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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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