured to direct the fibers from the fiberizer toward the conveyor;

a coolant fluid dispenser configured to spray the fibers with a coolant to cool the fibers;

a first binder dispensing ring;

a controller programmed to adjust flow to the first binder dispensing ring to atomize binder dispersion to form binder dispersion droplets that are a first size and spray the fibers with the atomized binder dispersion droplets having the first size;

a second binder dispensing ring;

a controller programmed to adjust flow to the second binder dispensing ring to atomize binder dispersion to form binder dispersion droplets that are a second size and spray the fibers with the atomized binder dispersion droplets having the second size, wherein said first size is different than said second size.

23. The manufacturing system of claim 22 wherein the controller controls the coolant fluid dispenser to control the flow rate of the sprayed coolant liquid.

24. The manufacturing system of claim 22 wherein the coolant liquid is water.

25. The manufacturing system of claim 24 wherein the controller controls the flow rate of the sprayed coolant liquid such that the coolant liquid is maintained in the range of about 44% to about 60% of total liquids applied to the fibers.

26. The manufacturing system of claim 22 further comprising an oven for curing the binder in the pack.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2013
From: JOHNSON, TIMOTHY J.; MIRTH, DAVID R.; PELLEGRIN, MICHAEL TIMOTHY; INGLIS, FRANK BRUCE; BURN, TERRY
To: OWENS CORNING INTELLECTUAL CAPITAL, LLC
Reel/Frame 029971/0603 →
Continuity (3)
Division 13313109 · Dec 7, 2011
Provisional Application 61421306 · Dec 9, 2010
Related Publication 20130152638A1 · Jun 20, 2013