IP Library Granted Patent US 8,273,201
Granted Patent B2
US 8,273,201 · App. 11/314,704 · Granted Sep 25, 2012

Process for the production of a wood fiber insulating material board or mat and wood fiber insulating material boards or mats produced by this process

Assignee: Kronotic AG
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 8,273,201
App. No.
11/314,704
Granted
Sep 25, 2012
Kind
B2
Abstract

A fiber mixture of natural fibers and binder fibers are blown from a storage container onto a first transport belt with a three-dimensional alignment of the fibers resulting in a fiber fleece. Thermally activatable synthetic resin granules are blown onto the fiber fleece and the fleece is defibered and remixed. The remixed fiber mixture is blown onto a second transport belt with a three-dimensional alignment of the fibers resulting in a mat. The thickness of the mat is obtained by the circulating speed of the second transport belt. The mat is transferred to an oven belt and is moved through a heating/cooling oven, for softening of the binder fibers and the synthetic resin granules, resulting in an intimate bonding of the wood fibers, the binder fibers, and the synthetic resin granules. The final thickness and the bulk density are set to specified ranges.

Claims (82)

1. A process for producing wood fiber insulating material boards and mats, which comprises the steps of:

introducing natural fibers and binder fibers from bale openers uniformly through separate weighing devices disposed downstream of the bale openers into a blow line in a desired mixing ratio and supplied pneumatically through the blow line to a storage container resulting in a fiber mixture, wherein the natural fibers include wood fibers;

blowing the fiber mixture from the storage container onto a first transport belt with a three-dimensional alignment of the fibers resulting in a fiber fleece;

scattering thermally activatable synthetic resin granules, obtained during a recycling of plastic parts, onto the fiber fleece and being distributed uniformly over an entire width;

defibering the fiber fleece at an end of the first transport belt;

remixing the fiber fleece once again resulting in a remixed fiber mixture;

blowing the remixed fiber mixture onto a second transport belt with a three-dimensional alignment of the fibers resulting in a mat;

obtaining a given thickness of the mat by setting a circulating speed of the second transport belt;

transferring the mat to an oven belt and moving the mat through a heating/cooling oven, for softening of the binder fibers and the synthetic resin granules, resulting in an intimate bonding of the wood fibers, the binder fibers, and the synthetic resin granules; and

setting a final thickness of the wood fiber insulating material boards or mats to a range of 3 to 350 mm by calibration and/or compaction and setting a bulk density of the mat to a range of 20 to 300 kg/m 3 .

2. The process according to claim 1 , which further comprises setting a ratio of the binder fibers to the natural fibers to lie in the range of from 5/95 to 20/80.

3. The process according to claim 1 , which further comprises:

in addition to the wood fibers, selecting the natural fibers from the group consisting of flax, hemp, and sisal; and

supplying the natural fibers to the blow line via separate bale openers with a weighing device disposed downstream.

4. The process according to claim 1 , which further comprises:

providing the wood fibers and other natural fibers as the natural fibers; and

providing the other natural fibers to constitute up to 30% of the natural fibers.

5. The process according to claim 1 , wherein the thermally activatable synthetic resin granules forming 5 to 45% the fiber mixture.

6. The process according to claim 1 , which further comprises setting the final thickness of the mat being an endless mat on the second transport belt to lie between 3 and 350 mm.

7. The process according to claim 1 , which further comprises setting a heating zone in the heating/cooling oven to have a temperature of 130 to 200° C.

8. The process according to claim 1 , which further comprises:

immediately after heating of the mat in the heating/cooling oven, carrying out the calibration and/or compaction to the final thickness; and

subsequently cooling the mat.

9. The process according to claim 1 , which further comprises:

comminuting waste accumulating during seaming and dividing up of the mat to desired final dimensions; and

depositing comminuted waste in a storage container.

10. The process according to claim 1 , which further comprises setting the final thickness to a range of 4 to 250 mm.

11. The process according to claim 1 , which further comprises using wood fibers for all of the natural fibers.

12. The process according to claim 1 , which further comprises setting the ratio of the binder fibers to the natural fibers to be 10/90.

