ISO 10534-1:1996
Acoustics — Determination of sound absorption coefficient and impedance in impedance tubes — Part 1: Method using standing wave ratio
Acoustics — Determination of sound absorption coefficient and impedance in impedance tubes — Part 1: Method using standing wave ratio
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 20
- Дата публикации:
- 12 декабря 1996 г.
- Издание:
- ISO IS 10534 edition 1 version 1
- ICS:
- 17.140.01
Specifies a method for the determination of the sound absorption coefficient, reflection factor, surface impedance or admittance of materials and objects. The values are determined by evaluation of the standing wave pattern of a plane wave in a tube, which is generated by the superposition of an incident sinusiodal plane wave with the plane wave reflected from the test object.
Abstract
Overview
ISO 10534-1:1996 - "Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1: Method using standing wave ratio" specifies a standardized laboratory method to measure sound absorption coefficient, reflection factor, and surface impedance/admittance of materials using an impedance tube and the standing wave ratio (SWR) technique. The method determines these properties for normal incidence by evaluating the standing wave pattern formed by the superposition of an incident plane wave and the wave reflected from the test specimen.
Key topics and requirements
- Scope and outputs
- Measures sound absorption (normal incidence), complex reflection factor (r), and surface impedance (Z) or admittance (G).
- Results can be transformed for diffuse incidence (informative Annex D).
- Measurement principle
- Generate a plane sinusoidal wave in an impedance tube; observe pressure minima/maxima to derive the standing wave ratio and compute r, Z and absorption a = 1 – |r|^2.
- Numerical evaluation preferred (complex quantities, phase in radians).
- Test sample & mounting
- Sample must match the tube cross-section; mounting influences transformed impedance if reference plane differs from specimen surface.
- Impedance tube and equipment
- Straight tube with constant cross-section (within 0.2%), rigid, smooth, non-porous walls; avoid higher-order modes.
- Working frequency range depends on tube geometry; corrections for wall attenuation are addressed (Annex A).
- Verification and preliminary checks required (Annexes A and B); pressure‑release terminations discussed (Annex C).
- Quality control
- Equipment verification procedures and test-report requirements are specified to ensure reproducible, traceable results.
Applications and who uses it
- Used widely in acoustic material testing, R&D and quality control for:
- Sound-absorbing panels, foams, textiles, HVAC silencers.
- Automotive and aerospace interior absorption components.
- Architectural acoustics product development and specification.
- Typical users:
- Acoustic test laboratories and university research groups.
- Manufacturers of absorptive materials and acoustic components.
- Building acoustics consultants and certification bodies requiring standardized normal-incidence data.
- Practical value:
- Requires only small samples (tube cross-section), making it efficient for material screening, parameter studies and absorber design.
Related standards
- ISO 354 - Measurement of sound absorption in a reverberation room (diffuse field method).
- ISO 10534-2 - Impedance tube method using two microphones (alternate technique).
- ISO 266 - Preferred frequencies (normative reference for test frequencies).
Keywords: ISO 10534-1, impedance tube, standing wave ratio, sound absorption coefficient, acoustic impedance, normal incidence, acoustics standard, impedance tube method.
Технические детали
- Технический комитет
- ISO/TC 43/SC 2 - Building acoustics
- SKU
- ISO 10534-1:1996
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