MIC Laboratory Wet Milling Machine
MIC Laboratory Wet Milling Machine Overview
At Mic Machinery, the MIC Laboratory Wet Milling Machine is designed for precision particle size reduction in laboratory and pilot-scale applications. It is widely used in materials research, formulation development, and small-batch production where consistency and control are critical. Unlike conventional dry systems, this equipment uses a liquid medium to disperse and grind materials, ensuring finer particle distribution and improved product stability. The system is engineered to support a wide range of viscosity levels, making it suitable for coatings, inks, pigments, ceramics, and advanced chemical formulations.
Precision Grinding System for Laboratory Applications
The core function of this Wet Milling Machine is to achieve ultra-fine grinding through high-shear and bead-milling technology. Inside the chamber, grinding media interact with the material under controlled agitation, continuously breaking down particles to micron or even sub-micron levels. This process significantly enhances dispersion quality compared with traditional milling methods.
Key performance characteristics include:
· High-efficiency particle size reduction through optimized bead movement and shear force
· Adjustable speed control to meet different material viscosity and hardness requirements
· Stable processing supported by a robust dual-end mechanical sealing system for long service life and consistent operation
· Fully enclosed grinding chamber design that helps prevent material contamination, reduces exposure to air, and minimizes bubble formation or solvent loss
· Flexible parameter settings for reproducible R&D results
This flexibility makes it an essential tool for R&D departments that require repeatable results before scaling up production. The machine also minimizes contamination risk through a closed-loop structure, ensuring clean and stable processing conditions for sensitive formulations.
Advanced Wet Grinding Performance and Stability
The MIC Laboratory Wet Milling Machine integrates advanced mechanical design to ensure consistent performance under different operating conditions. The rotor-stator structure and optimized grinding chamber geometry improve energy transfer efficiency, resulting in faster processing times and reduced material waste. This wet grinding mill is particularly effective for high-value materials where particle uniformity directly impacts final product quality.
Temperature control is another key advantage. During operation, heat generated from friction is efficiently dissipated through the liquid medium, preventing material degradation. This allows the system to handle heat-sensitive substances such as pharmaceutical intermediates, specialty chemicals, and functional coatings without compromising performance.
Flexible Wet Milling Equipment for Multiple Industries
Designed as versatile wet milling equipment, this system supports a broad range of industrial applications. In the silicone and chemical industries, it is used to refine fillers, improve dispersion of additives, and enhance material consistency. In pigment and ink production, it ensures uniform color distribution and superior stability. It is also suitable for ceramic slurries and nano-material research, where particle size precision is essential.
The laboratory configuration allows easy cleaning, quick material changeover, and low maintenance requirements. Operators benefit from intuitive control interfaces and modular components that simplify daily operation. Whether used for formulation testing or process optimization, the equipment provides reliable data that can be directly transferred to industrial-scale production systems.
Engineering Reliability and Scalable Process Development
Mic Machinery designs every MIC Laboratory Wet Milling Machine with scalability in mind. Data obtained from laboratory trials can be seamlessly applied to larger production systems, reducing development cycles and minimizing risk during scale-up. This makes the system a critical bridge between R&D and industrial manufacturing.
With its stable structure, efficient grinding performance, and precise control capabilities, the system ensures long-term operational reliability. The combination of engineering accuracy and process flexibility makes this Wet Milling Machine an essential solution for modern material development. For companies seeking improved dispersion quality and reproducible results, this platform delivers consistent value across research and production environments.
|
Model |
Effective Volume(L) |
Motor Power(kW) |
Batch Capacity(L) |
Flow Rate(kg/h) |
Dimension(mm) |
Weight(kg) |
|
WSM-1 |
1 |
4 |
3-30 |
20-60 |
950*650*800 |
150 |
|
WSM-5 |
5 |
5.5 |
20-100 |
20-200 |
1100*800*1500 |
400 |
|
WSM-10 |
10 |
11 |
50-260 |
60-800 |
1250*900*1600 |
750 |
|
BSM-0.5 |
0.5 |
4 |
2-20 |
15-100 |
900*700*1000 |
160 |
|
BSM-1 |
1 |
4 |
2-30 |
15-100 |
900*700*1000 |
165 |
|
BSM-2 |
2 |
7.5 |
10-100 |
200-500 |
1150*1110*1250 |
350 |
|
BSM-10 |
10 |
18.5-22 |
20-150 |
200-800 |
1200*1100*1600 |
960 |
* BSM refers to a pin-type structure, while WSM refers to a disc-type structure.
* The selection depends on factors such as material viscosity, grinding conditions, and the pump conveying method.
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