The Power of Precision — Our Balancing Stations

The Power of Precision — Our Balancing Stations

We operate two independent high-speed balancing stations, capable of testing rotors of various sizes, weights, and dynamic parameters — under full vacuum and across the entire range of rotational speeds in accordance with API and ISO standards.
We also have a low-speed balancing station for components weighing from 50 to 3,000 kg. With this equipment, we can perform both low- and high-speed balancing of virtually any rotor for turbines, compressors, pumps, and blowers, ranging in weight from 50 kg to 12,500 kg.
Additionally, we conduct overspeed (run-out) tests for impellers and rotors at speeds of up to 22,000 rpm.

Certificates

View PDF
View PDF
View PDF

HS23 Station

Precision for Medium-Sized Rotors

  • Rotor weight: up to 3,000 kg
  • Diameter: up to Ø1,200 mm
  • Length: up to 3,500 mm
  • Bearing span: 360–3,120 mm
  • Bearing diameter: up to Ø340 mm
  • Rotational speed: up to 20,000 rpm
  • Vacuum balancing: 10 mbar absolute pressure

HS26 Station

Station for Large-Scale Rotors — New Testing Hall

  • Rotor weight: up to 12,500 kg
  • Diameter: up to Ø2,300 mm
  • Length: up to 7,000 mm
  • Bearing span: 615–5,000 mm
  • Bearing diameter: up to Ø500 mm
  • Rotational speed: up to 8,000 rpm
  • Vacuum balancing: 10 mbar absolute pressure
  • Minimum shaft end distance from universal joint: 380 mm

Why Choose Us?

With us, you can be confident that every rotor leaving our facility is ready to perform under the most demanding conditions.
01 Extensive experience in dynamic rotor diagnostics
02 Balancing using influence coefficient method
03 Measurement of relative and absolute vibrations
04 Compliance with ISO and API standards

Diagnostics and Optimization

Dynamic condition diagnostics and optimization of large rotors in critical industrial machines during operation at nominal speeds.
Modern technology enables a comprehensive assessment of the technical condition of rotating machine rotors without the need for disassembly, under actual operating speeds. By integrating advanced diagnostic methods, it is possible to optimize dynamic characteristics and increase operational reliability.

We employ cutting-edge diagnostic technologies that allow complete evaluation of rotor condition in situ, under real operating speeds. Advanced methods make it possible to optimize dynamic behavior and enhance machine reliability.

This approach ensures improved operational safety, extended equipment lifespan, and optimized performance without the downtime associated with disassembly. Users benefit from enhanced reliability, reduced maintenance costs, and maximized efficiency of critical industrial machinery.