Fibrous veil for class A sheet molding compound applications
View Patent ↗A conformable veil is formed by impregnating a random mat of glass fibers formed with a polystyrene-based resin. The veil is then introduced between two layers of a sheet molding compound resin paste and compacted to form a compacted sheet. The compacted sheet is then introduced to a mold and molded to form a soft, flexible sheet molding composite part having good resin and fiber distribution. Resin and fiber distribution of the present invention is improved because the polystyrene-based resin is soluble in the sheet molding compound resin paste and allows the plurality of fibers to flow freely within the resin paste during the molding process.
1. A sheet molding composite sheet comprising:
a first layer of resin paste;
a second layer of resin paste; and
a conformable veil sandwiched between said first layer and said second layer, said conformable veil comprising a plurality of fibers bound together with a polystyrene-based binder and having an average length of between approximately 0.5 and 2 meters.
2. The sheet molding composite sheet of claim 1 , wherein said veil comprises a plurality of fibers having an average length of between approximately 1 and 2 meters.
3. The sheet molding composite sheet of claim 1 , wherein said polystyrene-based binder comprises approximately 10 percent of the total weight of said conformable veil.
4. The sheet molding composite sheet of claim 1 , wherein said polystyrene-based binder is substantially soluble in said first layer of resin paste and said second layer of resin paste.
5. The sheet molding composite sheet of claim 1 , wherein said plurality of fibers comprises a plurality of glass fibers.
6. The sheet molding composite sheet of claim 1 , wherein said polystyrene-based binder is formed from a polystyrene-based emulsion in water.
7. The sheet molding composite sheet of claim 6 , wherein said polystyrene-based emulsion comprises Vinamul 7700.
8. The sheet molding composite sheet of claim 1 , wherein said plurality of fibers have an average fiber diameter of between approximately 11 and 14 micrometers.
9. The sheet molding composite sheet of claim 1 , wherein said veil, when compression molded, elongates over 50% without any visible holes or tears.
10. The sheet molding composite sheet of 9 , wherein said veil, when compression molded, elongates over 100% without any visible holes or tears.