Hammer Mill

Design and Parameters of Pharmaceutical Hammer Mill

Our Hammer Mill design is ideal for the efficient milling of pharmaceutical powders. Particle size is reduced through the mechanical impact of the rotor's hammer bars. The desired particle size reduction is obtained by selecting the appropriate screening grid hole diameter. The final collected particles are then expelled through the grid with the desired size.

The final particle size distribution is controlled by adjusting the feed rate, grid hole size, and rotor speed. Our Hammer Mill equipment also uses AISI 316 stainless steel components, ensuring high-quality and safe contact with the powder.

Our Hammer Mill design offers efficient particle size reduction for pharmaceutical powders. Its adjustable parameters and use of high-quality materials make it a reliable and effective milling solution.

How does it work

The Hammer Mill C-10 technology operates by using the mechanical impact of the rotor's hammer bars on the powder, shredding and crushing aggregate products into smaller particles of over 150 microns. The high-speed rotating rotor with multiple hammer bars creates a strong impact force, reducing the size of the material until it meets the desired particle size. We can use the resulting powder in various applications, such as animal feed, fertilizer, or chemical production. The C-10's advanced technology ensures efficient and effective processing, improving productivity and reducing operational costs.

The Advantages of HammerMill C-10 technology

The HammerMill C-10 technology offers several advantages for pharmaceutical milling applications. Firstly, it can achieve the desired PSD of over 150 microns, making it ideal for processing a wide range of products. Secondly, the C-10 is designed to operate in harsh milling conditions, making it a robust and reliable option for demanding industrial environments.

The high-speed rotating rotor with multiple hammer bars creates a strong impact force, efficiently shredding and crushing materials to the desired particle size. The result is a uniform and homogenous particle size distribution, with precise and accurate control of the final product.

Another advantage of the HammerMill C-10 is its low maintenance requirements and ease of cleaning; it ensures minimal downtime and maximum productivity, reducing operational costs and increasing efficiency. Additionally, the C-10 provides a high throughput rate, enabling large-scale production to meet the demands of high-volume industrial applications.

In summary, the HammerMill C-10 technology is an ideal option for pharmaceutical powder milling applications, offering efficient processing of a wide range of products in harsh conditions. With its precise control of particle size distribution, low maintenance requirements, and high throughput rate, the C-10 provides a cost-effective and reliable solution for pharmaceutical milling needs.

How it works

Hammer Mill C-10 technology

The Hammer Mill C-10 technology operates by using the mechanical impact of the rotor's hammer bars on the powder, shredding and crushing aggregate products into smaller particles of over 150 microns.

  • Mechanical impact of the rotor’s hammer bars on the powder
  • Shred / crush aggregate products to smaller particles
  • > 150 microns

Advantages

Advantages of HammerMill C-10 Technology for Pharmaceutical Milling

The Hammer Mill C-10 technology offers several advantages for pharmaceutical milling applications, offering efficient processing of a wide range of products in harsh conditions.

  • Achieve PSD > 150 microns
  • Harsh milling condition

Applications

Range of Application

  • Pharmaceutical industry
  • Oral dosage form
  • Transdermal drug delivery
  • Oncological solid dosage form
  • New Chemical Entities, R & D

Start a project with us

We are world leading player in the field of particle size engineering for pharmaceutical substances.

Range of Products

Contact Us

Start a project with us

Find out how Munit can help you to increase the bioavailability of your pharmaceutical substances by reducing their particle size.

Cookie bar

We use cookies and other tracking technologies to improve your experience and analyse our website traffic.

Please consult our Privacy Policy for more information.

By clicking on “Accept”, you consent to your data being collected

You can change your cookie settings and disable cookies, except for essential functional ones, at any time.


Functional
Preference
Statistical
Marketing