Dual component liquid silica gel for 3D printing and printing method thereof
A liquid silicone and 3D printing technology, applied in the field of 3D printing, can solve the problems of undisclosed two-component mixed silicone technology details, loss of some characteristics of silicone, clogging of printing nozzles, etc., to achieve long-term thickening excellent, improve printing accuracy and Excellent surface quality and good elasticity
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Embodiment 1
[0051] (1) 100g of α with a viscosity of 2Pa·s and a vinyl content of 0.65mol%, ω-divinylpolydimethylsiloxane, 5g of chloroplatinic acid divinyltetramethyldisiloxane, 10g Polyoxypropylene diol with a molecular weight of 4000, 1g of hydrophilic fumed silica, 10g of calcium carbonate and 1g of food-grade blue silica gel pigment were added to a stirring tank and mixed evenly, then removed to a three-roll machine and ground to a fineness <100 μm, and then Move it into a stirred tank and stir at room temperature for 2 hours under the condition of a vacuum degree of -0.1MPa, and finally filter under high pressure, move into the first cylinder C with a piston and seal it for storage, and obtain component A;
[0052] (2) 80 g of α, ω-divinyl polydimethylsiloxane with a viscosity of 2 Pa·s and a vinyl content of 0.65 mol%, and 20 g of α with a viscosity of 200 Pa·s and a vinyl content of 0.06 mol% , ω-divinyl polymethylphenylsiloxane, 30g viscosity is 0.02Pa·s, hydrogen content is 1% m...
Embodiment 2
[0058] (1) 100g of α, ω-divinylpolydimethylsiloxane with a viscosity of 2Pa·s and a vinyl content of 0.65mol%, 0.01g of chloroplatinic acid, 2g of polyoxypropylene-oxyethylene copolyether Pluronic -L35, 4g of hydrophilic fumed silica and 6g of vinyl MQ resin were added to the stirred tank and mixed evenly, then removed to a three-roll machine and ground to a fineness <100μm, and then moved into the stirred tank under the condition of a vacuum of -0.1MPa Stir at room temperature for 2 hours, and finally filter under high pressure, move into the first cylinder C with a piston and seal it for storage to obtain component A;
[0059] (2) 70 g of α with a viscosity of 10 Pa·s and a vinyl content of 0.2 mol%, ω-divinylpolydimethylsiloxane, 30 g of α with a viscosity of 3 Pa·s and a vinyl content of 10 mol%, ω-Divinylpolymethylvinylsiloxane, 50g of methylphenyl hydrogen-containing polysiloxane with a viscosity of 0.2Pa·s and a hydrogen content of 0.1%, 0.01g of tetramethyltetravinylcy...
Embodiment 3
[0065] (1) 100g of α with a viscosity of 1Pa·s and a vinyl content of 0.8mol%, ω-divinyl polydimethylsiloxane, 0.2g of chloroplatinic acid-diethyl phthalate, 2g of Add 2000 polyoxypropylene diol, 4g hydrophobic fumed silica and 6g kaolin into the stirring tank and mix evenly, move it to a three-roll machine and grind it to a fineness <100μm, then move it into the stirring tank at a vacuum of -0.1MPa Stir at room temperature for 2 hours under certain conditions, and finally filter under high pressure, move into the first barrel C with a piston and seal it for preservation, and obtain component A;
[0066] (2) 50g of α with a viscosity of 0.2Pa·s and a vinyl content of 2mol%, ω-divinyl polydimethylsiloxane, 50g of α with a viscosity of 10Pa·s and a vinyl content of 3mol%, ω-Divinylpolymethylvinylsiloxane, 20g of phenyl hydrogen-containing silicone resin with a viscosity of 0.15Pa·s and a hydrogen content of 0.7%, 0.1g of azobenzene-4,4'-dicarboxylic acid di Methyl ester, 2g pol...
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