Zircon sand alkali fusion decomposing equipment
A technology of zircon sand and alkali fusion, applied in the direction of zirconium compounds, inorganic chemistry, chemical instruments and methods, etc., can solve the problems of incomplete decomposition, low fusion degree of zircon sand and alkali solution, etc., and achieve good heating effect, stirring The effect is better and the effect of improving the quality of the product
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Embodiment 1
[0050] See Figure 1 to Figure 10 , the zircon sand alkali fusion decomposition equipment of the present embodiment comprises:
[0051] Stirring chamber 1 has a stirring chamber 1-1 inside, and an oil passage 1-2 for heating the stirring chamber 1-1 is arranged on the inner wall;
[0052] The spiral stirring roller 2 is arranged in the stirring chamber 1-1 of the stirring chamber 1;
[0053] The driving mechanism 3 is used to drive the spiral stirring roller 2 to rotate for stirring;
[0054] The vibration generating mechanism 4 is used for reciprocating axial displacement of the spiral stirring roller 2 to vibrate the material in the stirring chamber 1-1 when the spiral stirring roller 2 rotates.
[0055] The mixing chamber 1 is provided with a material inlet 1-3 and a material outlet 1-4 connected with the mixing chamber 1-1, and an oil inlet 1-5 and an oil outlet respectively connected with both ends of the oil passage 1-2. Mouth 1-6. The oil passage 1-2 is spirally arr...
Embodiment 2
[0070] This embodiment is basically the same as Embodiment 1, the difference is:
[0071] See Figure 11 with Figure 12 A hemispherical groove 4-3-2 is provided on one end surface of the driving piece 4-3 of the vibration generating mechanism 4 facing the fixed piece 4-2. The driving part is steel ball 4-3-3. The steel ball 4-3-3 is located on the hemispherical groove 4-3-2, and cooperates with the annular chute 4-2-1.
Embodiment 3
[0073] This embodiment is basically the same as Embodiment 1, the difference is:
[0074] The feeding and breaking up mechanism 5 includes a feeding box 5-1, a breaking up roller 5-2 and a second motor 5-3. The top of the blanking box 5-1 is provided with a blanking opening, and the bottom of the inner cavity of the blanking box 5-1 is the bottom of a shrinking cavity communicated with the feeding opening 1-3. The breaking up roller 5-2 is horizontally arranged in the cavity of the discharge box 5-1, and is connected in rotation with the inner wall of the discharge box 5-1. A plurality of breaking up thorns 5-2-1 are evenly distributed on the peripheral surface of the breaking up roller 5-2. The second motor 5-3 drives the rotation of the loosening roller 5-2.
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