DISCONTINUOUS THERMOFORMABLE COMPOSITE PRODUCTS
Compositions, systems, devices, and methods for making a headliner, e.g., a substrate having a laminated textile laminate or coverstock attached to a surface thereof, are discussed herein. The substrate can include a fabric-foam laminate that is directly attached to the substrate without the use of an adhesive layer. The foam can be flame bonded to the substrate and the textile simultaneously by activating the adhesive properties of the foam. In some embodiments, the headliner does not include a non-woven fabric layer in the manufacturing of the headliner.
1 . A discontinuous thermoformable composite product, comprising:
a polyurethane foam;
a rigid substrate; and
a cover;
wherein the cover is bonded to the polyurethane foam, and wherein the polyurethane foam is directly bonded to the substrate by a first amorphous and porous urethane product of the polyurethane foam without an intervening layer of adhesive.
2 . The discontinuous thermoformable composite product of claim 1 , wherein the first amorphous and porous urethane product is a pyrolytic decomposition product of the polyurethane foam.
3 . The discontinuous thermoformable composite product of claim 1 , wherein the foam is any one of a polyester, polyether, or other polymer-based polyurethane foam.
4 . The discontinuous thermoformable composite product of claim 1 , wherein the foam has a density in a range from about 1.4 pounds per cubic foot to about 4.0 pounds per cubic foot.
5 . The discontinuous thermoformable composite product of claim 1 , wherein the foam has a density in a range from about 1.7 pounds per cubic foot to about 2.2 pounds per cubic foot.
6 . The discontinuous thermoformable composite product of claim 1 , wherein the foam includes one or more reactive polyols that decompose when heated.
7 . The discontinuous thermoformable composite product of claim 1 , wherein the cover is directly bonded to the polyurethane foam by a second amorphous and porous urethane product of the polyurethane foam without an intervening layer of adhesive.
8 . The discontinuous thermoformable composite product of claim 1 , wherein the cover and the polyurethane foam are provided as a cover-to-foam laminated coverstock and wherein the polyurethane foam of the coverstock is directly bonded to the substrate by the first amorphous and porous urethane product of the polyurethane foam without an intervening layer of adhesive.
9 . The discontinuous thermoformable composite product of claim 8 , wherein the cover is directly bonded to the polyurethane foam by a second amorphous and porous urethane product of the polyurethane foam without an intervening layer of adhesive.
10 . The discontinuous thermoformable composite product of claim 1 , wherein the substrate comprises a plurality of materials that are pre-formed into a single piece.
11 . The discontinuous thermoformable composite product of claim 1 , wherein the substrate is a discontinuous glass-filled expanded polypropylene substrate.
12 . The discontinuous thermoformable composite product of claim 1 , wherein the materials of the substrate are thermoformable.
13 . The discontinuous thermoformable composite product of claim 1 , wherein the cover is a textile.
14 . The discontinuous thermoformable composite product of claim 13 , wherein the textile does not include a non-woven fabric layer.
15 . The discontinuous thermoformable composite product of claim 13 , wherein the textile includes a knitted fabric.
16 . The discontinuous thermoformable composite product of claim 15 , wherein the knit fabric weighs less than about 2.2 ounces per square yard.
17 . The discontinuous thermoformable composite product of claim 15 , wherein the knit fabric is a lightweight flat knit fabric.
18 . The discontinuous thermoformable composite product of claim 1 , wherein the discontinuous thermoformable composite product is a pre-laminated thermoformable board.
19 . The discontinuous thermoformable composite product of claim 1 , wherein the discontinuous thermoformable composite product is a component for a vehicle interior.
20 . The discontinuous thermoformable composite product of claim 19 , wherein the component is a vehicle headliner.
21 . A method for manufacturing a discontinuous thermoformable composite product, said method comprising:
providing a rigid substrate;
providing a polyurethane foam;
providing a cover; and
forming a discontinuous thermoformable composite product in which the cover is bonded to the polyurethane foam and the polyurethane foam is directly bonded to the substrate by a first amorphous and porous urethane product of the polyurethane foam without an intervening layer of adhesive, said forming comprising applying energy to the polyurethane foam to create the first amorphous and porous urethane product.
22 . The method of claim 21 , wherein applying energy to the polyurethane foam comprises flame bonding.
23 . The method of claim 21 , wherein applying energy to the polyurethane foam comprises heating the polyurethane foam to a temperature of at least 350 degrees Celsius to decompose reactive polyols contained therein.
24 . The method of claim 21 , wherein the first amorphous and porous urethane product is a pyrolytic decomposition product of the polyurethane foam.
25 . The method of claim 21 , wherein directly bonding the polyurethane foam to the substrate does not occur thermoplastically.
26 . The method of claim 21 , wherein the foam is any one of a polyester, polyether, or other polymer-based polyurethane foam.
27 . The method of claim 21 , wherein the foam has a density in a range from about 1.4 pounds per cubic foot to about 4.0 pounds per cubic foot.
28 . The method of claim 21 , wherein the foam has a density in a range from about 1.7 pounds per cubic foot to about 2.2 pounds per cubic foot.
29 . The method of claim 21 , wherein the foam includes one or more reactive polyols that decompose when heated.
30 . The method of claim 21 , wherein providing the polyurethane foam and the cover comprises providing a cover-to-foam laminated coverstock.
31 . The method of claim 30 , wherein providing the cover-to-foam laminated coverstock comprises:
forming the cover-to-foam laminated coverstock by applying energy to the polyurethane foam to create a second amorphous and porous urethane product of the polyurethane foam that directly bonds the polyurethane foam to the cover without an intervening layer of adhesive.
32 . The method of claim 21 , wherein the rigid substrate, the polyurethane foam, and the cover are provided separately, and wherein applying energy to the foam creates the first amorphous and porous urethane product and creates a second amorphous and porous urethane product of the polyurethane foam to directly and simultaneously bond the polyurethane foam to both the cover and the substrate without intervening layers of adhesive.
33 . The method of claim 21 , wherein the substrate comprises a plurality of materials that are pre-formed into a single piece.
34 . The method of claim 21 , wherein the substrate is a discontinuous glass-filled expanded polypropylene substrate.
35 . The method of claim 21 , wherein the cover is a textile.
36 . The method of claim 21 , wherein the method is continuous.
37 . The method of claim 21 , wherein the discontinuous thermoformable composite product is a pre-laminated thermoformable board.
38 . A method for manufacturing a molded composite product, said method comprising:
providing a pre-laminated thermoformable board having polyurethane foam bonded to a cover and directly bonded to a substrate by a first amorphous and porous urethane product of the polyurethane foam without an intervening layer of adhesive;
placing the pre-laminated thermoformable board in a thermoforming molding machine; and
operating the thermoforming molding machine to form the molded composite product.
39 . The method of claim 38 , wherein the molded composite product is a component for a vehicle interior.
40 . The method of claim 39 , wherein the component is a vehicle headliner.