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Thursday 26 June 2025
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Rollon Corp. celebrates 50 years and future growth with opening of new Michigan facility
13 June 2025
Rollon Corp. celebrates 50 years and future growth with opening of new Michigan facility
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Rollon to exhibit RSN and AMTS 2025
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Rollon to attend Automatica 2025
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myRollon introduces new Configurator,  integrates rod ends product range
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myRollon introduces new Configurator, integrates rod ends product range
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Rollon expands TH actuator range with new size 200
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Rollon launches new Cobot Transfer Unit (CTU) for enhanced performance and seamless integration
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26 June 2025
How to choose a rod end: A technical guide for design engineers
Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
25 June 2025
Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
The critical role of linear motion solutions in industrial machinery
11 June 2025
The critical role of linear motion solutions in industrial machinery
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Your Challenges

Harnessing the power of the ocean to create energy: Shuton-Ipiranga’s success story

Case Study

To meet global sustainability goals in the coming decades, renewable energy innovators are looking toward the ocean’s waves as a reliable energy source for growing coastal communities.

Timken is influencing this new wave of technology to harness the power of the ocean. In fact, the engineers of Shuton-Ipiranga, — today part of the Rollon ecosystem, following the acquisition by The Timken Company of the Nadella group, — developed one of the world’s largest ball screws to support CorPower Ocean’s newest innovation for clean energy.

The engineers are currently collaborating with Sweden-based CorPower Ocean to perfect its novel point absorber, a type of wave-energy converter technology that measures as tall as a six-story building. An advanced prototype is equipped with a highly customized Shuton-Ipiranga ball screw, which is currently being field tested in the Atlantic Ocean near Aguçadoura, Portugal.

The ball screw acts as a mechanical actuator to compensate for tidal variation cycles and keeps the device in an optimized position in the water. The overall design was inspired by the pumping action of a human heart.

Big advancements for a sustainable future

Energy engineers have experimented with wave power since the 1890s. Two major issues prevented advancement until recently: equipment damage caused by rough seas and the high complexity and cost of manufacturing solutions that work.

CorPower Ocean’s design solves both issues. Its wave energy converters can operate in storm protection mode, during which they are “detuned” to make them transparent to incoming waves. It’s similar to how wind turbines can pitch their blades in “survival mode” to guard against damage from excessive loads during extreme wind. 

Pako Juaristi, commercial director of Shuton-Ipiranga, says that just like wind turbines, wave-energy converters are massive. Their components and the forces they must endure are huge, too.

“Nowhere else in the world is there a ball screw of this specification supporting a max load of 8,000 kilonewtons,” Juaristi said. “Our portfolio’s average standard ball screw nut length is about 200 mm. In this case, the nut alone is nearly five times greater at one meter in length. The entire component has 18 load-bearing ball circuits assembled on an 11-meter-long shaft. That’s big.”

The Shuton-brand ball screw design was informed by complex simulations created by CorPower, design consultants and researchers at Mondragon University in Spain.  

To produce the giant prototype, the engineers drew on their deep knowledge of manufacturing processes and developed special tooling capable of machining components of this scale.

A more stable renewable energy mix

Significant growth in the wave energy market is expected as top companies begin proving initial design concepts and varied technologies. And while a few are getting closer than ever, CorPower is considered the current leader due to its protective detuning feature.

Eventually, wave energy is expected to become a more consistent and predictable energy source than wind or solar. Unlike these energy sources, which can lose capacity when the wind doesn’t blow or the sun doesn’t shine, ocean waves are always moving. Wave energy can also supplement other energy sources for a more flexible, reliable mix of renewable energy.

“Wave could be the final piece in the puzzle to making renewable energy more viable worldwide,” Juaristi said. “We’re already working on the second-generation of this technology based on what we learned during the first prototype. It’s exciting to be a part of it.”

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How to Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
Case Study Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
White paper The critical role of linear motion solutions in industrial machinery
White paper Linear motion in robotics and automation: Overview and trends
Tech Talks Cleanroom-ready linear motion, engineered for precision
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How to Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
White paper Linear motion in robotics and automation: Overview and trends
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Case Study Automating a production line for the transport and machining of electrical wires
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How to Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
White paper The critical role of linear motion solutions in industrial machinery
White paper Applications for industrial grade telescopic rails
White paper Differences between ball screws for heavy equipment, automation, and machine tools
Case Study Turn-Key Solutions and Rollon: Engineering a robotic solution for an automated storage system
Report Monorail linear guide for high-load applications
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Case Study Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
Podcast A Deep Dive Into The History Of Linear Bearings
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How to Case study: How Rollon’s Compact Rail enhanced visibility on maintenance locomotive
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Case Study Enabling mobility through engineering: A custom linear motion solution for a Paralympic athlete's vehicle
White paper White Paper: Preventing corrosion with stainless-steel and other motion components
Case Study Case study: Rod ends for agricultural machines
Application Display slide out
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White paper Linear motion in robotics and automation: Overview and trends
Tech Talks Cleanroom-ready linear motion, engineered for precision
White paper Differences between ball screws for heavy equipment, automation, and machine tools
White paper Choosing linear motion components for medical equipment
White paper White Paper: Preventing corrosion with stainless-steel and other motion components
Application Linear movement in the pharmaceutical and medical industry: the seventh axis for clean rooms
Tech Talks Cleanroom-ready linear motion, engineered for precision
Case Study High-tech distributor taps Rollon for electronics machine
White paper Applications for industrial grade telescopic rails
Case Study CNC Solutions and Rollon: Advancing robotic automation for heavy-duty applications
White paper Differences between ball screws for heavy equipment, automation, and machine tools
Report Monorail linear guide for high-load applications
White paper White Paper: Preventing corrosion with stainless-steel and other motion components
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Case Study How Rollon helped a food company handle leavened doughs safely and effectively
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