- Product Introduction

This equipment is a three-stage aerated flotation machine specifically developed for teaching in mining, metallurgy, and mineral processing engineering. It integrates roughing, cleaning, and secondary cleaning units, completely replicating the industrial flotation process. It is an ideal teaching demonstration device for universities, vocational schools, and corporate training centers.
The main structure of the equipment adopts a modular tank design. Core configurations include:
- Three independent flotation tanks, sequentially completing the entire process of roughing, cleaning, and secondary cleaning;
- An external aerated stirring mechanism, coupled with an independent motor drive system, ensuring uniform bubble dispersion and thorough pulp mixing;
- An electric valve automatic lifting device, allowing real-time adjustment of the pulp level and precise control of the foam layer thickness;
- A visual observation window and foam collection tank, facilitating intuitive demonstration of key flotation processes such as mineralized bubble formation and foam scraping;
- Standardized interfaces and circulation pipelines, allowing connection to auxiliary reagent addition and water supply systems to simulate complete industrial production conditions.
The equipment boasts a compact structure and stable operation, providing a clear visual representation of key aspects of the flotation process, including mineral separation, reagent action, and liquid level control. This helps trainees understand flotation principles and industrial operation procedures.
- Product Advantages
Three-Stage Complete Process Simulation, Full Coverage of Teaching Scenarios: The three-stage design—roughing, cleaning, and secondary cleaning—completely replicates the grading and separation process of industrial flotation operations. It visually demonstrates the differences in pulp concentration, reagent formulation, and separation effects across different stages, helping trainees build a systematic understanding of flotation processes.
Electric Automatic Liquid Level Adjustment, Precise and Controllable Operation: Equipped with an electrically driven automatic lifting device, the equipment precisely adjusts the pulp level, achieving stable control of the foam layer thickness. This simulates automated control scenarios in industrial production while avoiding errors from manual adjustments, enhancing the stability and repeatability of teaching demonstrations.
Visualized Structural Design, Key Processes Clearly Displayed: The equipment features a transparent observation window and an open foam tank, allowing clear observation of core processes such as impeller stirring, bubble generation, mineralized bubble flotation, and foam scraping. This transforms abstract flotation principles into intuitive, dynamic demonstrations, significantly improving teaching effectiveness. With a stable and easy-to-maintain structure, it is suitable for teaching scenarios. It adopts a modular tank and standardized motor components, which is simple in structure, has a low failure rate, and is easy to maintain and clean. The equipment operates with low noise and low power consumption, making it suitable for laboratory teaching environments. At the same time, by adjusting parameters such as air volume, impeller speed, and reagent addition, comparative teaching experiments under different conditions can be carried out.
III. Technical Parameters
|
Item |
Specifications | Unit |
|
Model |
XCF/KYF-0.13 | |
|
Volume |
130 |
L |
| Impeller diameter | 200 |
mm |
|
Impeller speed |
687 | R/min |
| Power | 1.1*0.75 |
Kw |
|
Maximum inflation volume |
0.4 |
M3/min |
| Capacity | 0.05-0.3 |
M3/min |






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