Polypropylene modified material and production method thereof

A technology for modifying materials and production methods, applied in the field of organic materials, can solve problems such as mechanical properties, thermal oxidation resistance, insufficient processing technology, and increase production costs, and achieves low cost, low production cost, and good mechanical properties. Effect

Inactive Publication Date: 2011-10-26
PANASONIC HOME APPLIANCES R&D CENT HANGZHOU +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although there are many manufacturers of polypropylene materials in China, due to the imperfect material formula and processing technology, the polypropylene materials produced by domestic manufacturers are far inferior to similar foreign materials in terms of mechanical properties and thermal oxidation resistance; while foreign imports The polypropylene material, although its performance has been further improved after modification, but its price is expensive, which will inevitably increase the production cost

Method used

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  • Polypropylene modified material and production method thereof
  • Polypropylene modified material and production method thereof
  • Polypropylene modified material and production method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0049] 1. First treat 20 parts of talc powder with 0.3 parts of silane coupling agent KH550, and set aside;

[0050] 2. Add 60 parts of copolymerized polypropylene and 20 parts of homopolypropylene into the high-mixing tank in turn, mix thoroughly, and then add the talcum powder treated in step (1), antioxidant, 0.2 parts of metal blunt into the high-mixing tank Chemicalizing agent MD1024, 0.2 parts of nucleating agent ZC-3 and 0.1 parts of calcium stearate, wherein the antioxidant consists of 0.3 parts of antioxidant 1010, 0.3 parts of antioxidant 1076, 0.2 parts of antioxidant 168 and 0.2 parts of antioxidant Composition of agent 802FD, mixed in a high mixer for 4 minutes, mixed fully and put into the lower hopper to mix and melt with a twin-screw machine. The mixing and melting temperature is: 185°C for the first section, 205°C for the second section, and 215°C for the third section , The fourth section is 210°C, the fifth section is 200°C, the sixth section is 205°C, the s...

Embodiment 2

[0053] 1. First treat 15 parts of talc powder with 0.2 parts of silane coupling agent, and set aside;

[0054] 2. Add 55 parts of copolymerized polypropylene and 15 parts of homopolypropylene into the high-mix tank in turn, mix thoroughly, and then add the talcum powder treated in step (1), antioxidant, 0.1 part of metal Passivator, 0.1 part of nucleating agent and 0.05 part of calcium stearate, wherein antioxidant consists of 0.2 part of antioxidant 1010, 0.2 part of antioxidant 1076, 0.1 part of antioxidant 168 and 0.1 part of antioxidant 802FD , mixed in the high mixer for 3 minutes, mixed fully and put into the lower hopper to mix and melt with a twin-screw machine. Section 208°C, fifth section 198°C, sixth section 203°C, seventh section 203°C, melt temperature 203°C and die temperature 198°C;

[0055] 3. Extrude the strands from the twin-screw machine, cool the strands with water, dry the water on the surface of the strands, and then cut into pellets.

Embodiment 3

[0057] 1. First treat 25 parts of talcum powder with 0.4 parts of silane coupling agent KH550, and set aside;

[0058] 2. Add 65 parts of copolymerized polypropylene and 25 parts of homopolypropylene into the high-mixing tank in turn, mix thoroughly, and then add the talcum powder treated in step (1), antioxidant, 0.3 parts of metal Passivator MD1024, 0.3 part of nucleating agent ZC-3 and 0.2 part of calcium stearate, wherein the antioxidant consists of 0.3 part of antioxidant 1010, 0.3 part of antioxidant 1076, 0.3 part of antioxidant 168 and 0.3 part of antioxidant Composition of oxygen agent 802FD, mixed in high mixer for 5 minutes, mixed fully and put into lower hopper to mix and melt with twin-screw machine, mixing and melting temperature: 187°C for the first section, 207°C for the second section, 217°C for the third section ℃, the fourth section 212°C, the fifth section 202°C, the sixth section 207°C, the seventh section 207°C, the melt temperature 207°C and the die temp...

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Abstract

A polypropylene modified material and the preparation method thereof belong to the technical field of organic materials. The material comprises propylene copolymer, homogeneous polypropylene, talcum powder, chemical inhibitor, metal deactivator, nucleating agent, resin acceptor and calcium stearate. The preparation method thereof comprises that the resin acceptor is used for treating the talcum powder; the propylene copolymer, the homogeneous polypropylene, the talcum powder, the chemical inhibitor, the metal deactivator, the nucleating agent, and the calcium stearate are added into a high-mixing barrel, fully blended, and then blended and melt with a double screw machine, and finally braced and granulated. The preparation method has reasonable design, simple operation, and low cost. The invention not only maintains the original advantages of the polypropylene material, but also has good mechanical property, heat oxidation resistant performance and heat oxidation resistant performanceafter high temperature resistant scour. The performances of the polypropylene modified material surpass the performances of the existing polypropylene modified material at home and abroad. And the polypropylene modified material has low production cost and low price.

Description

technical field [0001] The invention belongs to the technical field of organic materials, and in particular relates to a modified polypropylene material and a production method thereof. Background technique [0002] As a general-purpose plastic, polypropylene has the advantages of excellent processing performance, good mechanical properties, and corrosion resistance, so it occupies an important position in plastics. However, when polypropylene is used in some parts, its strength, heat resistance, etc. Far from meeting the requirements. For example, some washing machines that appear on the market now have high-temperature washing, sterilization and drying functions, which makes the materials of the resin structural parts of the washing machine have strong mechanical properties, thermal oxidation resistance and thermal oxidation resistance after high-temperature washing. Although there are many manufacturers of polypropylene materials in China, due to the imperfect material f...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08L23/14C08K13/02C08K9/06C08K3/34C08K5/098C08K5/10C08K5/24B29C47/40B29C48/40
CPCB29C48/40
Inventor 王晓群陈家锋王丹王海儿渡边幸男张胜炀徐迎宾
Owner PANASONIC HOME APPLIANCES R&D CENT HANGZHOU
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