Perforated timber acoustic surfaces

Perforated Wood Acoustic Panels

A continuous architectural panel with coordinated face holes, rear drilling and acoustic backing.

Through-perforated wood-based panels provide a robust finished surface for walls and ceilings. Hole diameter, pitch, rear cavity and acoustic infill must be selected as one tested assembly.

Perforated wood acoustic panel range in multiple architectural finishesProduct range study
Panel width600, 1200 or 1220 mmWidth tolerance 卤1 mm
Thickness12, 15 or 18 mmThickness tolerance 卤0.2 mm
Panel length800鈥?440 mm800, 1200, 2400 or 2440 mm; tolerance 卤2 mm
Panel roleWalls and ceilingsFinal mounting and backing remain project-specific

Finish 路 core 路 rear tissue

Three coordinated layers, shown at material scale.

The supplied construction combines an architectural finish, a perforated dense panel core and thin black acoustic tissue bonded to the rear. The brochure illustrates 3 mm face holes with larger 10 mm rear drilling for one configuration.

01Surface finish

Melamine 路 Natural veneer 路 HPL 路 Paint 路 Metal sheet 路 Engineered veneer

02Base panel

Standard, environmental-grade, flame-retardant or moisture-resistant directions are listed in the supplied range.

03Rear acoustic tissue

Thin black backing tissue closes the rear face and forms part of the acoustic build-up.

Material grades, fire classification and acoustic claims require confirmation against the selected product code and current evidence.

Large exploded view of perforated wood panel finish, dense base core and thin black rear acoustic tissue

Perforation models

Choose the visual rhythm with its declared open area.

Six supplied pattern directions are shown below. Geometry is customizable, but the final drilling code must remain tied to the approved panel and test build-up.

Six photographic perforation pattern samples including regular, staggered, microperforated, mixed-hole and elongated-slot types
01
E16/6

Regular through-hole

16 mm pitch 路 6 mm hole

12.5% open area
02
E32/6

Wide-pitch through-hole

32 mm pitch 路 6 mm hole

4.2% open area
03
V16/6

Staggered through-hole

16 mm pitch 路 6 mm hole

6.5% open area
04
E8/1.2

Microperforated

8 mm pitch 路 1.2 mm hole

2% open area
05
V32/3-10

Mixed large and small holes

32 mm pitch 路 3 and 10 mm holes

4% open area
06
U60-30-6

Elongated slot

60 脳 30 mm module 路 6 mm slot

9.2% open area

Supplied absorption data

Three hole patterns under one declared test build-up.

The source records a 15 mm perforated panel, 50 mm acoustic infill at 32 kg/m鲁 and a 50 mm rear cavity.

16/60.65reported NRC
16/50.65reported NRC
16/30.63reported NRC

Values are transcribed from the supplied brochure. Verify the current laboratory report, pattern code and mounting condition before publication or specification.

Sound absorption coefficient curves for 16/6, 16/5 and 16/3 perforation patterns across frequency bands from 100 to 3125 hertz
Supplied curve relationship, redrawn in English from the reported coefficient values.
Supplied sound absorption coefficients by frequency
Pattern1001251602002503204005006308001k1.25k1.65k2k2.5k3.125kNRC
16/60.200.430.590.690.730.830.890.770.600.660.660.630.450.470.460.390.65
16/50.200.380.480.690.850.780.770.750.680.600.630.580.430.440.440.450.65
16/30.190.320.430.500.760.880.930.820.750.680.630.560.420.390.390.380.63

Wall installation

Coordinate profiles, infill, clips, joints and corners as one assembly.

The restored visual follows the supplied wall-fixing relationship and adds enlarged corner and concealed-clip views for specification review.

Exploded installation view of perforated wood acoustic panels, aluminium profiles, acoustic infill, concealed clips and corner details
  1. 01

    Open cartons for at least 48 hours before installation and allow a minimum 3 mm movement allowance between boards.

  2. 02

    Fix aluminium profiles to timber framing or the base board at approximately 600 mm centres.

  3. 03

    Place 32鈥?4 kg/m鲁 acoustic infill between the framing members.

  4. 04

    Use concealed clips to secure the perforated panels to the profiles; keep a controlled 2鈥? mm joint allowance.

  5. 05

    When installing horizontally, orient the panel notch downward and build upward from the lowest course.

Application gallery

Perforated timber surfaces across six architectural settings.

These high-resolution visual studies show the intended installed effect of flush perforated wood panels. They are design references, not completed JHS projects.

Five-star hotel lobby with broad flush perforated wood acoustic panel walls and ceiling fields
01

Five-star hotel lobby

Large perforated wall and ceiling fields bring material warmth to high-volume hospitality interiors.

Executive boardroom lined with continuous perforated wood acoustic panels
02

Executive boardroom

A precise modular surface for presentation walls and focused meeting environments.

University lecture hall with perforated wood acoustic panels across side walls and ceiling
03

University lecture hall

Robust perforated wall and ceiling zones support speech-led teaching spaces.

Performing arts auditorium with perforated wood acoustic panel walls and balcony fronts
04

Performing arts auditorium

Perforated timber panels coordinate side walls and balcony fronts at civic scale.

Contemporary museum gallery corridor with light oak perforated wood acoustic panels
05

Museum gallery

Quiet, continuous timber planes bring acoustic control to galleries and cultural circulation spaces.

Professional recording studio control room with broad walnut perforated wood acoustic wall panels
06

Recording studio

Flush walnut panels integrate with the wider acoustic design of a professional control room.

Frequently asked questions

Questions before selecting Perforated Wood Acoustic Panels.

Clear the material, mounting and evidence questions before the product is released into a project.

01How should Perforated Wood Acoustic Panels be selected for a project?

Select the hole pattern, open area, timber finish, backing and edge treatment as one verified panel configuration.

02Which technical information should be confirmed before specification?

Confirm the current product code, dimensions, finish, mounting method, acoustic test conditions and fire evidence against the exact proposed build-up.

03Can this material be used on both walls and ceilings?

The same finish can serve walls or ceilings only where the approved backing, support grid and service coordination are suitable.

04How do I begin a sample or technical enquiry?

Send the room type, drawings or elevations, substrate, target programme and any required compliance information. The project team can then identify the documents and sample route needed for review.