NF ISO 20270

NF ISO 20270

April 2020
Standard Cancelled

Acoustics - Characterization of sources of structure-borne sound and vibration - Indirect measurement of blocked forces

This document specifies a method where a vibrating component (a source of structure-borne sound or vibration) is attached to a passive structure (or receiver) and is the cause of vibration in, or structure-borne sound radiation from, the assembly. Examples are pumps installed in ships, servo motors in vehicles or machines and plant in buildings. Almost any vibrating component can be considered as a source in this context.Due to the need to measure vibration at all contact degrees of freedom (DOFs) (connections between the source and receiver), this document can only be applied to assemblies for which such measurement is possible.This document is applicable only to assemblies whose frequency response functions (FRFs) are linear and time invariant.The source can be installed into a real assembly or attached to a specially designed test stand (as described in 5.2).The standard method has been validated for stationary signals such that the results can be presented in the frequency domain. However, the method is not restricted to stationary signals: with appropriate data processing, it is also applicable to time-varying signals such as transients and shocks (provided linearity and time invariance of the FRFs are preserved).This document provides a method for measurement and presentation of blocked forces, together with guidelines for minimizing uncertainty. It provides a method evaluating the quality of the results through an on-board validation procedure but does not comment on the acceptability or otherwise of the results.

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Main informations

Collections

National standards and national normative documents

Publication date

April 2020

Number of pages

45 p.

Reference

NF ISO 20270

ICS Codes

17.140.01   Acoustic measurements and noise abatement in general
17.140.20   Noise emitted by machines and equipment

Classification index

S30-008

Print number

1

International kinship

ISO 20270:2019
Sumary
Acoustics - Characterization of sources of structure-borne sound and vibration - Indirect measurement of blocked forces

This document specifies a method where a vibrating component (a source of structure-borne sound or vibration) is attached to a passive structure (or receiver) and is the cause of vibration in, or structure-borne sound radiation from, the assembly. Examples are pumps installed in ships, servo motors in vehicles or machines and plant in buildings. Almost any vibrating component can be considered as a source in this context.

Due to the need to measure vibration at all contact degrees of freedom (DOFs) (connections between the source and receiver), this document can only be applied to assemblies for which such measurement is possible.

This document is applicable only to assemblies whose frequency response functions (FRFs) are linear and time invariant.

The source can be installed into a real assembly or attached to a specially designed test stand (as described in 5.2).

The standard method has been validated for stationary signals such that the results can be presented in the frequency domain. However, the method is not restricted to stationary signals: with appropriate data processing, it is also applicable to time-varying signals such as transients and shocks (provided linearity and time invariance of the FRFs are preserved).

This document provides a method for measurement and presentation of blocked forces, together with guidelines for minimizing uncertainty. It provides a method evaluating the quality of the results through an on-board validation procedure but does not comment on the acceptability or otherwise of the results.

Standard replaced by (1)
NF EN ISO 20270
October 2022
Standard Current
Acoustics - Characterization of sources of structure-borne sound and vibration - Indirect measurement of blocked forces

This document specifies a method where a vibrating component (a source of structure-borne sound or vibration) is attached to a passive structure (or receiver) and is the cause of vibration in, or structure-borne sound radiation from, the assembly. Examples are pumps installed in ships, servo motors in vehicles or machines and plant in buildings. Almost any vibrating component can be considered as a source in this context. Due to the need to measure vibration at all contact degrees of freedom (DOFs) (connections between the source and receiver), this document can only be applied to assemblies for which such measurement is possible. This document is applicable only to assemblies whose frequency response functions (FRFs) are linear and time invariant. The source can be installed into a real assembly or attached to a specially designed test stand (as described in 5.2). The standard method has been validated for stationary signals such that the results can be presented in the frequency domain. However, the method is not restricted to stationary signals: with appropriate data processing, it is also applicable to time-varying signals such as transients and shocks (provided linearity and time invariance of the FRFs are preserved). This document provides a method for measurement and presentation of blocked forces, together with guidelines for minimizing uncertainty. It provides a method evaluating the quality of the results through an on-board validation procedure but does not comment on the acceptability or otherwise of the results.

Table of contents
  • 1 Domaine d'application
  • 2 Références normatives
  • 3 Termes et définitions
  • 4 Sélection des degrés de liberté (DDL)
  • 5 Montage d'essai
  • 6 Appareillage de mesure
  • 7 Mode opératoire d'essai
  • 8 Procédure d'analyse
  • 9 Incertitudes et validation
  • 10 Rapport d'essai
  • Annexe A Exemple de rapport d'essai: entraînement électrique de l'essieu arrière d'une voiture particulière; analyse des voies de transfert (TPA) et estimation des forces bloquées in situ conformément à l'ISO 20270:2019
  • Annexe B Essais de la validité des données de mesure
  • Annexe C Études de cas
  • Annexe D Critères de sélection des DDL d'indicateur et de validation
  • Annexe E Prévision du bruit et des vibrations
  • Bibliographie
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