Product
Contact Us
- Mr. Zhang 13961458166
- 0519-88908166
- xldry8166@163.com
- No. 67, Zhujia Bridge, Sheng'an Village, Zhenglu Town, Tianning, Changzhou, Jiangsu
- Product Details
- Photo Collection


Description:
The compound motion of materials within the cone is generated by the rotation and self-rotation of the spiral, mainly resulting in four types of motion.
Category:
Mixed equipment series
Detailed description:
Overview:
The compound motion of materials within the cone is generated by the rotation and self-rotation of the spiral, primarily resulting in four types of motion:
1. The spiral revolves around the wall, causing the material to make circular motion along the conical wall;
2. The spiral rotation causes the material to ascend along the spiral from the conical bottom;
3. The combined motion of the spiral's revolution and rotation causes a portion of the material to be absorbed into the spiral cylindrical surface, while simultaneously, the centrifugal force resulting from the spiral's rotation forces a portion of the material within the spiral cylindrical surface to radially discharge towards the cone;
4. The ascending material descends due to its own gravitational force. The four types of motion within the mixer generate convection, shear, and diffusion, thereby achieving the goal of rapid and uniform mixing.
Features:
● A flying knife and spray atomization assembly can be added to meet special process requirements.
● The discharge valve offers both manual and pneumatic options.
● For special materials, the motor power can be increased (for heavy-duty applications).
Application:
It is applied to the mixing, reaction, drying, and cooling of powder-powder (solid-solid), powder-liquid (solid-liquid), and liquid-liquid (liquid-liquid) mixtures in the chemical, pharmaceutical, pesticide, dye, petroleum, metallurgy, and building materials industries.
Technical parameters:
Model | Total volume(m3) | Load factor | Installed power(kw) | Operating conditions | Overall dimensions(mm) | Weight(kg) |
DSH-0.1 | 0.1 | ≤0.6 | 1.5 | Dust seal under normal temperature and pressure | 1569φ702 | 250 |
DSH-0.3 | 0.3 | ≤0.6 | 2.2 | Dust seal under normal temperature and pressure | 1929φ920 | 550 |
DSH-0.5 | 0.5 | ≤0.6 | 3 | Dust seal under normal temperature and pressure | 2322φ1124 | 660 |
DSH-1.0 | 1.0 | ≤0.6 | 4 | Dust seal under normal temperature and pressure | 2869φ1480 | 1200 |
DSH-1.5 | 1.5 | ≤0.6 | 5.5 | Dust seal under normal temperature and pressure | 3140φ1633 | 1350 |
DSH-2.0 | 2.0 | ≤0.6 | 5.5 | Dust seal under normal temperature and pressure | 3489φ1816 | 1500 |
DSH-3.0 | 3.0 | ≤0.6 | 7.5 | Dust seal under normal temperature and pressure | 3747φ2210 | 2300 |
DSH-4.0 | 4.0 | ≤0.6 | 11 | Dust seal under normal temperature and pressure | 4362φ2280 | 2520 |
DSH-5.0 | 5.0 | ≤0.6 | 15 | Dust seal under normal temperature and pressure | 4576φ2402 | 3000 |
DSH-6.0 | 6.0 | ≤0.6 | 15 | Dust seal under normal temperature and pressure | 4900φ2582 | 3150 |
DSH-8.0 | 8.0 | ≤0.6 | 18.5 | Dust seal under normal temperature and pressure | 5405φ2805 | 4500 |
DSH-10 | 10 | ≤0.6 | 20.7 | Dust seal under normal temperature and pressure | 5795φ3018 | 5500 |
DSH-15 | 15 | ≤0.6 | 24.2 | Dust seal under normal temperature and pressure | 6475φ3450 | 6600 |
DSH-20 | 20 | ≤0.6 | 41 | Dust seal under normal temperature and pressure | 7535φ3805 | 7000 |
DSH-25 | 25 | ≤0.6 | 41 | Dust seal under normal temperature and pressure | 7995φ4078 | 8500 |
DSH-30 | 30 | ≤0.6 | 52.5 | Dust seal under normal temperature and pressure | 8385φ4330 | 9200 |
- BACK
- Previous:High Speed Mixer
- Next:Square Cone Mixer
Experts analyze that the Chinese rotar···
26.01.28Working principle of purifying hot air···
26.01.28Spray drying is a method of systematic···
26.01.28Troubleshooting and equipment advantag···
26.01.28How to choose a suitable hot air circu···
26.01.28Methods of spray drying and comparison···
26.01.28Internal structure and atomization pro···
26.01.28Granulation function of horizontal spr···
26.01.28New Trends in the Integration of Dryin···
26.01.28Comparison and difference between ultr···
26.01.28






