Resin-based composite material with controllable linear expansion coefficient and preparation method thereof
A technology of linear expansion coefficient and composite materials, which is applied in the field of resin-based composite materials and its preparation, can solve the problems of reducing linear expansion coefficient, high processing cost, and high density of metal materials, and achieves easy industrial production, simple production process, and line The effect of low expansion coefficient
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Embodiment 1
[0052] Embodiment 1: A resin-based composite material with a controllable linear expansion coefficient provided by this preferred embodiment mainly contains by weight fraction:
[0053] 10 parts of unsaturated polyester resin;
[0054] 15 parts of 800 mesh rare earth tungstate and 10 parts of 800 mesh calcium carbonate;
[0055] 12 pieces of fiberglass with a length of 8mm;
[0056] 2 parts polystyrene;
[0057] 1.5 parts of stearic acid;
[0058] 0.3 part tert-butyl peroxybenzoate.
[0059] During production, first weigh 10 parts of unsaturated polyester resin, 15 parts of 800-mesh rare earth tungstate, 10 parts of 800-mesh calcium carbonate, 12 parts of glass fiber with a length of 8 mm, and 2 parts of polystyrene according to the ratio of parts by weight. , 1.5 parts of stearic acid, 0.3 parts of tert-butyl peroxybenzoate;
[0060] 2 parts of polystyrene, 1.5 parts of stearic acid and 0.3-part of tert-butyl peroxybenzoate are added to 10 parts of unsaturated polyester ...
Embodiment 2
[0065] Embodiment 2: A resin-based composite material with a controllable linear expansion coefficient provided by this preferred embodiment mainly contains by weight fraction:
[0066] 10 parts of unsaturated polyester resin;
[0067] 30 parts of 1000 mesh rare earth tungstate;
[0068] 8 pieces of fiberglass with a length of 8mm;
[0069] 1.5 parts polystyrene;
[0070] 1 part stearic acid;
[0071] 0.5 part tert-butyl peroxybenzoate.
[0072] During production, first weigh 10 parts of unsaturated polyester resin, 30 parts of 1000 mesh rare earth tungstate, 8 parts of glass fiber with a length of 8 mm, 1.5 parts of polystyrene, 1 part of stearic acid according to the ratio of parts by weight. , 0.5 part of tert-butyl peroxybenzoate;
[0073] 1.5 parts of polystyrene, 1 part of stearic acid and 0.5 part of tert-butyl peroxybenzoate were added to 10 parts of unsaturated polyester resin and stirred evenly to prepare a primary mixture;
[0074] Add 30 parts of 1000 mesh ra...
Embodiment 3
[0077] Embodiment 3: A resin-based composite material with a controllable linear expansion coefficient provided by this preferred embodiment mainly contains by weight fraction:
[0078] 10 parts of unsaturated polyester resin;
[0079] 25 parts of 800 mesh silicon micropowder;
[0080] 8 pieces of silicon carbide fibers with a length of 10mm;
[0081] 5 parts polystyrene;
[0082] 2 parts stearic acid;
[0083] 0.8 part benzoyl peroxide.
[0084] During production, first weigh 10 parts of unsaturated polyester resin, 25 parts of 800-mesh silicon micropowder, 8 parts of silicon carbide fibers with a length of 10 mm, 5 parts of polystyrene, 2 parts of stearic acid, 0.8 parts benzoyl peroxide;
[0085] 5 parts of polystyrene, 2 parts of stearic acid and 0.8 part of benzoyl peroxide are added to 10 parts of unsaturated polyester resin and stirred evenly to prepare a primary mixture;
[0086] 25 parts of 800 mesh silicon micropowder and 8 parts of silicon carbide fibers with a ...
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