Fireproof and flame-retardant shell base material coating
A base coating, fire-resistant and flame-retardant technology, applied in fire-resistant coatings, coatings, etc., can solve problems such as insufficient fire-proof performance of coatings, and achieve the effect of solving insufficient fire-proof performance and improving fire-proof performance
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Embodiment 1
[0035] A fire-resistant and flame-retardant shell-based coating is prepared from the raw materials of the following components:
[0036] Shell powder, kaolin, light calcium carbonate, nano-silicon dioxide, TiO2-bismuth vanate-graphene ternary nanocomposite material and binder powder; the particle diameter of shell powder is 500 mesh-1300 mesh.
[0037] Specifically, it is prepared from the raw materials of the following components:
[0038] 50% of shell powder, 10% of kaolin, 10% of light calcium carbonate, 10% of nano silicon dioxide, 5% of TiO2-bismuth vanate-graphene ternary nanocomposite material and 15% of binder powder; The grain diameter is 500 mesh.
[0039] This embodiment also provides a method for preparing a fire-resistant and flame-retardant shell-based coating, comprising the following steps:
[0040] (S1) Slurry preparation: mix hydroxyethyl cellulose, water-based silicone oil, sodium alginate, polyethylene glycol, dispersant, defoamer with a formulation amoun...
Embodiment 2
[0044] A fire-resistant and flame-retardant shell-based coating is prepared from the raw materials of the following components:
[0045] 40% of shell powder, 15% of kaolin, 20% of light calcium carbonate, 10% of nano silicon dioxide, 5% of TiO2-bismuth vanate-graphene ternary nanocomposite material and 10% of binder powder.
[0046] Specifically, the particle diameter of shell powder is 800 mesh.
[0047] The preparation method of this embodiment is as shown in Example 1.
Embodiment 3
[0049] A fire-resistant and flame-retardant shell-based coating is prepared from the raw materials of the following components:
[0050] 30% of shell powder, 20% of kaolin, 20% of light calcium carbonate, 15% of nano silicon dioxide, 5% of TiO2-bismuth vanate-graphene ternary nanocomposite material and 10% of binder powder.
[0051] The preparation method of this embodiment is as shown in Example 1.
[0052] For the product of the embodiment of the present invention, according to the report of the Quality Supervision, Inspection and Testing Center for Dry-mixed Mortar Products in the Building Materials Industry (NO.201808DW117), the test results of the product’s flame-resistant time, flame spread ratio, mass loss, and carbonization volume conform to the standard GB12441 -2005 technical index requirements for decorative fire retardant coatings.
[0053] In order to further improve the cleanliness of the shell powder, put the shell powder into a resonance device and resonate at...
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