co-nele intensive mixer

Lab Intensive Mixer for R&D and Recipe Optimization

2025.1.6  |  CO-NELE

High Shear Lab Mixers

On the road of scientific research and technological innovation, every experiment in the laboratory is crucial. The success of the experiment often depends on the accuracy of the experimental equipment and technology. CONELE small laboratory intensive mixer has solved the mixing problem for many customers.

Mixing Technology for Lab-Scale Projects

Accurate mixing, improving the quality of the experiment

The small laboratory intensive mixer, with its unique inclined design (also known as inclined intensive mixer), realizes efficient mixing of materials during the mixing process. This design makes the material subject to multiple shear forces and centrifugal forces in the mixing barrel, thereby ensuring the uniformity and accuracy of the mixing. In many fields such as lithium batteries, electromagnetic ferrites, refractory materials, glass, ceramics, chemicals, foundry sand, compound fertilizers, etc., it can provide your experiments with stable and reliable mixing effects.

Small Mixer

Efficient and convenient, optimizing the experimental process
Time is efficiency. The small laboratory intensive mixer can complete efficient mixing in a short time, greatly shortening the experimental cycle. Its intelligent control system and simple operation interface allow users to easily set and adjust the mixing parameters, so as to quickly achieve the expected mixing effect.
Durable and reliable, ensuring long-term use
The small laboratory intensive mixer adopts high-strength materials and precise manufacturing processes to ensure the stability and durability of the equipment. Even in a continuous high-intensity working environment, it can maintain excellent performance, reduce maintenance costs and downtime. 
Flexible and applicable to meet a variety of needs
Whether it is small-scale laboratory research or industrial production, the inclined intensive mixer can provide a flexible solution. Its diverse configuration options and extended functions (such as vacuum, heating, cooling, etc.) can meet the needs of different fields and different scales of experiments.

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