Purpose:
Usable for rubber or plastic plasticzing and mixing or rubber and plastic blending.
Features:
1. Rubber or plastic stock can be plasticized or mixed in a closed and pressurized space with the temperature controlled so that the productivity is high and the quality is good and stable.
2. Optimization of the parameters such as the helical angle of rotor wings and the wing overlap length brings about even distribution of the stock.
3. All the parts in contact with stock are ground, plated with hard chrome and polished. The rotor wings are built up by welding with the abrasion-proof sintered carbide to resist abrasion and corrosion.
4. All the parts in contact with stock are of the jacket design where water/steam/medium oil is lead through to provide cooling or heating and can meet different requirements for the rubber or plastic mixing process.
5. Stock is fed through the rear door of the framework (or another port) and discharged by the mixing chamber tilting forward by 140°. Such a design makes it possible to arrange the upstream and the downstream process steps in a line and facilitates stock color changing and the mixing chamber cleaning.
Purpose:
Usable for rubber or plastic plasticzing and mixing or rubber and plastic blending.
Features:
1. Rubber or plastic stock can be plasticized or mixed in a closed and pressurized space with the temperature controlled so that the productivity is high and the quality is good and stable.
2. Optimization of the parameters such as the helical angle of rotor wings and the wing overlap length brings about even distribution of the stock.
3. All the parts in contact with stock are ground, plated with
hard chrome and polished. The rotor wings are built up by welding with the abrasion-proof sintered carbide to resist abrasion and corrosion.
4. All the parts in contact with stock are of the jacket design where water/steam/medium oil is lead through to provide cooling or heating and can meet different requirements for the rubber or plastic mixing process.
5. Stock is fed through the rear door of the framework (or another port) and discharged by the mixing chamber tilting forward by 140°. Such a design makes it possible to arrange the upstream and the downstream process steps in a line and facilitates stock color changing and the mixing chamber cleaning.
Rubber(PLASTIC)DISPERSION MIXER
size | X(S)N- 1X12-58 | X(S)N-3X 32(6-60) | X(S)N- 10X32 | X(S)N- 20X32 | X(S)N- 35X30 | X(S)N-55X30 | X(S)N-75X30 | X(S)N-110x30 | X(S)N- 150x30 | X(S)N- 200x30 | X(S)N- 300x30 |
Total volume of mixing chamber (L) | 3 | 8 | 25 | 45 | 75 | 125 | 180 | 250 | 325 | 440 | 700 |
Working volume of mixing chamber (L) | 1 | 3 | 10 | 20 | 35 | 55 | 75 | 110 | 150 | 200 | 300 |
Driving motor power (KW) | 4 | 5.5 | 15 | 30 | 55 | 75 | 110 | 185 | 220 | 280 | 280/400 |
Tilting motor power (KW) | | 0.55 | 1.1 | 1.5 | 2.2 | 2.2 | 4 | 4 | 5.5 | 7.5 | 7.5 |
Tilting angle (°) | ≤140 | 135 | 140 | 140 | 140 | 140 | 140 | 140 | 140 | 140 | 140 |
Rotational speed of the rotor (front/rear) r/min | 12-58 | 6-60 32/24.5 | 32/23.5 | 32/25 | 30/24.5 | 30/24.5 | 30/24.5 | 30/24.5 | 30/24.5 | 30/24.5 | 30/24.5 |
Pressure of compressed air (MPa) | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.6-0.8 | 0.6--08 | 0.6-0.8 | 0.6-0.8 | 0.6-0.8 | 0.6-0.8 |
Capacity of compressed air (m3/min) | ≥0.3 | ≥0.3 | ≥0.5 | ≥0.7 | ≥0.9 | ≥1.0 | ≥1.0 | ≥1.5 | ≥2.0 | ≥2.0 | ≥2.0 |
Pressure of cooling water (MPa) | 0.2-0.4 | 0.2-0.4 | 0.2-0.4 | 0.2-0.4 | 0.3-0.4 | 0.3-0.4 | 0.3-0.4 | 0.3-0.4 | 0.3-0.4 | 0.3-0.4 | 0.3-0.4 |
Pressure of heating steam (plastic mixing) MPa | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 | 0.5-0.8 |
Overall dimension (length x width x height) (mm) | 1400X 760X 1914 | 1660x 960x 1750 | 2580X 1300X 2280 | 2630x 1520x 2550 | 3200X 1900X 2950 | 3280X 1930X 3070 | 3330X2 620X 3340 | 3930x 3000x 3660 | 4200x 3300x 3900 | 4520x 3400x 4215 | 5070x 3500x 4600 |
Weight Kg | 800 | 2000 | 3300 | 4500 | 6500 | 7800 | 105000 | 14500 | 19500 | 22500 | 27500 |