Sound absorption laminate

5459291
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Inventors

Haines, James C.
Fay, Ralph M.

Application #

224600

Filed

Apr-7-1994

Published

Oct-17-1995

Current US Class

181/286
181/291
181/294

International Classes

E04B 001/82

Field of Search

181/286 181/290 181/291 181/292 181/293 181/294 428/190

Assignee

Schuller International, Inc. (Denver, CO)

Examiners

Dang; Khanh

Attorney, Agent or Firm

Quinn; Cornelius P.

US Patent References

3972383   Sound absorption w...
3985198   Sound deadening l...
4076100   Oil impervious aco...
4097633   Perforated, emboss...
4111081   Low non-linearity f...
4129672   Auto ceiling panel...
4253543   Device for absorpti...
4301890   Sound-absorbing p...
4347912   Airborne-sound-ab...
4450195   Hygienic absorbent...
4615411   Sound-insulated flo...
4729917   Method and lamin...
4782913   Constructional ele...
4838380   Nylon impression f...
5149920   Acoustical panel a...
 

Referenced by:

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Citation

Cite This Patent

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Abstract
A sound absorption laminate comprises a porous insulation substrate, such as, a thermoplastic glass or polymeric fiber blanket or a foamed polymeric resin sheet and a facing sheet with a high air flow resistance. The facing sheet is adhered to a surface of the porous insulation substrate to augment the acoustical properties of the substrate. With the facing sheet the air flow resistance of the laminate is greater than the air flow resistance of the substrate and the laminate exhibits a higher sound absorption coefficient than the sound absorption coefficient of the substrate. Thus, the laminate exhibits better sound absorption properties than the substrate and is suitable for sound absorption applications for which the substrate alone would not be suitable.
 
Claims
What is claimed is:

1. A sound absorption laminate comprising:

a porous insulation substrate; said porous insulation substrate having an air flow resistance, an acoustic resistance ratio, and a sound absorption coefficient; said acoustic resistance ratio of said porous insulation substrate being less than an optimum acoustic resistance ratio for said porous insulation substrate to provide optimum sound absorption at a given frequency;

a thin, permeable facing sheet having an air flow resistance; said thin, permeable facing sheet being adhesively bonded to a surface of said porous insulation substrate to form a sound absorption laminate having an air flow resistance, an acoustic resistance ratio, and a sound absorption coefficient; the air flow resistance of said sound absorption laminate being greater than the air flow resistance of said porous insulation substrate; the acoustic resistance ratio of said sound absorption laminate being greater than the acoustic resistance ratio of said porous insulation substrate and no greater than the optimum acoustic resistance ratio for said frequency; and the sound absorption coefficient of said sound absorption laminate being greater than the sound absorption coefficient of said porous insulation substrate for said frequency.



Description
BACKGROUND OF THE INVENTION

The present invention relates to the use of facings, having high air flow resistances, to enhance the sound absorption properties of certain porous insulation materials and especially, those insulation materials having low air flow resistances. By laminating the high air flow resistance facings to these particular porous insulation materials, these porous insulation materials exhibit sound absorption characteristics normally provided by more costly fibrous insulation materials of greater thickness, higher bulk density and/or smaller average fiber diameter and foam insulation materials having smaller cells and pores.

Porous insulation materials such as thermoplastic glass or polymeric fiber blankets and polymeric foams are used in many applications to enhance the sound absorption performance of various products and systems. Typical applications include: acoustical wall panels, ceiling panels and office partitions; automotive headliners and hoodliners; liners for heating, ventilating and air conditioning systems; appliance insulation; and similar applications.
 
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