IP Library › Granted Patent US 7,780,816
Granted Patent B2
US 7,780,816 · App. 10/963,349 · Granted Aug 24, 2010

Fibrous insulation with fungicide

Assignee: CertainTeed Corporation
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Quick Facts
Patent No.
US 7,780,816
App. No.
10/963,349
Granted
Aug 24, 2010
Kind
B2
Abstract

A fibrous insulation has insulation fibers ( 104 ) with a fungicide in a dispersed additive affixed to the fibers ( 104 ), and a method of making a fibrous insulation by dispersing a fungicide and a dispersed additive on the fibers ( 104 ) followed by affixing the dispersed additive on the fibers ( 104 ). The method produces thermal, acoustic, duct liner or board insulation either as loose fill insulation or as an insulation mat.

Claims (43)

1. A method of making fibrous insulation, comprising:

forming a plurality of newly formed insulation fibers at a forming stage;

followed by dispersing a fungicide without a binder among the newly formed insulation fibers at the forming stage;

accumulating the newly formed insulation fibers; and

chopping the newly formed insulation fibers into pieces to provide a loose fill fibrous insulation treated with fungicide.

2. The method of claim 1 , further comprising: compacting and packaging the loose fill fibrous insulation treated with fungicide.

3. A method of making fibrous insulation, comprising:

chopping insulation fibers into pieces;

conveying the pieces of insulation fibers along a transport duct;

dispersing a fungicide without a binder among the pieces of insulation fibers; and

accumulating the pieces of insulation fibers to provide a loose fill fibrous insulation treated with fungicide.

4. The method of claim 3 , further comprising: compacting and packaging the loose fill fibrous insulation treated with fungicide.

5. A method of making fibrous insulation, comprising:

dispersing a fungicide among a plurality of insulation fibers by dispersing the fungicide through nozzles and among the plurality of insulation fibers as the insulation fibers flow through a ring;

followed by dispersing an additive having a binder content throughout the insulation fibers to combine the dispersed additive with the dispersed fungicide, wherein the binder content is increased relative to concentration of the dispersed fungicide to compensate for loss of binder strength in the combined binder content and dispersed fungicide; and

affixing the dispersed binder content on the fibers by physical, chemical or electrostatic interaction with the fibers.

6. The method of claim 5 , comprising:

accumulating the fibers to form loose fill fibers having the additive and the fungicide dispersed among the fibers.

7. The method of claim 5 , comprising:

accumulating the fibers to form a mat having the additive and the fungicide dispersed among the fibers.

8. The method of claim 5 , comprising:

adding the fungicide to overspray water before dispersing the fungicide among the insulation fibers; and

dispersing the fungicide among the insulation fibers by overspraying the insulation fibers with the fungicide and the overspray water through the nozzles.

9. The method of claim 5 , comprising:

adding the fungicide to an emulsifier before dispersing the fungicide among the insulation fibers, wherein the emulsifier stabilizes dispersal of the fungicide among the insulation fibers; and

dispersing the fungicide among the insulation fibers by spraying the insulation fibers with the fungicide and the emulsifier through the nozzles.

10. A method of making fibrous insulation, comprising:

dispersing a fungicide among a plurality of insulation fibers by dispersing the fungicide through nozzles and among the plurality of insulation fibers as the insulation fibers flow through a ring;

dispersing water through the nozzles to cool the fibers;

followed by dispersing an additive having a binder content throughout the insulation fibers to combine the dispersed additive with the dispersed fungicide, wherein the binder content is increased relative to concentration of the dispersed fungicide to compensate for loss of binder strength in the combined binder content and dispersed fungicide; and

affixing the dispersed binder content on the fibers by physical, chemical or electrostatic interaction with the fibers.

11. A method of making fibrous insulation, comprising:

dispersing a fungicide among a plurality of insulation fibers by dispersing the fungicide through nozzles and among the plurality of insulation fibers as the insulation fibers flow through a duct;

followed by dispersing an additive having a binder content throughout the insulation fibers to combine the dispersed additive with the dispersed fungicide, wherein the binder content is increased relative to concentration of the dispersed fungicide to compensate for loss of binder strength in the combined binder content and dispersed fungicide; and

affixing the dispersed binder content on the fibers by physical, chemical or electrostatic interaction with the fibers.

12. A method of making fibrous insulation, comprising:

dispersing a fungicide among a plurality of insulation fibers by dispersing the fungicide through first nozzles and among the plurality of insulation fibers as the insulation fibers are mixed in a mixer;

followed by dispersing an additive having a binder content throughout the insulation fibers by dispersing the additive through second nozzles and among the plurality of insulation fibers in the mixer to combine the additive with the fungicide among the insulation fibers in the mixer and to combine the dispersed additive having the binder with the dispersed fungicide, wherein the binder content is increased relative to concentration of the dispersed fungicide to compensate for loss of binder strength in the combined binder content and dispersed fungicide; and

affixing the dispersed binder content on the fibers by physical, chemical or electrostatic interaction with the fibers.

13. A method of making fibrous insulation, comprising:

dispersing a fungicide among a plurality of insulation fibers by dispersing the fungicide through first nozzles and among the plurality of insulation fibers as the insulation fibers flow through a first ring;

followed by dispersing an additive having a binder content throughout the insulation fibers by dispersing the additive comprising the binder through second nozzles and among the plurality of insulation fibers as the insulation fibers flow through a second ring to combine the dispersed additive having the binder with the dispersed fungicide, wherein the binder content is increased relative to concentration of the dispersed fungicide to compensate for loss of binder strength in the combined binder content and dispersed fungicide; and

affixing the dispersed binder content on the fibers by physical, chemical or electrostatic interaction with the fibers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2005
From: TOAS, MURRAY A.; HERAULT, PIERRE C.; MOYER, SANFORD S.; MICHETTI, JOSEPH A.
To: CERTAINTEED CORPORATION
Reel/Frame 016773/0705 →
Continuity (1)
Related Publication 20060078720A1 · Apr 13, 2006