Product category:
Hydraulic Components
News Release from: Moog Controls | Subject: D636 axis control valve
Edited by the Engineeringtalk Editorial
Team on 04 October 2007
Equipment allows marine simulations
Moog equipment was chosen to upgrade Martinek's ocean basin laboratory.
Moog Controls has supplied hydraulic technology to Marintek, a Norwegian Marine Technology Research Institute, located in Trondheim, Norway The equipment will provide the advanced simulation requirements demanded by the marine industry
This article was originally published on Engineeringtalk on 3 Dec 2002 at 8.00am (UK)
Related stories
Proportional valves benefit from digital control
Affordable processing power has been strategic in allowing the migration of digital closed loop control technology into the heart of hydraulic servo actuation products.
Valves gain ATEX ceretification
Moog has received ATEX certification for several of its top-selling explosionproof servo valves, servo-proportional valves and IS solenoids.
Marintek has one of the biggest ocean-basin laboratories in the world.
80m long, 50m wide and an adjustable depth of 0 to 10m, it recreates sea conditions using an array of flaps - two on the end and 144 single flaps along its length.
In addition, the basin is equipped with a carriage system that caters for free-running models at speeds of up to 5m/s, at any angle to the waves.
Marintek chose Moog as partner to upgrade the ocean basin, built in 1981, with new technology, the aim being to not only make the system more robust and more reliable but also to provide enhanced capabilities, such as larger waves over a wider area of the basin and more directional flexibility.
The most important driver for the upgrade was the need to increase overall performance.
Further reading
Electric and hydraulic combine to boost injection
The Moog PowerShot injection system combines electric and hydraulic technologies in a compact unit that can be installed easily, and adapted to a wide variety of force, speed and torque requirements.
Servo controller speeds hydroforming process
The M3000 digital servo controller is ideal for the complex pressure and motion profiles required in hydroforming or any other metal forming application.
Watchdog keeps check on hydraulic fluid quality
A novel and highly accurate method of fluid health monitoring opens up new possibilities for continuous "online" monitoring of hydraulic systems.
Indeed, an accuracy of 0.1 degrees for all flaps was requested to guarantee the creation of highly reproducible waves with a height of up to 0.4m every 1.6 seconds.
Another major requirement was the capability to self-monitor, taking into account not only the cost-per-hour, but also the impact of the test results obtained on human safety and the investments required to build the resulting ships and platforms.
The solution had to integrate into the existing environment, especially the waveform computation system and measurement equipment while also offering the flexibility to cater for future expansion.
Latest job opportunities
Electrical, Mechanical, Maintenance Engineer
Mechanical Fitter, Diesel Fitter, Mechanical Technician
Job Title: Electrical, Mechanical, Maintenance Engineer
Area: Bedfordshire, Hertfordshire, Buckinghamshire, London, Berkshire, Middlesex, Surrey, Essex, Home Counties, South...
Electrical Engineer, Maintenance Engineer.
Electrical Engineer, Maintenance Engineer
Job Title: Electrical Engineer, Maintenance Engineer.
Area: Surrey, Middlesex, London, London, South East.
Salary: £25,000 basic + £1,000 bonus + Private Health + Life Insurance + 20 Days...
Multi Skilled Maintenance Engineer, Maintenance Engineer
Maintenance Engineer (FOOD/FMCG)
Job Title: Multi Skilled Maintenance Engineer, Maintenance Engineer
Area: Buckinghamshire, Bedfordshire, London, Middlesex, Hertfordshire, Buckinghamshire, Berkshire, Essex, Kent, Surrey, South East
Salary: ...
Due to the existing 700kW hydraulic infrastructure a hydraulic solution was the obvious solution.
The solution supplied by MOOG comprises 144 hydraulic cylinders, each controlled by a D636 axis control valve (ACV) - a servo valve with axis control capability.
With the position sensor of each cylinder being connected directly to the servo valve, the D636 closes the position loop and offers additional features such as self-monitoring of the control loops and the position sensor.
Each group of 12 ACV servo valves is connected via CANopen to a Moog Servo Controller (MSC), a freely programmable motion controller with multiple interfaces such as CANopen, Ethernet and Profibus-DP.
The MSC offers two independent CAN interfaces each controlling six valves.
The 12 MSCs are connected to the waveform computation system, distributing the set points and the actual position and status information from each valve.
In addition to the hardware, the Moog Axis Control Software (MACS) was used to create the application programs.
Initially, a test system comprising one hydraulic cylinder, a position sensor, an axis control valve and an MSC controller was installed to verify the calculated accuracy and dynamics.
Subsequently, with the results fulfilling all requirements, the upgrade of the whole basin commenced.
In total, 12 cabinets were installed along the length of the basin; each containing one MSC, connected via CANopen to 12 D636 axis control valves.
Due to the use of a fieldbus, the installation effort was, low considering the number of devices and the physical size of the system.
CANopen was selected because of its multi-master capability, its flexibility and functional safety.
"The biggest surprise for me was how easy it was to program this system with all the 144 axis", explains Frank Andersson, Senior Engineer at Marintek.
Andersson was involved in the software development from the start of the project, as he wanted to be able to extend the system by himself in the future.
As a result of the upgrade, the usable length of the basin for wave testing has been increased - thanks to the accuracy of the flapper movement - a major advance for testing high-speed ships and ferries as the number of test sequences can be reduced.
With the advanced feedback capabilities now available from Moogs ACV range, designers and engineers no longer have to trade force for accuracy and vice versa.
Moog's servo valve capabilities are well known throughout the industry and this new technology only serves to re-inforce the company's position within the hydraulic market. Request a free brochure from Moog Controls ...
• Moog Controls: contact details and other news
• Email this article to a colleague
• Register for the free Engineeringtalk email newsletter
• Engineeringtalk Home Page

