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Technical resource library

Acoustic Panel Test Reports & Performance Data

Review 18 laboratory reports covering NRC, weighted sound absorption coefficient, octave-band performance, mounting construction, fire classification and material physical properties. Use the filters to locate a product configuration, report number or performance result.

18Source PDF reports
11NRC-based reports
5Alpha-w reports
2Fire / physical reports
01

What this report library covers

This acoustic panel test report library is designed for architects, acoustic consultants, contractors, distributors and procurement teams. It indexes the tested sample, panel thickness, mounting cavity, infill, standard and headline result so you can find the relevant source before reviewing the full signed report.

Absorption performance

Eleven reports state NRC values from 0.60 to 0.95, while five earlier reports state weighted absorption coefficient and sound absorption class.

Tested construction

Panel dimensions, perforation patterns, air cavities, fiberglass thicknesses, densities and Type E mounting conditions are kept with each result.

Specialist material evidence

The library also includes a Class A1 fabric-panel fire test and a mass-loaded-vinyl physical-property report with tensile, elongation and tear data.

Evidence boundary

Results apply only to the tested specimen and installation described in the named report. NRC and alpha-w are separate rating systems. Confirm the current product model, thickness, mounting, intended market and project requirements before using a value in a specification.

02

Search acoustic panel test reports

Search by product, report number, construction, result or standard. Expand any card for the report filename, test context and key frequency-band evidence. Replace each PDF URL placeholder after uploading the report to the website.

18 reports shown

NRC and alpha-w remain labelled separately.

TR-001 · ATS11-024-RP002

1-8-8 Wooden Micro-Perforated Panel

Micro-perforated wood2011
Alpha-w0.20(LM) · Class E

Tests a 15 mm wooden micro-perforated panel with 1 mm apertures on an 8 mm pattern, backed by acoustic tissue, fiberglass and an air space.

Peak result
Alpha 0.91 at 160 Hz
Tested area
3600 × 3000 mm
Infill
50 mm fiberglass, 80 kg/m³
Air space
100 mm
Report details

Test standard: BS EN ISO 354:2003.

Test date: 24 June 2011; report dated 29 June 2011.

Frequency evidence: Alpha 0.83 at 200 Hz, 0.86 at 250 Hz and 0.56 at 500 Hz.

Source file: 1-8-8微孔板吸声测试.pdf

TR-002 · LCA-JC-2021-02443

14 mm Wooden Micro-Perforated Panel (3-3-1)

Micro-perforated wood2020
NRC0.80Average α 0.69

Covers a 3-3-1 pattern wooden micro-perforated panel installed over a 100 mm cavity with 50 mm fiberglass.

Panel size
1200 × 600 × 14 mm
Quantity
14 pieces
Peak result
Alpha 0.91 at 315 Hz
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 28 July 2020.

Frequency evidence: Alpha 0.82 at 200 Hz, 0.90 at 500 Hz, 0.90 at 800 Hz and 0.82 at 1000 Hz.

Source file: 14mm Wooden Micro-Perforated Acoustic Panel(3-3-1 Pattern) (NRC=0.8).pdf

TR-003 · ATS11-024-RP005

1 mm Aluminium Perforated Panel

Perforated metal2011
Alpha-w0.45Class D

Tests 1 mm aluminium sheet with 3 mm perforations, 28.3% open area, acoustic tissue backing and a 100 mm air space.

Peak result
Alpha 0.60 at 500 Hz
Tested area
3600 × 3000 mm
Open area
28.3%
Air space
100 mm
Report details

Test standard: BS EN ISO 354:2003.

Test date: 24 June 2011; report dated 29 June 2011.

Frequency evidence: Alpha 0.50 at 400 Hz, 0.59 at 800 Hz and 0.48 at 1000 Hz.

Source file: 1mm厚铝孔板吸声测试.pdf

TR-004 · ATS11-024-RP001

25 mm Acoustic Fabric Panel

Fabric wrapped2011
Alpha-w0.60(H) · Class C

Evaluates a fabric-wrapped 25 mm fiberglass panel with an 80 kg/m³ core installed over a 50 mm air space.

Peak result
Alpha 0.87 at 800 Hz
High frequency
Alpha 0.78 at 2000 Hz
Core
25 mm, 80 kg/m³
Air space
50 mm
Report details

Test standard: BS EN ISO 354:2003.

