Claims
- 1. A polymer-modified inorganic particle having a layer structure, characterized in that the polymer-modified inorganic particle has a mean particle diameter of from 5 nm to 20 000 nm and an interlamellar content of from 20 to 5 000% by mass, based on the anhydrous inorganic particle, of a mixture of from 50 to 98% by mass of substantially aminoplasts and from 2 to 50% by mass of water, the polymer-modified inorganic particle having been prepared by swelling the inorganic particle with C1-C10 aldehydes as solutions in water or mixtures of water and C1-C8-alcohols, which optionally contain acidic catalysts, a subsequent reaction of the aldehyde-swollen inorganic particles with solutions or suspensions of polyfunctional C1-C30 amino compounds of the type consisting of melamine, melamine derivatives, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamide and/or aniline and salts thereof in water or mixtures of water and C1-C8 alcohols.
- 2. The polymer-modified inorganic particle as claimed in claim 1, characterized in that the inorganic particle having a layer structure is a silicate, phosphate, arsenate, titanate, vanadate, niobate, molybdate and/or manganate, preferably a sheet silicate of the type consisting of montmorillonite, bentonite, kaolinite, muscovite, hectorite, fluorohectorite, kanemite, revdite, grumantite, ilerite, saponite, beidelite, nontronite, stevensite, laponite, taneolite, vermiculite, volkonskoite, magadite, rectorite, halloysite, kenyaite, sauconite or borofluorophlogophite, and/or a synthetic smectite, the sheet silicate furthermore preferably being a sheet silicate having exchange cations of the type consisting of alkali metal, alkaline earth metal, aluminum, iron and/or manganese cations.
- 3. The polymer-modified inorganic particle as claimed in claim 1, characterized in that the aminoplasts are melamine resins, urea resins, cyanamide resins, dicyandiamide resins, guanamine resins, sulfonamide resins and/or aniline resins.
- 4. The polymer-modified inorganic particle as claimed in claim 3, characterized in that the melamine resins are polycondensates of melamine or melamine derivatives and C1-C10-aldehydes with a molar melamine or melamine derivative/C1-C10-aldehyde ratio of from 1:1 to 1:6 and the partial etherification products thereof with C1-C10-alcohols, the melamine derivatives preferably being melamines, diaminomethyltriazines and/or diaminophenyltriazines substituted by hydroxy-C1-C10-alkyl groups, hydroxy-C1-C4-alkyl (oxa-C2-C4-alkyl)1-5 groups and/or by amino-C1-C2-alkyl groups, particularly preferably 2-(2-hydroxyethylamino)-4,6-diamino-1,3,5-triazine, 2-(5-hydroxy-3-oxapentylamino)-4,6-diamino-1,3,5-triazine and/or 2,4,6-tris(6-aminohexylamino)-1,3,5-triazine, ammeline, ammelide, melem, melon, melam, benzoguanamine, acetoguanamine, tetramethoxy-methylbenzoguanamine, caprinoguanamine and/or butyroguanamine, and the C1-C10-aldehydes are preferably formaldehyde, acetaldehyde, trimethylolacetaldehyde, acrolein, furfurol, glyoxal and/or glutaraldehyde, particularly preferably formaldehyde.
- 5. The polymer-modified inorganic particle as claimed in claim 1, characterized in that the C1-C10-aldehydes are formaldehyde, acetaldehyde, trimethylolacetaldehyde, acrolein, benzaldehyde, furfurol, glyoxal, glutaraldehyde, phthalaldehyde and/or terephthalaldehyde, preferably formaldehyde.
- 6. The polymer-modified inorganic particle as claimed in claim 1, characterized in that the melamine derivatives are melamines, diaminomethyltriazines and/or diaminophenyltriazines substituted by hydroxy-C1-C10-alkyl groups, hydroxy-C1-C4alkyl(oxa-C2-C4-alkyl)1-5 groups and/or by amino-C1-C12-alkyl groups, preferably 2-(2-hydroxyethylamino)-4,6-diamino-1,3,5-triazine, 2-(5-hydroxy-3-oxapentylamino)-4,6-diamino-1,3,5-triazine, 2,4,6-tris(6-aminohexylamino)-1,3,5-triazine and/or 2,4-(di-5-hydroxy-3-oxapentylamino)-6-methyl-1,3,5-triazine, ammeline, ammelide, melem, melon and/or melam.
- 7. The polymer-modified inorganic particle as claimed in claim 1, characterized in that the urea derivatives are thiourea, and urea or thiourea substituted by C1-C10-alkyl groups, C6-C14-aryl groups, hydroxy-C1-C10-alkyl groups, hydroxy-C1-C4alkyl(oxa-C2-C4-alkyl)1-5 groups and/or by amino-C1-C12-alkyl groups.
- 8. The polymer-modified inorganic particle as claimed in claim 1, characterized in that the salts of melamine, melamine derivatives, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyandiamide, sulfonamides and/or aniline are salts with inorganic and/or organic anions, preferably fluorides, chlorides, bromides, iodides, sulfates, phosphates, borates, silicates, cyanurates, tosylates, formates, acetates, propionates, butyrates and/or maleates.
