NOISE ISOLATION SYSTEMS

Reducing Noise at the Structural Level

Privacy, comfort, and acoustic separation are often determined by how sound travels through a building rather than how a room sounds internally. We design and implement noise isolation systems that reduce unwanted sound transmission through walls, ceilings, floors, glazing systems, doors, and structural connections.
Whether the objective is a quieter home, a more private workspace, or a high-performance recording environment, every solution is developed around the specific conditions of the space and the way it will be used.

Soundproof Doors & Windows

Acoustic openings are often the weakest point within an isolation system. We design and specify high-performance door and glazing assemblies that help minimise sound leakage while integrating seamlessly into the architecture of the space.

Applications

Corrective Noise Solutions

Some acoustic issues only become apparent once a building is occupied. We diagnose existing noise problems and develop targeted interventions based on the source, transmission path, and surrounding construction.

Common Issues

Building Envelope Isolation

External noise can significantly affect comfort in dense urban environments. We develop isolation strategies for façades, roofs, glazing systems, and external assemblies to improve acoustic separation from the outside world.
Typical Sources

How We Approach Noise Isolation

Every project begins by identifying how sound is travelling before determining how it should be controlled.

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Assessment & Diagnosis

We evaluate:

  • Airborne transmission
  • Impact transmission
  • Structural vibration
  • Flanking paths
  • Existing construction conditions

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Isolation Strategy Design

Solutions may incorporate:

  • Increased mass
  • Structural decoupling
  • Damping systems
  • Airtight detailing
  • Vibration isolation

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Integration & Implementation

Performance depends on execution as much as design. Isolation systems are coordinated across walls, ceilings, floors, doors, glazing systems, and service penetrations to maintain continuity throughout the assembly.

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Understanding Sound Transmission

Sound rarely travels through a single surface. It can move through structural framing, floor slabs, ceiling cavities, glazing systems, service penetrations, and mechanical vibration paths.
Because airborne sound, impact noise, and structure-borne vibration behave differently, effective isolation begins with understanding the dominant transmission path rather than applying generic solutions.

Applications

The Result

Quieter, more private environments with measurable acoustic separation and long-term performance.

Not Sure What Your Space Needs?

The right solution depends on what you’re trying to achieve. If you’re unsure which direction to take, we’ll help you define a clear, practical approach for your space.

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