WAB: DYNO-MILL ECM-AP 05 Bead Mill

Laboratory Agitator Bead Mill

ENQUIRE

Enquire

The DYNO-MILL ECM-AP high-performance laboratory mill sets the standard for precision in particle size reduction. Specially designed for laboratory applications, this advanced agitator bead mill delivers the finest and narrowest particle distributions down to the nanometer range. As the dedicated scale-up model for the DYNO-MILL ECM-AP series, it offers researchers and developers exceptional flexibility, efficiency, and reliability for demanding milling and dispersing tasks.

Key Features

Feature Grinding beads circulation
Feature Deflection ring
Feature Screen surface
Feature DYNO-ACCELERATOR DSE for powerful and efficient wet grinding

The DYNO-MILL ECM-AP laboratory mill has been developed to meet the specific requirements of R&D environments, making it ideal for producing new formulations with minimal product quantities while enabling accurate scale-up calculations. With its innovative design, the mill ensures highly efficient energy input, even for the most challenging dispersing and size reduction applications, achieving consistently uniform particles at the nanometer scale.

A key advantage of this DYNO-MILL ECM-AP model is its versatile housing, which allows the integration of a second grinding chamber using DYNO-UNIVERSAL technology. This feature significantly enhances flexibility and cost-effectiveness, giving laboratories the ability to test and adapt formulations efficiently.

The ECM-AP mill is equipped with a state-of-the-art grinding media separation system, designed around a flow-optimized, guided media circuit. Grinding media are axially directed across the screen surface by the deflection ring, while the DYNO-ACCELERATOR DSE ensures a continuous return flow without detachment. This axial guidance not only facilitates the removal of coarse particles but also enables the system’s unique self-cleaning effect, delivering consistent performance with reduced maintenance.

In summary, the DYNO-MILL ECM-AP combines laboratory-scale precision with production-level scalability, making it the preferred choice for researchers and manufacturers aiming for superior particle distribution, efficient processing, and long-term cost savings.

Why is the DYNO-MILL ECM-AP superior?

  • Suitable for high throughputs and highly viscous products
  • Availability of metallic and ceramic variants
  • Uniform grinding media density distribution in the grinding chamber for maximum efficiency
  • Efficient grinding with grinding media from ø 0.1 mm
  • Low energy consumption thanks to hydraulic grinding media acceleration
  • Holistically optimized flow control for optimum particle residence time distribution
  • Suitability for the production of all types of nano-suspensions
  • Suitability for passage and circulation mode
  • Grinding of temperature-sensitive products thanks to very effective cooling of the grinding chamber
  • Simple and ergonomic machine handling for the fastest product changes
  • Long screen life
  • Minimal costs for cleaning agents when changing products
  • Low noise level
  • Wide range of control solutions

Downloads

The DYNO-MILL ECM-AP laboratory mill has been developed to meet the specific requirements of R&D environments, making it ideal for producing new formulations with minimal product quantities while enabling accurate scale-up calculations. With its innovative design, the mill ensures highly efficient energy input, even for the most challenging dispersing and size reduction applications, achieving consistently uniform particles at the nanometer scale.

A key advantage of this DYNO-MILL ECM-AP model is its versatile housing, which allows the integration of a second grinding chamber using DYNO-UNIVERSAL technology. This feature significantly enhances flexibility and cost-effectiveness, giving laboratories the ability to test and adapt formulations efficiently.

The ECM-AP mill is equipped with a state-of-the-art grinding media separation system, designed around a flow-optimized, guided media circuit. Grinding media are axially directed across the screen surface by the deflection ring, while the DYNO-ACCELERATOR DSE ensures a continuous return flow without detachment. This axial guidance not only facilitates the removal of coarse particles but also enables the system’s unique self-cleaning effect, delivering consistent performance with reduced maintenance.

In summary, the DYNO-MILL ECM-AP combines laboratory-scale precision with production-level scalability, making it the preferred choice for researchers and manufacturers aiming for superior particle distribution, efficient processing, and long-term cost savings.

Why is the DYNO-MILL ECM-AP superior?

  • Suitable for high throughputs and highly viscous products
  • Availability of metallic and ceramic variants
  • Uniform grinding media density distribution in the grinding chamber for maximum efficiency
  • Efficient grinding with grinding media from ø 0.1 mm
  • Low energy consumption thanks to hydraulic grinding media acceleration
  • Holistically optimized flow control for optimum particle residence time distribution
  • Suitability for the production of all types of nano-suspensions
  • Suitability for passage and circulation mode
  • Grinding of temperature-sensitive products thanks to very effective cooling of the grinding chamber
  • Simple and ergonomic machine handling for the fastest product changes
  • Long screen life
  • Minimal costs for cleaning agents when changing products
  • Low noise level
  • Wide range of control solutions

More Information

More Information
Inquire Only Yes
Manufacturer WAB
Category Milling & Grinding

Reviews

Write Your Own Review
You're reviewing:WAB: DYNO-MILL ECM-AP 05 Bead Mill

News

Safe & Sustainable By Design

Since 2020, we have remained dedicated to our principle of ‘Safe & Sustainable by Design’ — embracing a greater sense of individual responsibility toward protecting the environment and promoting long-term ecological well-being.

#safeandsustainablebydesign

Read our statement

sustainable pic

Some of our customers