Anion engineering plastic and preparation method thereof
A technology of engineering plastics and negative ions, applied in the field of negative ion engineering plastics and its preparation, can solve the problems of inability to improve air quality, non-bacterial sterilization, non-degradation, etc., to enhance human immunity, reduce electromagnetic radiation intensity, and eliminate odors. Effect
Examples
Embodiment Construction
[0010] Thermosetting type: embodiment 1-5, raw material composition weight percentage sees the table below
[0011] Synthetic resin% Thermosetting material % Composite negative ion material% 10-15 80οΌ85 3-7 Example 1 15 (polypropylene) 80 (calcium carbonate 78 + aluminum dioxide 2) 5 Example 2 11 (polypropylene) 82 (calcium carbonate 80 + aluminum dioxide 2) 7 Example 3 12 (polypropylene) 85 (Calcium Carbonate 84 + Aluminum Dioxide 1) 3 Example 4 11 (ABS resin) 82 (calcium carbonate 80 + aluminum dioxide 2) 7 Example 5 12 (unsaturated polyester resin) 85 (Calcium Carbonate 84 + Aluminum Dioxide 1) 3
[0012] The preparation method of thermosetting negative ion engineering plastics comprises the following steps: calcium carbonate, aluminum dioxide, synthetic resin and composite negative ion materials are conventionally mixed and pulped by a high-speed discrete machine according to the above ratio, and ...
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Description
Claims
Application Information
- IPC
- C08L23/12; C08L23/06; C08L77/06; C08L55/02; C08L75/04; C08L27/06; C08L25/06; C08L67/06; C08K3/26; C08K3/22; C08K3/38; C08J3/22
- Inventors
- ζ¨ιζΊ