Test date: 22 June 2011; report dated 29 June 2011.

Frequency evidence: Alpha 0.64 at 400 Hz, 0.71 at 1000 Hz and 0.74 at 4000 Hz.

Source file: 25mm厚软包吸声测试.pdf

TR-005 · ATS11-024-RP004

13/3 Grooved Wooden Absorptive Panel

Grooved wood2011
Alpha-w0.75(L) · Class C

Tests a 15 mm grooved wooden panel with 3 mm face grooves at 13 mm centres and 10 mm rear perforations.

Peak result
Alpha 1.06 at 315 Hz
500 Hz
Alpha 0.93
Infill
50 mm, 80 kg/m³
Air space
100 mm
Report details

Test standard: BS EN ISO 354:2003.

Test date: 24 June 2011; report dated 29 June 2011.

Frequency evidence: Alpha 1.02 at 250 Hz, 1.00 at 400 Hz and 0.79 at 1000 Hz.

Source file: 3-13槽板吸声测试.pdf

TR-006 · ATS11-024-RP003

6-11-11 Wooden Perforated Panel

Perforated wood2011
Alpha-w0.50(LM) · Class D

Covers a 15 mm wooden panel with 6 mm apertures on an 11 mm grid, acoustic tissue, fiberglass and a 100 mm air space.

Peak result
Alpha 1.01 at 250 Hz
500 Hz
Alpha 0.88
Open area
31%
Infill
50 mm, 80 kg/m³
Report details

Test standard: BS EN ISO 354:2003.

Test date: 24 June 2011; report dated 29 June 2011.

Frequency evidence: Alpha 0.91 at 200 Hz, 0.92 at 315 Hz and 0.63 at 1000 Hz.

Source file: 6-11-11孔板吸声测试.pdf

TR-007 · LCA-JC-2020-02331

Art Acoustic Panel

Art panel2020
NRC0.75Average α 0.63

Tests 15 mm Art Acoustic Panels installed on a light-steel frame with a 100 mm cavity and 50 mm fiberglass infill.

Panel size
1200 × 600 × 15 mm
Peak result
Alpha 0.92 at 500-630 Hz
Quantity
14 pieces
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 8 June 2020.

Frequency evidence: Alpha 0.79 at 250 Hz, 0.86 at 315 Hz, 0.86 at 800 Hz and 0.80 at 1000 Hz.

Source file: Art Acoustic Panel-NRC 0.75.pdf

TR-008 · LCA-JC-2019-02269

Art Acoustic Panel (U Grooved)

U-grooved panel2019
NRC0.70Average α 0.71

Evaluates a 20 mm U-grooved Art Acoustic Panel with fiberglass infill and a 100 mm mounting cavity.

Panel size
1200 × 600 × 20 mm
Peak result
Alpha 0.89 at 315 Hz
Quantity
14 pieces
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 4 November 2019.

Frequency evidence: Alpha 0.87 at 200 Hz, 0.86 at 400 Hz, 0.80 at 500 Hz and 0.67 at 800 Hz.

Source file: Art Acoustic Panel(U grooved)-NRC 0.7.pdf

TR-009 · LCA-JC-2018-02136

Micro Perforated Acoustic Panel T-0.95

Micro-perforated wood2018
NRC0.90Average α 0.82

Tests a 10 mm T-0.95 panel with a 1 mm micro-perforated surface and inorganic perforated backing over an 80 mm cavity.

Panel size
1200 × 600 × 10 mm
Surface
1 mm apertures, 12.6%
Broadband result
α 0.90-1.00 at 500-5000 Hz
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 22 August 2018.

Frequency evidence: Alpha 0.96 at 800 Hz, 0.98 at 1250 Hz, 0.95 at 2000 Hz and 1.00 at 4000 Hz.

Source file: Micro Perforated Acoustic Panel T-0.95 NRC=0.9.pdf

TR-010 · LCA-JC-2018-02128

Micro Perforated Acoustic Panel

Micro-perforated wood2018
NRC0.75Average α 0.65

Evaluates a 13 mm panel with a 1 mm micro-perforated surface, magnesium-oxide backing, fiberglass and an 80 mm cavity.

