Efficient baking-free brick activating agent
An activator and unburned brick technology, which is applied in the field of building material activators and high-efficiency activators, can solve the problems of high production cost, large amount of cement, and ineffective activation of activators, so as to increase usage and save usage , good activation effect
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Embodiment 1
[0016] Embodiment 1: the preparation of activator
[0017] Raw material ratio: diatomite, 20 parts; basic zinc carbonate, 10 parts; dibutyltin maleate, 10 parts; benzotriazole, 10 parts; sodium metasilicate, 30 parts; magnesium stearate, 25 parts; butyl titanate, 15 parts; 7 parts of potassium permanganate and zinc borate in total, and the weight ratio of potassium permanganate and zinc borate is 6:1.
[0018] Preparation method: Stir each raw material fully and evenly first, and then make a spherical high-efficiency activator through a ball forming machine.
Embodiment 2
[0019] Embodiment 2: the preparation of activator
[0020] Raw material ratio: diatomite, 15 parts; basic zinc carbonate, 5 parts; dibutyltin maleate, 5 parts; benzotriazole, 8 parts; sodium metasilicate, 25 parts; magnesium stearate, 20 parts; butyl titanate, 10 parts; a total of 6 parts of potassium permanganate and zinc borate, and the weight ratio of potassium permanganate and zinc borate is 5:1.
[0021] Preparation method: Stir each raw material fully and evenly first, and then make a spherical high-efficiency activator through a ball forming machine.
Embodiment 3
[0022] Embodiment 3: the preparation of activator
[0023] Raw material ratio: diatomite, 25 parts; basic zinc carbonate, 15 parts; dibutyltin maleate, 15 parts; benzotriazole, 12 parts; sodium metasilicate, 35 parts; magnesium stearate, 30 parts; butyl titanate, 20 parts; a total of 8 parts of potassium permanganate and zinc borate, and the weight ratio of potassium permanganate and zinc borate is 7:1.
[0024] Preparation method: Stir each raw material fully and evenly first, and then make a spherical high-efficiency activator through a ball forming machine.
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Abstract
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