13. The process according to claim 1 , which further comprises:

providing the wood fibers and flax fibers as the natural fibers;

setting the final thickness to a range of 80 to 250 mm; and

setting a bulk density of the mat to a range of 25 to 50 kg/m 3 .

14. The process according to claim 1 , which further comprises:

setting the final thickness to a range of 3 to 8 mm;

setting the bulk density of the mat to a range of 150 to 280 kg/m 3 ;

adding a proportion of synthetic resin granules to the fiber fleece;

slightly compacting the mat in the heating/cooling oven; and

forming the mat as a wood fiber insulating mat for parquet or laminated floors.

15. The process according to claim 1 , which further comprises:

setting the final thickness to a range of 8 to 15 mm;

setting a bulk density of the mat to a range of 130 to 220 kg/m 3 ;

adding a proportion of synthetic resin granules to the fiber fleece;

providing a profiled woven fabric fleece as the layering material applied to one side of the mat obtained on the second transport belt;

forming the mat as a wood fiber insulating material board for use as an underlay board in dry construction; and

compacting the mat in the heating/cooling oven.

16. The process according to claim 1 , which further comprises:

forming the mat as a wood fiber above-rafter insulating board;

setting the final thickness to a range of 60 to 160 mm;

setting a bulk density of the mat to a range of 70 to 150 kg/m 3 ;

adding a proportion of synthetic resin granules to the fiber fleece; and

compacting the mat in the heating/cooling oven.

17. The process according to claim 1 , which further comprises:

forming the mat as a wood fiber above-rafter insulating board;

setting the final thickness to a range of 60 to 160 mm;

setting a bulk density of the mat to a range of 70 to 150 kg/m 3 ;

adding a proportion of synthetic resin granules to the fiber fleece;

providing the layering material as a moisture-repellent film laid on a first side of the mat formed on the second transport belt and a woven fleece laid on a second side; and

compacting the mat in the heating/cooling oven with simultaneous joining of the film or the woven fleece applied.

18. The process according to claim 1 , which further comprises:

forming the mat as a wood fiber thermal insulation composite system load-bearing board;

setting the final thickness to a range of 60 to 200 mm;

setting a bulk density of the mat to range of 80 to 150 kg/m 3 ;

adding a proportion of synthetic resin granules to the fiber fleece; and

forcibly compacting the mat being an endless mat in the heating/cooling oven.

19. The process according to claim 1 ,

forming the mat to be a wood fiber insulating board secure against passage;

setting the final thickness to a range of 15 to 60 mm;

setting a bulk density of the mat to a range of 170 to 270 kg/m 3 ;

adding a proportion of synthetic resin granules to the fiber fleece; and

very forcibly compacting the mat being an endless mat in the heating/cooling oven.

20. The process according to claim 1 , which further comprises:

forming the mat as a wood fiber insulating board secure against passage;

setting the final thickness to a range of 15 to 60 mm;

setting a bulk density of the mat to a range of 170 to 270 kg/m 3 ;

adding a high proportion of synthetic resin granules to the fiber fleece;

applying the layering material as a structured fiber nonwoven to one side of the mat being an endless mat; and

very forcibly compacting the endless mat in the heating/cooling oven.

21. The process according to claim 1 , which further comprises laying a layering material selected from the group consisting of fiber nonwovens, woven fiber fabrics and films on at least one or both sides of the mat.

22. The process according to claim 21 , which further comprises forming the fiber nonwovens or the woven fiber fabrics laid on one or both sides from organic fibers, inorganic fibers or natural fibers.

23. The process according to claim 21 , which further comprises forming the films from cellulose or plastic.

24. The process according to claim 21 , which further comprises forming the fiber nonwovens, the woven fiber fabrics or the films to be at least one of structured, perforated and colored.

Assignments (2)
CHANGE OF NAME Recorded Oct 21, 2016
From: KRONOTEC AG
To: SWISS KRONO TEC AG
Reel/Frame 040085/0491 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2012
From: MARC POHLMANN, CEVIN
To: KRONOTIC AG
Reel/Frame 028270/0025 →
Priority Claims (1)
DE 10 2004 062 649 · Dec 21, 2004 · national
Continuity (1)
Related Publication 20060143869A1 · Jul 6, 2006