- 9. A process for the preparation of polymer-modified inorganic particles having a layer structure, characterized in that polymer-modified inorganic particles having a mean particle diameter of from 5 nm to 20 000 nm and an interlamellar content of 20 to 5 000% by mass, based on the anhydrous inorganic particles, of a mixture of from 50 to 90% by mass of substantially aminoplasts and from 2 to 50% by mass of water are prepared by a multistage process in which, in the 1st process step, inorganic particles having a layer structure are loaded, in a stirred reactor at from 20 to 100° C. and in a residence time of from 10 to 180 min by swelling, with from 15 to 4 000% by mass, based on the anhydrous inorganic particles, of C1-C10 aldehydes as from 5 to 60% solutions in water or mixtures of from 5 to 99% by weight of water and from 95 to 1% by mass of C1-C8-alcohols, which optionally contain from 0.05 to 1.0% by mass, based on the C1-C10-aldehydes, of acidic catalysts, a pH>8.5, and in a second process step the inorganic particles swollen with C1-C10-aldehydes are homogenized with solutions or suspensions of polyfunctional C1-C30 amino compounds of the type consisting of melamine, melamine derivatives, urea, urea derivatives, guanidine, guanidine derivatives, cyanamide, dicyanmdiamide, sulfonamide and/or aniline and the salts thereof in water or mixtures of from 5 to 99% by weight of water and from 95 to 1% by mass of C1-C8-alcohols, having a solids content of 5 to 90% by mass, and are reacted in residence times of from 20 to 150 min and from 50 to 95° C., the molar ratio of the added polyfunctional. C1-C30-amino compounds to C1-C10-aldehydes being from 1:2 to 1:6 and the polymer-modified inorganic particles are subsequently dried with removal of the liquid phase at from 20 to 180° C. and in a residence time of from 0.1 to 8 hours.
- 10. The use of polyer-modified inorganic particles as claimed in claim 1 as an additive for flameproofing plastics, preferably in combination with inorganic and/or organic salts having ammonium, alkylammonium, arylammonium, phosphonium, alkylphosphonium, arylphosphonium, alkali metal and/or alkaline earth metal cations and/or phosphate, phosphite, phosphonate, silicate and/or borate anions, and/or with polyhydric alcohols of the type consisting of erythritol, pentaerythritol, pentitol and/or hexitol, and as additives for increasing the scratch resistance and UV stability and improving the barrier properties of plastics and plastics laminates, and as molding materials and as a catalyst or catalyst support.
- 11. A polyolefin containing modified inorganic particles having a layer structure as claimed in claim 1.
- 12. A polyolefin comprising from 1 to 60% by mass, based on the polyolefin used, of polymer-modified inorganic particles having a layer structure as claimed in claim 1 and optionally, as further additives, inorganic or organic salts, fillers, reinforcing materials, polymeric dispersants, assistants and/or polyhydric alcohols, the inorganic or organic salts being salts having ammonium, alkylammonium, phosphonium, alkylphosphonium, arylphosphonium, alkali metal and/or alkaline earth metal cations and/or salts having phosphite, phosphate, phosphonate, silicate and/or borate anions, which may be contained in an amount of up to 25% by mass on the polyolefin, the fillers and/or reinforcing materials being inorganic or organic fillers and/or fibers which may be contained in an amount of up to 40% by mass in the polyolefin,
the polymeric dispersant being water-soluble, water-dispersible and/or water-emulsifiable polymers, which may be present in an amount of up to 3% by mass in the polyolefin, and the polyhydric alcohols being polyhydric alcohols of the type consisting of erythritol, pentaerythritol, pentitol and/or hexitol, which may be contained in an amount of up to 15% by mass in the polyolefin.
- 13. A thermosetting plastic comprising from 2 to 80% by mass, based on the thermosetting plastic used, of modified inorganic particles having a layer structure as claimed in claim 1 and optionally, as further additives, inorganic or organic salts, fillers, reinforcing materials, polymeric dispersants, assistants and/or polyhydric alcohols,
the inorganic or organic salts being salts having ammonium, alkylammonium, phosphonium, alkylphosphonium, arylphosphonium, alkali metal and/or alkaline earth metal cations and/or salts having phosphite, phosphate, phosphonate, silicate and/or borate anions, which may be contained in an amount of up to 60% by mass in the thermosetting plastic, the fillers and/or reinforcing materials being inorganic or organic fillers and/or fibers which may be contained in an amount of up to 70% by mass in the thermosetting plastic, the polymeric dispersants being water-soluble, water-dispersible and/or water-emulsifiable polymers which may be contained in an amount of up to 5% by mass in the thermosetting plastic and the polyhydric alcohols being polyhydric alcohols of the type consisting of erythritol, pentaerythritol, pentitol and/or hexitol, which may be contained in an amount of up to 30% by mass in the thermosetting plastic.
- 14. A semifinished product or molding, in the form of films, prepregs, fibers, sheets, pipes, coatings, hollow bodies, injection molded products and foams, of a polyolefin or thermosetting plastic comprising polymer-modified inorganic particles having a layer structure and optionally further additives as claimed in claim 12 or 13.
Priority Claims (1)
Number |
Date |
Country |
Kind |
A 2086/2000 |
Dec 2000 |
AT |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a National Phase Patent Application of International Application Number PCT/EP01/14581, filed on Dec. 12, 2001, which claims priority of Austrian Patent Application Number A 2086/00, filed Dec. 15, 2000.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/EP01/14581 |
12/12/2001 |
WO |
|