Fluid Power World

  • Home
  • Technologies
    • Hydraulics
      • Cylinders & Actuators
      • Filtration/Contamination Control
      • Fittings, Couplings & Adapters
      • Fluids
      • Fluid Conditioning
      • Hose & Tubing
      • Pumps & Motors
      • Related Technologies
      • Sealing
      • Sensors & Gauges
      • Valves & Manifolds
    • Pneumatics
      • Air Preparation & Regulation
      • Compressed Air Technologies
      • Cylinders & Actuators
      • End Effectors & Grippers
      • Fittings, Couplings & Adapters
      • Hose & Tubing
      • Sensors
      • Vacuum
      • Valves & Manifolds
  • Engineering Basics
  • Trending
  • Resources
    • Digital Issues
    • Pneumatics Tech Toolbox
    • Podcasts
    • Subscribe to Fluid Power World Print Magazine
    • Videos
    • Webinars / Digital Events
    • White Papers
  • Women in Engineering
    • Women in Fluid Power
    • Women in Engineering
  • Design Guide Library
  • Classrooms
    • Pneumatics Classroom
  • SUBSCRIBE

Where are electropneumatic flow controllers used?

By Mary Gannon | February 10, 2022

Share

By Justin Fluegel, Contributor

Flow in a fluid power system is synonymous with the velocity of an actuator. Electro-pneumatic flow control valves are used in applications where it is important to control the revolutions per minute of a pneumatic motor or speed of the linear actuator in machinery, such as this plastic roll machine. 

Electropneumatic flow control valves are used in applications where it is important to control the revolutions per minute of a pneumatic motor or speed of the linear actuator in machiney, such as this plastic roll machine.
Electropneumatic flow control valves are used in applications where it is important to control the revolutions per minute of a pneumatic motor or speed of the linear actuator in machiney, such as this plastic roll machine.

Both require feedback information to the controller to regulate the mass flow. For a linear speed control, such as speed of a pneumatic cylinder, a linear variable displacement transducer (LVDT) allows the controller to have the velocity of the cylinder and adjust the mass flow to it to directly reduce or increase the velocity of the cylinder. In a rotational control scenario, such as with a pneumatic motor, a rotary encoder can provide the controller with angular speed of the shaft. This feedback allows the electropneumatic flow controller to adjust the speed to meet system requirements.

Outside of a pneumatic system on a machine, electropneumatic flow controllers can be used to control other functions in processes and machinery. These valves can be found in lasers, paint lines, and liquid spray coating applications. Injection molding either with metal or plastics benefit from using electropneumatic flow control valves to measure amount of material being injected into the mold or quench temperature control by controlling volume of coolant in the system. 

Medical device manufacturers use proportional flow control valves to assist with regulating the amount of oxygen a patient receives when on a ventilator. Another medical device using pneumatic flow control valves is anesthesia machines, to mix the medical gases into the air to anesthetize patients prior to surgery.

Opportunities for these valves continues to grow. As demand for precision volumes and speeds in movement of gases improves, and the speed which controllers can process information, these valves will become more common place in systems.


Filed Under: Air Preparation & Regulation, Engineering Basics, Pneumatic Tips, Valves & Valve Manifolds

 

About The Author

Mary Gannon

Mary Gannon is editor of Fluid Power World. She has been a technical writer and editor for more than 13 years, having covered fluid power, motion control and interconnect technologies.

Current Digital Issue

  Easier access to more of our content Every other month, readers of Fluid Power World have access to our beautiful print and digital editions, where we share a selection of the best fundamentals content, technology news, case studies, and technical articles that cover the gamut of hydraulics and pneumatics system design. But we only…

Subscribe!

Fluid Power World is written by engineers for engineers engaged in designing machines and or equipment in Off-Highway, Oil & Gas, Mining, Packaging, Industrial Applications, Agriculture, Construction, Forestry, Medical and Material Handling. Fluid Power World covers pneumatics, mobile hydraulics and industrial hydraulics.

Fluid Power Design Guides

fluid
“fpw
EXPAND YOUR KNOWLEDGE AND STAY CONNECTED
Get the latest info on technologies, tools and strategies for Fluid Power Professionals.

RSS Featured White Papers

  • Moving fluid power forward
  • High-force linear motion: How to convert from hydraulic cylinders to electric actuators and why.
  • A technical comparison: Performance of pneumatic cylinders and electric rod actuators
Fluid Power World
  • Hose Assembly Tips
  • Mobile Hydraulic Tips
  • Pneumatic Tips
  • Sealing & Contamination Control Tips
  • About us
  • Contact Us

Copyright © 2024 WTWH Media LLC. All Rights Reserved. The material on this site may not be reproduced, distributed, transmitted, cached or otherwise used, except with the prior written permission of WTWH Media
Privacy Policy | Advertising | About Us

Search Fluid Power World

  • Home
  • Technologies
    • Hydraulics
      • Cylinders & Actuators
      • Filtration/Contamination Control
      • Fittings, Couplings & Adapters
      • Fluids
      • Fluid Conditioning
      • Hose & Tubing
      • Pumps & Motors
      • Related Technologies
      • Sealing
      • Sensors & Gauges
      • Valves & Manifolds
    • Pneumatics
      • Air Preparation & Regulation
      • Compressed Air Technologies
      • Cylinders & Actuators
      • End Effectors & Grippers
      • Fittings, Couplings & Adapters
      • Hose & Tubing
      • Sensors
      • Vacuum
      • Valves & Manifolds
  • Engineering Basics
  • Trending
  • Resources
    • Digital Issues
    • Pneumatics Tech Toolbox
    • Podcasts
    • Subscribe to Fluid Power World Print Magazine
    • Videos
    • Webinars / Digital Events
    • White Papers
  • Women in Engineering
    • Women in Fluid Power
    • Women in Engineering
  • Design Guide Library
  • Classrooms
    • Pneumatics Classroom
  • SUBSCRIBE