IP Library Patent Application 15910547
Patent Application
App. No. 15/910,547

ENHANCED ICE PEEL RESISTANCE/NON-WOVEN MOLDABLE COMPOSITE SYSTEMS WITH ADDED SOUND ACOUSTICAL PROPERTIES

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Quick Facts
Patent No.
US None
App. No.
15/910,547
Abstract

A nonwoven laminate is provided having multi-purposes. One embodiment is an A-layer having a high surface tension factor to prevent water absorption and can be used for fender liners or underbody surfaces of motor vehicles to prevent water from absorbing into the material as well as ice accumulation. The water resistant properties are the result of utilizing a newly engineered hydrophobic PET (H-PET) fiber. Another embodiment, useable alone or in combination with the A-layer is a B-layer that has hollow multi-lobe cross-sectional fibers to provide enhanced sound absorption properties. One or both layers have thermo-moldable characteristics that allow them to be shaped into a specific geometry. In this case, the low melt fibers provided in one or both layers are “fused” and interlock or bridge together to yield a rigid nonwoven water/ice resistant and/or sound absorbing composite.

Claims (35)

1 . A surface water resistant component, comprising

a blend of hydrophobic polyester fiber and low melt fibers that have melting temperatures in a range of 110 C to 200 C, the hydrophobic polyester fiber including polyester and a polyalkylsiloxane based chemistry or perfluorinated based chemistry additive, the blend of hydrophobic polyester fiber and low melt fibers being compression molded at a temperature in the range of 110 C to 200 C.

2 . The surface water resistant component of claim 1 , wherein the polyalkylsiloxane based chemistry or perfluorinated based chemistry additive is pre-compounded with PBT (polybutylene terephthalate) to form a master batch compound.

3 . The surface water resistant component of claim 2 , wherein the master batch compound includes 60% to 90% PBT and 10% to 40% of the polyalkylsiloxane based chemistry or perfluorinated based chemistry additive.

4 . The surface water resistant component of claim 3 , wherein the perfluorinated based chemistry additive is used.

5 . The surface water resistant component of claim 4 , wherein the master batch compound includes about 80% PBT and about 20% of the perfluorinated based chemistry additive.

6 . The surface water resistant component of claim 1 , wherein the hydrophobic polyester fiber is from 1.5 denier to 5.0 denier, and the low melt fiber is from 1.5 denier to 5.0 denier.

7 . The surface water resistant component of claim 1 , wherein there are 25% to 65% of the hydrophobic polyester fibers and from 75% to 35% of the low melt fibers.

8 . The surface water resistant component of claim 1 , further comprising polyolefin fibers.

9 . The surface water resistant component of claim 1 , further comprising a B-layer, the blend of hydrophobic polyester fiber and low melt fibers forming an A-layer that is a surface layer, and the B-layer including a blend of hollow, multi-lobed polyester fibers and additional low melt fibers.

10 . The surface water resistant component of claim 9 , further comprising a membrane barrier/sound attenuation layer located between the A-layer and the B-layer.

11 . The surface water resistant component of claim 9 , wherein the hollow, multi-lobed polyester fibers are formed of polyethylene terephthalate (PET).

12 . The surface water resistant component of claim 9 , wherein the hollow, multi-lobed polyester fibers are between 2 and 6 denier.

13 . The surface water resistant component of claim 9 , wherein the A-layer is about 150 gsm to 300 gsm.

14 . The surface water resistant component of claim 9 , wherein the component is an underbody, dash insulator fabrics, or fender/wheel-well liner component and is between 600 gsm to 1200 gsm.

15 . A method of manufacturing a surface water resistant component from a non-woven fiber blend, comprising:

blending a polyester resin with a hydrophobic master batch compound that includes a hydrophobic melt additive including a polyalkylsiloxane based chemistry or perfluorinated based chemistry hydrophobic ingredient,

melt spinning hydrophobic fibers, heating the fibers in a drawing stage to cause the hydrophobic melt additive to migrate to a surface of the fibers,

blending the hydrophobic fibers with low melt fibers to form a blend of hydrophobic fibers and low melt fibers, and

compression molding the blend of hydrophobic fibers and low melt fibers at a temperature above a melting point of the low melt fibers to form the component.

16 . The method according to claim 15 , further comprising needling the blend of hydrophobic fibers and low melt fibers to form a non-woven felt prior to the compression molding.

17 . The method according to claim 16 , further comprising attaching a second, sound attenuating layer formed of a blend of hollow, multi-lobed polyester fibers and additional low melt fibers to the non-woven felt prior to compression molding.

18 . A sound attenuating component, comprising

a blend of hollow, multi-lobed polyester fibers and low melt fibers that have melting temperatures in a range of 110 C to 200 C, the blend of hollow, multi-lobed polyester fibers and low melt fibers being compression molded at a temperature in the range of 110 C to 200 C.

19 . The sound attenuating component of claim 18 , wherein the multi-lobed polyester fibers have at least one of a 2, 4 or 6 denier and a cut length of 51 mm or 76 mm.

20 . The sound attenuating component of claim 18 , wherein the low melt fibers comprise monofilaments or a bi-component filament having a core.

21 . The sound attenuating component of claim 18 , wherein he low melt fibers comprise at least one of: a polyolefin fiber, a polypropylene fiber, a polyethylene fiber, a polypropylene fiber, a co-polyester fiber, a polyethylene terephthalate glycol-modified fiber, or a CoPET fiber using cyclohexane dimethanol (CHDM) monomer.

22 . A method of forming a hydrophobic polyester fiber, comprising:

blending a polyester resin with a hydrophobic master batch compound that includes a hydrophobic melt additive including a polyalkylsiloxane based chemistry or perfluorinated based chemistry hydrophobic ingredient,

melt spinning hydrophobic fibers, and

heating the fibers in a drawing stage to cause the hydrophobic melt additive to migrate to a surface of the fibers.

23 . The method of claim 22 , further comprising:

pre-compounding the polyalkylsiloxane based chemistry or perfluorinated based chemistry additive with PBT (polybutylene terephthalate) to form a master batch compound.

24 . The method of claim 22 , wherein the perfluorinated based chemistry additive is used.

25 . The method of claim 22 , wherein the hydrophobic polyester fibers are from 1.5 denier to 5.0 denier.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 4, 2018
From: FOSS PERFORMANCE MATERIALS, LLC
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 047007/0615 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2018
From: MEDEIROS, PAUL J.; MARCINISZN, ADAM
To: FOSS PERFORMANCE MATERIALS, LLC
Reel/Frame 045092/0116 →