IP Library › Granted Patent US 10,190,312
Granted Patent B2
US 10,190,312 · App. 15/306,847 · Granted Jan 29, 2019

Sound absorbing material, a method for production of the same and device for cutting apertures in the sound absorbing material

Inventors: Bjorn Andre Flotre (Trondheim, NO); Silvia Elena Cirstea (Cambridgeshire, GB); Edwin Robert Toulson (Cambridgeshire, GB)
E04B1/8409G10K11/162G10K11/168E04B9/001E04B2001/8263E04B2001/848E04B2001/8452E04B2001/8461
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Quick Facts
Patent No.
US 10,190,312
App. No.
15/306,847
Granted
Jan 29, 2019
Kind
B2
Abstract

Sound absorbing material for use in rooms inside buildings. The material comprises a continuous polymeric film ( 11 ) having smooth surfaces, said film having a thickness (t) of about 0.1 to 0.3 mm. The film is provided with numerous substantially parallel discontinuous microslits ( 12 ) with a degree of perforation of from 0.3-3%. The microslits are cut with laser devices to produce a highly smooth and level surface. The film is tensioned in a frame ( 16 ) with a level film surface or curved film surface.

Claims (18)

1. A sound absorbing material suitable for use in rooms inside buildings for absorbing sound, said sound absorbing material comprising:

a continuous substantially translucent polymeric film ( 11 ) arranged with a fastening device ( 15 ), said film having smooth surfaces, with a thickness (t) of about 0.1-0.3 mm and provided with numerous discontinuous laser cut microslits ( 12 ) with a degree of perforation of from 0.3-10%, said microslits ( 12 ) exhibiting a length (L) of about 10-20 mm and a width (d) of about 0.05 to 0.15 mm, microslit arranged in a substantially parallel pattern, wherein the mutual distance (b) between substantially parallel adjacent slits is about 4-8 mm and the distance (s) between the short ends of adjacent slits ( 12 ) is about 10-20 mm wherein the film ( 11 ) is attached to a curved frame and tensioned to form an uneven curved film surface.

2. The sound absorbing material of claim 1 , wherein the fastening device ( 15 ) is a continuous frame ( 15 ) surrounding substantially the whole periphery of the film ( 11 ), wherein the film is tensioned within the frame.

3. The sound absorbing material of claim 1 , wherein the film ( 11 ) thickness (t) is about 0.2 mm.

4. The sound absorbing material of claim 1 , wherein the slit width (d) typically is about 100 μm.

5. The sound absorbing material of claim 1 , wherein the slit ( 12 ) length (L) is about 15 mm.

6. The sound absorbing material of claim 1 , wherein the mutual distance (b) between substantially parallel slits ( 12 ) is about 6 mm.

7. The sound absorbing material of claim 1 , wherein the distance (s) between adjacent slits ( 12 ) in their longitudinal direction is about 15 mm.

8. The sound absorbing material of claim 1 , wherein the polymeric material is selected from the group consisting of PP, PE, PC and PS.

9. The sound absorbing material of claim 1 , wherein the film is made of polypropylene comprising a halogen-free flame retardant containing calcium hydrophosphite as the main component.

10. A method of assembly of the sound absorbing material of claim 1 comprising:

a) providing a sheet of the sound absorbing material;

b) providing numerous mounting devices;

c) tensioning the sound absorbing material within said mounting devices and affixing the sound absorbing material to the mounting devices; and

d) attaching the mounting devices and sound absorbing material at a distance (D) from an object in the building.

11. The method of claim 10 , wherein the distance (D) is about 50-200 mm, particularly about 100 mm.

12. The method of claim 10 , wherein several sound absorbing material layers are arranged on top of each other.

13. The method of claim 10 , wherein the sound absorbing material is mounted to a substantially vertical object, with its microslits arranged with their longitudinal axis in a substantially vertical direction.

Priority Claims (1)
NO 20140549 · Apr 29, 2014 · national
Continuity (1)
Related Publication 20170044761A1 · Feb 16, 2017