Panel size
1200 × 600 × 13 mm
Peak result
Alpha 0.88 at 500 Hz
Surface
1 mm apertures, 12.5%
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 28 June 2018.

Frequency evidence: Alpha 0.79 at 250 Hz, 0.84 at 315-400 Hz, 0.76 at 800 Hz and 0.74 at 1000 Hz.

Source file: Micro Perforated Acoustic Panel- NRC=0.75.pdf

TR-011 · LCA-JC-2020-02329

Micro Perforated Acoustic Panel

Micro-perforated wood2020
NRC0.65Average α 0.53

Covers narrow-format 15 mm micro-perforated panels installed over a 100 mm cavity with 50 mm fiberglass.

Panel size
2400 × 197 × 15 mm
Peak result
Alpha 1.00 at 250 Hz
Quantity
22 pieces
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 11 May 2020.

Frequency evidence: Alpha 0.83 at 200 Hz, 0.91 at 400 Hz, 0.84 at 500 Hz and 0.58 at 800 Hz.

Source file: Micro Perforated Acoustic Panel-NRC 0.65.pdf

TR-012 · LCA-JC-2020-02345

Micro-Perforated Panel (2-2-0.5)

Micro-perforated wood2020
NRC0.60Average α 0.54

Tests a 2-2-0.5 pattern in a 15 mm narrow-format micro-perforated panel over fiberglass and a 100 mm cavity.

Panel size
2400 × 197 × 15 mm
Peak result
Alpha 0.97 at 400 Hz
Quantity
22 pieces
Infill
50 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 9 July 2020.

Frequency evidence: Alpha 0.85 at 250 Hz, 0.95 at 315 Hz, 0.85 at 500 Hz and 0.58 at 800 Hz.

Source file: Micro-Perforated Acoustic Panel (Pattern:2-2-0.5) NRC=0.6.pdf

TR-013 · LCA-JC-2020-02304

Non-Formaldehyde Fabric Wrapped Panel

Fabric wrapped2020
NRC0.95Average α 0.88

Evaluates a 50 mm non-formaldehyde fabric-wrapped sound absorber using Type E mounting over a 100 mm cavity.

Panel size
1200 × 600 × 50 mm
Broadband result
α 0.90-0.99 at 250-5000 Hz
Quantity
14 pieces
Mounting
100 mm cavity
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 8 May 2020.

Frequency evidence: Alpha 0.99 at 250-400 Hz, 0.98 at 500 Hz, 0.95 at 2000 Hz and 0.98 at 5000 Hz.

Source file: Non-formaldehyde Fabric Wrapped Acoustic Panel-NRC 0.95.pdf

TR-014 · LCA-JC-2020-02330

Ultramicropore Full Frequency Sound Absorber

Full-frequency absorber2020
NRC0.85Average α 0.78

Covers a large-format 50 mm ultramicropore absorber installed on the test-room floor over a sealed 250 mm cavity.

Panel size
2000 × 880 × 50 mm
Peak result
Alpha 0.95 at 315 Hz
Quantity
6 pieces
Mounting
250 mm floor cavity
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 18 May 2020.

Frequency evidence: Alpha 0.93 at 250 Hz, 0.91 at 400 Hz, 0.87 at 1000 Hz and 0.79 at 2000 Hz.

Source file: Ultramicropore Full Frequency Sound Absorber-NRC 0.85.pdf

TR-015 · LCA-JC-2020-02293

25 mm Wood Wool Panel + 100 mm Fiberglass

Wood wool2020
NRC0.90Average α 0.86

Tests a 25 mm wood wool acoustic panel backed directly by 100 mm fiberglass at 48 kg/m³.

Panel size
1200 × 600 × 25 mm
Broadband result
α 0.89-0.97 at 315-5000 Hz
Quantity
14 pieces
Infill
100 mm, 48 kg/m³
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 25 March 2020.

Frequency evidence: Alpha 0.92 at 315 Hz, 0.95 at 630 Hz, 0.91 at 2000 Hz and 0.97 at 5000 Hz.

Source file: Wood Wool Acoustic Panel(25mmWood Wool Acoustic Panel+100mmFiberglass)-NRC 0.9.pdf

TR-016 · LCA-JC-2020-02294

25 mm Wood Wool Panel + 50 mm Keel

Wood wool2020
NRC0.65Average α 0.65

Evaluates the same 25 mm wood wool panel over a 50 mm light-steel-keel cavity without fiberglass infill.

