Description
Submersible Mixers Description
Submersible Mixers principle
Component
- Motor
- Upper bearing
- Seal monitoring&indication
- Solids deflection ring
- Mechanical seal
- Axial flow propeller
- Bracket
- Control System
- Corrosion resistant shell
The operating principle centers on converting electrical energy into controlled hydrodynamic flow. The motor drives an impeller (typically a three-blade propeller or specialized mixing disc) that rotates at optimized speeds. This rotation creates a powerful axial or radial flow pattern, generating a directional current within the vessel. This current ensures complete circulation, preventing sedimentation, maintaining solids in suspension, equalizing temperature and concentration gradients, and enhancing chemical or biological reactions by ensuring uniform contact between components.
| Componente | Material |
|---|---|
| Shell | Stainless steel/GG25 cast iron |
| Impeller | Stainless steel/Fiberglass Polyurethane |
| Shaft | ASTM431 or 420 stainless steel |
| Mechanical seal | Corrosion resistant cemented tungsten carbide/or silicon carbide |
| Guide rod | ASTM304 Stainless steel |
| Lifting bracket | ASTM304 Stainless steel |
| Lifting cable | ASTM304 Stainless steel |
| Fasteners | ASTM321 Stainless steel |

Submersible Mixers Parameter
| Model | Power (kW) | Current (A) | Rotary speed (rpm) | Impeller diameter (mm) | Force (N) | Weight (kg) |
|---|---|---|---|---|---|---|
| SMB0.85/8-260/3-740/C/S | 0.85 | 3.4 | 740 | 260 | 163 | 55/58 |
| SMB1.5/6-260/3-980/C/S | 1.5 | 4.4 | 980 | 260 | 290 | 55/58 |
| SMB2.2/8-320/3-740/C/S | 2.2 | 5.9 | 740 | 320 | 582 | 74/77 |
| SMB4/6-320/3-980/C/S | 4 | 10.8 | 980 | 320 | 609 | 74/77 |
| SMB1.5/8-400/3-740/S | 1.5 | 5.6 | 740 | 400 | 382 | 76/80 |
| SMB2.5/8-400/3-740/S | 2.5 | 7.3 | 740 | 400 | 575 | 76/80 |
| SMB3/8-400/3-740/S | 3 | 8.6 | 740 | 400 | 642 | 78/82 |
| SMB4/6-400/3-980/S | 4 | 10.3 | 980 | 400 | 1010 | 80/84 |
| SMB4/12-620/3-480/S | 4 | 14 | 480 | 620 | 1230 | 240/245 |
| SMB5/12-620/3-480/S | 5 | 18.2 | 480 | 620 | 1420 | 240/245 |
| SMB7.5/12-620/3-480/S | 7.5 | 28 | 480 | 620 | 1963 | 255/270 |
| SMB10/12-620/3-480/S | 10 | 32 | 480 | 620 | 2361 | 255/270 |
Energy-saving Submersible Mixers Selection

Submersible Mixers Installation Method

Submersible Mixers Factor
- Selection Factor: Match impeller diameter and motor power according to tank area, water depth and sludge viscosity to ensure full coverage of circulating thrust.
- Operation Factor: Maintain standard diving depth to avoid insufficient thrust caused by shallow water operation.
- Safety Factor: Reinforce base fixation to resist strong water flow impact and prevent equipment displacement.

Submersible Mixers Features
- Super Wide Circulation Coverage: Large-diameter impeller forms three-dimensional water circulation without dead angles in large tanks.
- Sludge Activity Protection: Low-speed operation avoids shear damage to activated sludge to stabilize biochemical treatment effect.
- High Energy Saving Rate: Save 25%-30% energy compared with traditional high-speed mixers under the same working condition.
- Strong Overload Resistance: Adapt to high-concentration sludge operation with low failure rate and long service life.

Submersible Mixers Application
- Large municipal sewage plant anaerobic, anoxic and aeration tank water circulation and homogenization.
- High-concentration sludge storage tanks and regulating tanks anti-sedimentation treatment.
- Large-scale environmental protection water treatment projects requiring long-distance water circulation.


Supplier Information
Contact us today for a free application review and mixer selection recommendation!
