IP Library Patent Application 17515182
Patent Application
App. No. 17/515,182

Polyamide Nonwovens in Sound Absorbing Multi-Layer Composites

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Quick Facts
Patent No.
US None
App. No.
17/515,182
Abstract

A sound absorbing multi-layer composite for a vehicle that reduces sounds along an acoustic path is configured with a non-foam polymeric layer and a face layer for dissipating sound energy. Also, the face layer may be made of a nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms. The weighted overall average fiber diameter of the composite is from 2 microns to 25 microns.

Claims (32)

1 . A sound absorbing multi-layer composite for a vehicle that reduces sounds along an acoustic path comprising:

a non-foam polymeric layer having a thickness of at least 1 mm; and

a face layer for dissipating sound energy and made of a nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms, and having at least one surface that is positioned towards to the interior of the vehicle;

wherein the composite is configured to be positioned in the acoustic path so that the sound is at least partially transmitted through the non-foam polymeric layer and at least partially absorbed by the face layer;

wherein the weighted overall average fiber diameter of the composite is from 2 microns to 25 microns.

2 . The composite of claim 1 , wherein the face layer comprises a first layer and a second layer.

3 . The composite of claim 2 , wherein the first layer comprises a melt blown nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms.

4 . The composite of claim 2 , wherein the first layer comprises a spun bond nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms.

5 . The composite of claim 2 , wherein the second layer comprises a melt blown nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms.

6 . The composite of claim 2 , wherein the second layer comprises a spun bond nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms.

7 . The composite of claim 2 , wherein the nonwoven of the first layer has an average fiber diameter from 200 to 900 nm.

8 . The composite of claim 2 , wherein the nonwoven of the second layer has an average fiber diameter from 200 to 900 nm.

9 . The composite of claim 2 , wherein the nonwoven of the first layer has an average fiber diameter that is greater than 1 micron.

10 . The composite of claim 2 , wherein the nonwoven of the second layer has an average fiber diameter that is greater than 1 micron.

11 . The composite of claim 1 , wherein the face layer comprises at least one low reflectivity metal.

12 . The composite of claim 1 , further comprising a yarn for stitching the nonfoam polymeric layer to the face layer.

13 . The composite of claim 1 , wherein the composite has an air permeability of less than 200 cfm/ft 2 .

14 . The composite of claim 1 , wherein the face layer comprises a plurality of roped fiber bundles.

15 . The composite of claim 1 , wherein the face layer has a density of less than 0.2 g/cm 3 .

16 . The composite of claim 1 , wherein the non-foam polymeric layer comprises bulking fibers.

17 . The composite of claim 1 , wherein the non-foam polymeric layer is a non-woven fabric, a woven fabric, a knitted fabric, a film, a paper layer, an adhesive-backed layer, a spun-bonded fabric, a meltblown fabric, or a carded web of staple length fibers.

18 . A sound absorbing multi-layer composite for a vehicle that reduces sounds along an acoustic path comprising:

a non-foam polymeric layer having a thickness of at least 1 mm; and

a face layer for dissipating sound energy, wherein the face layer comprises a first and second layer, the first layer being made of a nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms, having an average fiber diameter that is greater than 1 micron and wherein at least one surface of the second layer is positioned towards the interior of the vehicle;

wherein the composite is configured to be positioned in the acoustic path so that the sound is at least partially transmitted through the non-foam polymeric layer and at least partially absorbed by the face layer;

wherein the weighted overall average fiber diameter of the composite is from 2 microns to 25 microns.

19 . The composite of claim 18 , wherein the second layer is made of a nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms, having an average fiber diameter from 200 to 900 nm.

20 . A component for a vehicle comprising:

a non-foam polymeric layer having a thickness of at least 1 mm; and

a face layer for dissipating sound energy and made of a nonwoven polymer comprising at least 60% of a polyamide containing an aliphatic diamine having 6 or more carbon atoms and an aliphatic diacid having 6 or more carbon atoms, and having at least one surface that is positioned towards the interior of the vehicle,

wherein the weighted overall average fiber diameter of the composite is from 2 microns to 25 microns; and

wherein the component comprises a headliner, trim, panel, or board.

Assignments (2)
SECURITY INTEREST Recorded Dec 8, 2022
From: ASCEND PERFORMANCE MATERIALS OPERATIONS LLC
To: WELLS FARGO CAPITAL FINANCE, LLC
Reel/Frame 062094/0172 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2021
From: ORTEGA, ALBERT; YUNG, WAI-SHING; MENNER, JOSEPH L.
To: ASCEND PERFORMANCE MATERIALS OPERATIONS LLC
Reel/Frame 058386/0297 →