Panel size
1200 × 600 × 25 mm
High frequency
α 0.76-0.77 at 2500-5000 Hz
Quantity
14 pieces
Cavity
50 mm, no fiberglass
Report details

Test standard: GB/T 20247-2006 / ISO 354:2003.

Test date: 20 April 2020.

Frequency evidence: Alpha 0.72 at 200-315 Hz, 0.61 at 500-800 Hz and 0.68 at 2000 Hz.

Source file: Wood Wool Acoustic Panel(25mmWood Wool Acoustic Panel+50mmLight Steel Keel)-NRC 0.65.pdf

TR-017 · 2019-03-1423

Mass Loaded Vinyl QZ-2L Physical Properties

Sound insulation material2019
Tensile5.3MPa

A physical-property report for 2 mm mass loaded vinyl. It does not state NRC or airborne sound reduction.

Elongation
25% at break
Tear strength
26 kN/m
Specification
1000 × 10000 × 2 mm
Completion
3 April 2019
Report details

Test standards: GB/T 528-2009 and GB/T 529-2008.

Report scope: Tensile stress-strain and trouser/angle/crescent tear testing.

Testing body: Guangzhou Quality Supervision and Testing Institute (GQT).

Source file: 隔音毡-物理性能.pdf

TR-018 · 2019-03-0266

A1 Fabric Wrapped Acoustic Panel Fire Test

Fire performance2019
GB 8624A1All listed items pass

A GB 8624-2012 burning-behaviour report for a 25 mm fabric-wrapped acoustic panel classified as Class A1 plate material.

Temperature rise
2 °C
Mass loss
8.9%
Sustained flaming
0 seconds
Sample size
500 × 500 × 25 mm
Report details

Test standard: GB 8624-2012, Class A (A1), plate material.

Completion date: 8 April 2019.

Calorific evidence: Main component PCS 1.94 MJ/kg; external non-substantial component 0.12 MJ/m²; non-homogeneous product gross heat of combustion 1.57 MJ/kg.

Source file: (英文)A1级不燃布艺吸音板.pdf

No matching reports

Try a broader term such as “wood”, “NRC”, “ISO 354”, “A1” or a report number.

03

How to read the test results

A performance number only makes sense with its tested construction. Compare the panel thickness, perforation pattern, air cavity, fiberglass depth and density before using a result to support product selection or specification.

NRC
Noise Reduction Coefficient is a single-number average derived from absorption coefficients at selected octave-band frequencies. The NRC shown here is copied from the named report and applies to that tested assembly.
Alpha-w
Weighted sound absorption coefficient is calculated using ISO 11654 and may include shape indicators such as L, M or H. It is kept separate from NRC in this library.
Frequency data
One-third-octave absorption coefficients show where an assembly performs strongly or weakly. A high peak at one frequency does not automatically mean broadband performance.
Mounting
Air cavity and porous infill can materially change performance. Reports in this library include configurations from no fiberglass to 100 mm fiberglass and cavities from 50 mm to 250 mm.
Fire class
The Class A1 document covers burning behaviour under GB 8624-2012. It does not establish NRC, and its applicability should be checked against the current product build and project jurisdiction.
04

Test report questions

Use the full signed report when a project requires formal technical review or submittal evidence.

Are NRC and alpha-w the same rating?

No. NRC and weighted sound absorption coefficient (alpha-w) are calculated under different rating methods. Both summarise absorption performance, but they should remain clearly labelled and should not be substituted for one another without the project consultant confirming the required standard.

Does one report cover every panel thickness and installation?

No. Each result applies to the sample and mounting described in that report. Panel thickness, perforation pattern, backing, cavity depth, porous infill and mounting orientation can change the measured absorption. Match the proposed product build to the report before citing its value.

What should be confirmed before using a report for a project?

Confirm the model, dimensions, material build, mounting, current report status, required test standard and project jurisdiction. For tenders or technical submittals, request the complete signed PDF and ask the Leeyin technical team to verify that it matches the proposed product.

05

Need a verified report for a specification or tender?

Send the product name, proposed thickness, mounting construction, project location and required standard. Our team can help identify the relevant file and confirm the evidence scope.

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