Fireproof flame-resistant core board material and production method thereof
A technology of fire prevention and flame retardancy and production methods, which is applied in the direction of chemical instruments and methods, layered products, lamination devices, etc., can solve the problems of home life, environmental protection and health adverse effects, uneven fire performance, and weak fire protection ability, etc., to achieve Conducive to environmental protection, improve decoration efficiency, simple construction effect
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Embodiment 1
[0032] The fire-resistant and flame-retardant core board material of this embodiment is made of a mixture of three components, A component, B component, and C component, and fiber cloth:
[0033] The A component is a mixture of magnesium chloride, titanium dioxide, expansion agent and thickener: the weight ratio of each component: magnesium chloride 88kg, titanium dioxide 5kg, expansion agent (SY-G high-performance expansion anti-cracking agent) 5kg 1. Cement thickener 2 kg; add water to prepare a mixture of magnesium chloride, titanium dioxide, expansion agent and thickener with a weight concentration of 30%;
[0034] The B component is heavy magnesium oxide;
[0035] The C component is a filler, which is composed of dry and crushed plant straw, fly ash, slag and polystyrene foam particles; the weight ratio of each component is: plant straw 40 kg, fly ash 50 kg, polystyrene Ethylene foam particles 10 kg;
[0036] In the three-component mixture, the weight ratio of A compone...
Embodiment 2
[0055] Component A: the weight ratio of each component: magnesium chloride 96.5kg, titanium dioxide 2kg, SY-G type high-performance expansion anti-cracking agent) 1kg, cement thickener 0.5 kg; add water to prepare magnesium chloride and Titanium dioxide, expansion agent and thickener mixture;
[0056] Component B: industrial magnesium oxide;
[0057] Component C: 90 kg of slag, 10 kg of polystyrene foam particles;
[0058] In the three-component mixture, the weight ratio of A component, B component, and C component is 1: 1.5: 2; the mixture of the A, B, and C three components is evenly distributed in the stacked Alkaline roving glass mesh cloth between, constituting a solid sheet.
[0059] Hardening time 10 hours. The rest are the same as embodiment 1.
[0060] The specific requirements for various raw materials are also the same as in Example 1.
[0061] The product of this example is tested according to the method specified in GB / T5464-1999. The temperature rise in the ...
Embodiment 3
[0063] Component A: The weight ratio of each component: 92.0kg of magnesium chloride, 3.5kg of titanium dioxide, 3kg of SY-G high-performance expansion and anti-cracking agent, 1.5 kg of cement thickener; add water to prepare magnesium chloride with a weight concentration of 40%. Mixed with titanium dioxide, expansion agent and thickener;
[0064] Component B: industrial heavy magnesium oxide;
[0065] Component C: 70 kg of plant straw, 10 kg of fly ash, and 20 kg of polystyrene foam particles;
[0066] In the three-component mixture, the weight ratio of A component, B component, and C component is 1: 1.3: 1.5; the mixture of the A, B, and C three components is evenly distributed in the stacked Alkaline roving glass mesh cloth between, constituting a solid sheet.
[0067] Hardening time 20 hours. The rest are the same as embodiment 1.
[0068] The specific requirements for various raw materials are also the same as in Example 1.
[0069] The products of Examples 1, 2, and...
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