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    • 4. 发明专利
    • AT407169T
    • 2008-09-15
    • AT06706811
    • 2006-02-10
    • EVONIK ROEHM GMBH
    • NEUHAEUSER ACHIMDICKHAUT-BAYER GUENTHERKROHMER CHRISTOPHBECKER PATRICKNEEB ROLFSEYOUM GHIRMAY
    • C08J7/04C09D1/00C09D5/24
    • Preparation of foils or plates from thermoplastic with electrical conductive coating, comprises: coating one-side of a carrier foil from a thermoplastic with a varnish composition; extruding a melting rank of the thermoplastic on an extrusion equipment by a broad slot extruding nozzle for plates or foils with roller grazing; bringing the coated side of the carrier foil, where a composite of the coated carrier foil that is developed with melting rank; removing the carrier foil from the composite; and cooling the plastic sheet at room temperature. Preparation of foils or plates from thermoplastic with electrical conductive coating, comprises: coating one-side of a carrier foil from a thermoplastic with a varnish composition containing silicon-oxide particles and inorganic semiconductor particles in a solvent or its mixture, and optionally an auxiliary leveling agent, blades, tides, dipping or continuous coating and following drying; extruding a melting rank of the thermoplastic, a lower softening temperature, thermoplastic of the carrier foil, on an extrusion equipment by a broad slot extruding nozzle for plates or foils with roller grazing; bringing the coated side of the carrier foil with the malting rank of the extruded thermoplastic in the roller grazing and a roller temperature of more than 5[deg]C under the slumping temperature of the extruded thermoplastic, where a composite of the coated carrier foil that is developed with melting rank; removing the carrier foil from the composite; and cooling the plastic sheet at room temperature. An independent claim is included for extruded foil or plate, which is obtained by using the above procedure, comprising thermoplastic has electrically conductive coating with a surface resistance of smaller 10 10> omega , where the surface resistance increases after a scrubbing load according to DIN 53778 of 5 cycles, by not more than one decimal power.
    • 6. 发明专利
    • PROCEDIMIENTO PARA LA PRODUCCION DE UN CUERPO MOLDEADO REVESTIDO ANTIESTATICAMENTE.
    • ES2317021T3
    • 2009-04-16
    • ES04763862
    • 2004-08-06
    • EVONIK ROEHM GMBH
    • HASSKERL THOMASBECKER PATRICKNEEB ROLFSEYOUM GHIRMAY
    • C08J7/04C09D5/24
    • Procedimiento para la producción de cuerpos moldeados a base de materiales sintéticos, en el que un cuerpo moldeado se reviste de una manera en sí conocida por una cara o por múltiples caras con un sistema de barniz; y el sistema de barniz se compone: a) de un agente aglutinante o de una mezcla de agentes aglutinantes, b) opcionalmente de un disolvente o de una mezcla de disolventes, y c) opcionalmente de otros aditivos, que son habituales en sistemas de barnices, d) de un agente espesante, pudiéndose emplear agentes espesantes poliméricos con un contenido de 0 a 20% y agentes espesantes oligoméricos con un contenido de 0 a 40%, en cada caso referido a una película seca (componentes a, c, d, e) e) de un agente espesante reactivo, pudiéndose emplear agentes espesantes reactivos poliméricos con un contenido de 0 a 20% y agentes espesantes reactivos oligoméricos con un contenido de 0 a 40%, en cada caso referido a una película seca (componentes a, c, d, f) f) de 5 - 500 partes en masa, referidas a a), de un óxido metálico conductor de la electricidad en forma de un polvo, de una dispersión y/o de un sol con un tamaño medio de partículas primarias de 1 a 80 nm y con un grado de conglomeración porcentual de 0,01 a 99%, g) de 5 - 500 partes en masa, referidas a) nanopartículas inertes, y el barniz se endurece totalmente.
    • 10. 发明专利
    • DE502006001501D1
    • 2008-10-16
    • DE502006001501
    • 2006-02-10
    • EVONIK ROEHM GMBH
    • NEUHAEUSER ACHIMDICKHAUT-BAYER GUENTHERKROHMER CHRISTOPHBECKER PATRICKNEEB ROLFSEYOUM GHIRMAY
    • C08J7/04C09D1/00C09D5/24
    • Preparation of foils or plates from thermoplastic with electrical conductive coating, comprises: coating one-side of a carrier foil from a thermoplastic with a varnish composition; extruding a melting rank of the thermoplastic on an extrusion equipment by a broad slot extruding nozzle for plates or foils with roller grazing; bringing the coated side of the carrier foil, where a composite of the coated carrier foil that is developed with melting rank; removing the carrier foil from the composite; and cooling the plastic sheet at room temperature. Preparation of foils or plates from thermoplastic with electrical conductive coating, comprises: coating one-side of a carrier foil from a thermoplastic with a varnish composition containing silicon-oxide particles and inorganic semiconductor particles in a solvent or its mixture, and optionally an auxiliary leveling agent, blades, tides, dipping or continuous coating and following drying; extruding a melting rank of the thermoplastic, a lower softening temperature, thermoplastic of the carrier foil, on an extrusion equipment by a broad slot extruding nozzle for plates or foils with roller grazing; bringing the coated side of the carrier foil with the malting rank of the extruded thermoplastic in the roller grazing and a roller temperature of more than 5[deg]C under the slumping temperature of the extruded thermoplastic, where a composite of the coated carrier foil that is developed with melting rank; removing the carrier foil from the composite; and cooling the plastic sheet at room temperature. An independent claim is included for extruded foil or plate, which is obtained by using the above procedure, comprising thermoplastic has electrically conductive coating with a surface resistance of smaller 10 10> omega , where the surface resistance increases after a scrubbing load according to DIN 53778 of 5 cycles, by not more than one decimal power.