Claims
- 1. In a decorative, static dissipative, high pressure laminate having a surface resistivity on the order of 10.sup.6 to 10.sup.9 ohms/square at a relative humidity of about 50% and having a plurality of consolidated thermosetting resin impregnated layers including a plural-layer core and a decor surface layer, the improvement wherein:
- said core comprises at least one thermoset resin impregnated paper core sheet and, provided together with said at least one paper core sheet, at least one special aqueous thermosetting resin impregnated core sheet of predominantly paper fibers and about 1.5 to 15 wt % of stainless steel fibers having a length of 1/4 to 3/4 inches randomly distributed among said paper fibers, said stainless steel being selected from stainless steels containing on the order of 10% or more of Ni and sufficiently resistant to corrosion to remain conductive after having been subjected to paper making from an aqueous slurry and after lamination in the presence of aqueous thermosetting resin at a temperature of at least 230.degree. F.
- 2. The laminate according to claim 1 wherein said stainless steel fibers are selected from stainless steel fibers having been pre-coated with a water soluble polymer.
- 3. The laminate according to claim 2 wherein said water soluble polymer is polyvinyl alcohol.
- 4. The laminate according to claim 1 wherein said stainless steel fibers are 300 series stainless steels.
- 5. The laminate according to claim 1 wherein said stainless steel fibers comprise between 3 and 5.5% by weight of said special core sheet based on the total fiber weight.
- 6. The laminate according to claim 1 having a surface resistance of no more than 10.sup.11 at a relative humidity of 15%.
- 7. In a static dissipative, high pressure laminate comprising a plurality of consolidated layers having effectively zero volt charge after two seconds at 17% or lower relative humidity, and a decor layer above said core layers, said decor layer being impregnated with a thermosetting resin and an amount sufficient of glycerin or an aliphatic tertiary amine together with an ionic salt to provide a surface resistivity on the order of 10.sup.6 to 10.sup.9 ohms/square at a relative humidity of about 50%, the improvement wherein:
- said core comprises at least one non-conductive core layer topped with a special core layer comprising about 1.5 to 15% by weight of stainless steel fibers having a length of 1/4 to 3/4 inches randomly distributed therein, said stainless steel being selected from stainless steels sufficiently resistant to corrosion to remain conductive after having been subjected to paper making from an aqueous slurry and after lamination in the presence of aqueous thermosetting resin at a temperature of at least 230.degree. F. and a pressure of at least 300 psi, said stainless steel fibers having been precoated with a water soluble polymer prior to said paper making.
- 8. A laminate according to claim 7 wherein said stainless steel fibers constitute 3-5.5% by weight of said special core sheet, based on the total fiber weight.
Parent Case Info
This is a CIP of parent application Ser. No. 07/624,442, filed Dec. 10, 1990, now abandoned, hereby incorporated by reference.
US Referenced Citations (4)
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Cannady, Jr. |
Sep 1985 |
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4724187 |
Ungar et al. |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
624442 |
Dec 1990 |
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