Energy saving fireproof paint and preparation method thereof
A technology of fire-resistant coatings and base materials, applied in fire-resistant coatings, coatings, etc., can solve the problems of not having energy-saving functions, not having fire-proof functions, etc., and achieve good oxygen insulation, improved flame-retardant and heat-insulating properties, and increased carbon layer strength Effect
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Embodiment 1
[0059] An embodiment of the energy-saving fireproof coating of the present invention, the energy-saving fireproof coating of this embodiment is prepared by the following method:
[0060] (1) Accurately weigh 7 parts by weight of carbonizing agent, 7 parts by weight of foaming agent, 20 parts by weight of flame retardant, 5 parts by weight of titanium dioxide, 1 part by weight of magnesium hydroxide, and 2 parts by weight of diatomaceous earth, add to the homogeneous mixture Mix uniformly in a container to obtain a fireproof base material; wherein, the carbonizing agent is pentaerythritol, the foaming agent is melamine, and the flame retardant is ammonium polyphosphate.
[0061] (2) Accurately weigh 9 parts by weight of inorganic hollow materials consisting of 20% of 200 meshes, 50% of 500 meshes and 30% of 800 meshes of inorganic hollow materials, and 1 weight part of magnesium hydroxide, carry out with organic silane coupling agent modified. Add 5 parts by weight of titanium...
Embodiment 2
[0068] An embodiment of the energy-saving fireproof coating of the present invention, the energy-saving fireproof coating of this embodiment is prepared by the following method
[0069] (1) Accurately weigh 10 parts by weight of carbonizing agent, 10 parts by weight of foaming agent, 25 parts by weight of flame retardant, 8 parts by weight of titanium dioxide, 2 parts by weight of magnesium hydroxide, and 3 parts by weight of diatomaceous earth, add to the homogeneous mixture Mix uniformly in a container to obtain a fireproof base material; wherein, the carbonizing agent is pentaerythritol, the foaming agent is melamine, and the flame retardant is ammonium polyphosphate.
[0070] (2) Accurately weigh 12 parts by weight of inorganic hollow materials consisting of 20% of 270 meshes, 50% of 500 meshes and 30% of 800 meshes of inorganic hollow materials, and 1 weight part of magnesium hydroxide, carry out with organic silane coupling agent modified. Add 8 parts by weight of titan...
Embodiment 3
[0077] An embodiment of the energy-saving fireproof coating of the present invention, the energy-saving fireproof coating of this embodiment is prepared by the following method
[0078] (1) Accurately weigh 12 parts by weight of carbonizing agent, 12 parts by weight of foaming agent, 30 parts by weight of flame retardant, 11 parts by weight of titanium dioxide, 2 parts by weight of magnesium hydroxide, and 5 parts by weight of diatomaceous earth, add to the homogeneous mixture Mix uniformly in a container to obtain a fireproof base material; wherein, the carbonizing agent is pentaerythritol, the foaming agent is melamine, and the flame retardant is ammonium polyphosphate.
[0079] (2) Accurately weigh 15 parts by weight of inorganic hollow materials consisting of 30% of 270 meshes, 40% of 500 meshes and 30% of 800 meshes of inorganic hollow materials, 3 parts by weight of magnesium hydroxide, carry out with organic silane coupling agent modified. Add 11 parts by weight of tit...
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