Introduction

Stirred Ball Mill features a wide stirring speed ranging from 50 to 1400 rpm and has a volume of 1 L. The speed is managed via a frequency adjuster, offering fine control for optimized grinding conditions. It is capable of producing fine particles with an output granularity of up to 1 mm. Also, it includes an electric motor and a stirring rod and is compatible with various types of jars. This makes the stirred ball mill particularly useful for fine grinding in research, development, and quality control settings.

This analytical equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.

Applications

Our Stirred Ball Mill is widely used for grinding and dispersing materials like zirconia silicate, alumina oxide, ceramics, and electronic materials. It is suitable for coatings, medicine, new materials, and research applications.

Specifications

Stirring Speed 50 to1400 rpm
Speed Control Mode Frequency speed adjuster
Volume 1 L
Load Capacity 0.35 L
Feed Size Up to 5 mm
Output Granularity Up to 1 μm
Compatible Jars Standard : stainless steel
Optional: nylon, alumina ceramic, PU, zirconia, agate,
Power 370 W
Power Supply 220 V

Features

Adjustable grinding time

Stainless-steel jar

Low noise 

Low vibration and low noise

User-friendly operation

FAQs

1. How is the particle size controlled in the mill?

Particle size can be controlled by adjusting the grinding time and the milling speed. These settings provide precise control over the final granularity. Stirred Ball Mill is capable of output granularity of ? 1µm which ensures a fine particle size. Also the grinding media should be selected appropriately to achieve a desired particle size.

2. Is the mill suitable for heat-sensitive materials?

Yes, Stirred Ball Mill comes with an optional feature of Water cooling jacket that allows temperature control, making it suitable for milling heat-sensitive materials. Users can buy this optional accessory to make their mill suitable for various temperature-sensitive operations.

3. How do I select the right grinding media for any operation?

Grinding media are available in different materials, each chosen based on their hardness, resistance properties, and application suitability. Zirconia balls, with a Mohs hardness greater than 9.0, are extremely wear-resistant, chemically inert, and capable of withstanding high temperatures and corrosion. They are best used with zirconia, , nylon, corundum, PU, and tungsten carbide jars, making them suitable for high-purity applications such as advanced ceramics and pharmaceuticals. Stainless steel balls, with a hardness above 6.0, offer good wear and corrosion resistance and are ideal for general-purpose milling of metallic or abrasive materials when paired with stainless steel jars.

4. What are its advantages over a traditional Ball Mill?

Stirred ball mills provide key advantages over traditional ball mills, including the ability to achieve much finer particle sizes, often reaching the sub-micron or nanometer range. They are more energy-efficient, as the localized stirring action transfers energy directly to the grinding media. These mills also offer faster processing times, a compact design ideal for lab use, and easier scalability from research to production.

5. Does the grinding media size and material affect the grinding results?

The size, shape and matching ratio of the grind media can affect the grinding result. Generally speaking, the bigger the mill media is, the finer the grinding powder is. A proper match ratio of grind media and proper adjustment of rotation speed can get better grinding effect.

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