High-thermal-conductivity thermoplastic material containing graphene nanoplatelets and preparation method of high-thermal-conductivity thermoplastic material
The invention discloses a high-thermal-conductivity thermoplastic material containing graphene nanoplatelets and a preparation method of the high-thermal-conductivity thermoplastic material. A formula of the high-thermal-conductivity thermoplastic material comprises thermoplastic resin, tackifying r...
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creator | MAO GUODONG |
description | The invention discloses a high-thermal-conductivity thermoplastic material containing graphene nanoplatelets and a preparation method of the high-thermal-conductivity thermoplastic material. A formula of the high-thermal-conductivity thermoplastic material comprises thermoplastic resin, tackifying resin, metal filler, ceramic filler, a flame retardant and elastic filler. The preparation method comprises the steps: step 1, weighing raw materials; step 2, carrying out high-temperature drying; step 3, preparing a mixture; step 4, preparing thermoplastic material particles; and step 5, screening and storing. In the step 1, the tackifying resin is one or a mixture of more of rosin, rosin derivatives and terpene resin, the metal filler is beryllium oxide, and the ceramic filler is silicon nitride. Compared with an existing high-thermal-conductivity thermoplastic material, the high-thermal-conductivity thermoplastic material has the advantages that the metal filler and the ceramic filler are added to form a thermal |
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A formula of the high-thermal-conductivity thermoplastic material comprises thermoplastic resin, tackifying resin, metal filler, ceramic filler, a flame retardant and elastic filler. The preparation method comprises the steps: step 1, weighing raw materials; step 2, carrying out high-temperature drying; step 3, preparing a mixture; step 4, preparing thermoplastic material particles; and step 5, screening and storing. In the step 1, the tackifying resin is one or a mixture of more of rosin, rosin derivatives and terpene resin, the metal filler is beryllium oxide, and the ceramic filler is silicon nitride. 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A formula of the high-thermal-conductivity thermoplastic material comprises thermoplastic resin, tackifying resin, metal filler, ceramic filler, a flame retardant and elastic filler. The preparation method comprises the steps: step 1, weighing raw materials; step 2, carrying out high-temperature drying; step 3, preparing a mixture; step 4, preparing thermoplastic material particles; and step 5, screening and storing. In the step 1, the tackifying resin is one or a mixture of more of rosin, rosin derivatives and terpene resin, the metal filler is beryllium oxide, and the ceramic filler is silicon nitride. 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A formula of the high-thermal-conductivity thermoplastic material comprises thermoplastic resin, tackifying resin, metal filler, ceramic filler, a flame retardant and elastic filler. The preparation method comprises the steps: step 1, weighing raw materials; step 2, carrying out high-temperature drying; step 3, preparing a mixture; step 4, preparing thermoplastic material particles; and step 5, screening and storing. In the step 1, the tackifying resin is one or a mixture of more of rosin, rosin derivatives and terpene resin, the metal filler is beryllium oxide, and the ceramic filler is silicon nitride. Compared with an existing high-thermal-conductivity thermoplastic material, the high-thermal-conductivity thermoplastic material has the advantages that the metal filler and the ceramic filler are added to form a thermal</abstract><oa>free_for_read</oa></addata></record> |
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subjects | ADHESIVES CHEMISTRY COMPOSITIONS BASED THEREON COMPOSITIONS OF MACROMOLECULAR COMPOUNDS DYES MATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FORELSEWHERE METALLURGY MISCELLANEOUS APPLICATIONS OF MATERIALS MISCELLANEOUS COMPOSITIONS NATURAL RESINS ORGANIC MACROMOLECULAR COMPOUNDS PAINTS POLISHES THEIR PREPARATION OR CHEMICAL WORKING-UP USE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES ASCOMPOUNDING INGREDIENTS |
title | High-thermal-conductivity thermoplastic material containing graphene nanoplatelets and preparation method of high-thermal-conductivity thermoplastic material |
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