Laboratory Equipment – LAB BONDING MIXER | Jatchen

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Laboratory Equipment – LAB BONDING MIXER | Jatchen
Description

A lab bonding mixer is a device for tightly combining materials of different properties (e.g., pigments with resins, additives with matrix materials). It is mainly used in scientific research and small-batch production fields such as chemical industry, coatings, plastics, and electronic materials. Through high-speed rotating stirring components, materials undergo intense shearing, impact, and friction to achieve uniform mixing and coating, forming composite materials with specific properties.

Product Parameters
Model

 

Hot Cool Output/ Output/ Motor Total Dimension
Mixing Mixing Batch Hour (kW) Power (mm*mm*mm)
(L) (L) (kg) (kg/h) (kW)
BD04 4 1.5 4 1.5 8 1100*600*1300
Features

Efficient mixing and bonding: Equipped with high-speed stirring blades and dispersion discs, it enables full mixing and bonding in a short time. For example, in coating R&D, it can quickly disperse and coat pigments in resin matrices to form stable coating slurries, with much higher efficiency than traditional stirring methods.

 

High mixing uniformity: Unique stirring structure creates complex material flow, ensuring full shearing and mixing in all directions for high uniformity. It guarantees consistent performance for electronic materials with strict composition uniformity requirements.

 

Flexible parameter adjustment: Stirring speed and time can be adjusted based on material properties and process requirements. For hard-to-disperse materials, increase speed to enhance shearing; for heat-sensitive materials, reduce speed and control time to prevent overheating-induced performance changes.

 

Flexible batch size: Suitable for small-batch experiments, handling 100s of grams to several kilograms per batch, meeting diverse R&D needs. Researchers can choose batch sizes based on plans and costs to reduce R&D expenses.

 

Easy operation: Intuitive interface for parameter setting, start/stop. Structure facilitates material adding and discharging, reducing operational steps.

 

Easy cleaning and maintenance: Detachable parts (e.g., stirring blades, dispersion discs) simplify cleaning, preventing cross-contamination and ensuring accurate results. Corrosion- and wear-resistant materials reduce maintenance frequency and costs.

 

High safety: Multiple safeguards (overload protection, leakage protection, lid-open shutdown) prevent operator injuries and ensure safe experiments.

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