Case Study: Anti-Vibration Intervention in an Aerial Acrobatics Training Space with ISOLMER®

Case Study: Anti-Vibration Intervention in an Aerial Acrobatics Training Space with ISOLMER®

 

🎯 Case Study: Anti-Vibration Intervention in Aerial Acrobatics Training Space with ISOLMER®

🧩 The Problem

In a specialized aerial acrobatics training space, the dynamic use of ropes and straps exerts continuous loads on the suspension points. The system was supported by an existing metal grid structure which, although functional, presented a significant technical issue:
the vibrations and oscillations generated during training were being transmitted to the upper apartments, causing intense acoustic and mechanical disturbance.

The need was clear: complete vibration isolation at the anchoring points, without compromising the static or dynamic performance of the space.

💡 The Design Challenge

Our goal was not simply the addition of an anti-vibration material, but the redesign of the suspension zone as a unified vibration-isolated hub. The solution had to:

  • Effectively absorb vertical and lateral forces transmitted through the ropes.
  • Adapt to various suspension points, each subjected to different levels of stress.
  • Be applied to the existing infrastructure without dismantling the metal structure.

🔧 The Solution: Anti-Vibration Hub with ISOLMER 25mm

We developed an innovative, tailor-made anti-vibration construction, functioning as a structural hub:

  • We surrounded all rope suspension points, creating an intermediate vibration-absorbing layer.
  • We used the specialized anti-vibration material ISOLMER, 25mm thick, known for its excellent vibration absorption and damping properties.
  • Anti-vibration components were used in various colors depending on the load level at each point. The color distinction reflects the stress level — not merely aesthetic variation.

👉 The result was a mechanically intelligent anti-vibration solution that completely cuts off vibration transmission while maintaining stability and safety for users of the space.

Execution Stages:

1st StageDesign and Analysis of Various Technical Alternatives in 3D

 

 

2nd StageConstruction and Quality Control

 

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3rd StageInstallation on Site

 

 

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🧪 The Result

  • Zero vibration transmission to the upper apartments.
  • No impact on the functionality of the suspension system.
  • Visually clean and technically discreet intervention.
  • The space remained fully operational throughout the installation process.

🔚 Conclusion

This project highlights the importance of technically targeted approaches to vibration problems. The implemented solution was not a makeshift soundproofing effort, but was integrated as a structural and functional principle within the system.

The use of ISOLMER 25mm proved that a specialized anti-vibration material, when properly applied, can completely eliminate acoustic and mechanical transmission in a high-stress environment such as an aerial acrobatics training space.

 

 

 

 

 

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