NF ISO 6358-2

NF ISO 6358-2

July 2013
Standard Cancelled

Pneumatic fluid power - Determination of flow-rate characteristics of components using compressible fluids - Part 2 : alternative test methods

ISO 6358-2:2013 specifies a discharge test and a charge test as alternative methods for testing pneumatic fluid power components that use compressible fluids, i.e. gases, and that have internal flow passages that can be either fixed or variable in size to determine their flow-rate characteristics. However, ISO 6358-2:2013 does not apply to components whose flow coefficient is unstable during use, i.e. components that exhibit remarkable hysteretic behaviour (because they can contain flexible parts that deform under the flow) or that have an internal feedback phenomenon (such as regulators), or components that have a cracking pressure such as non-return (check) valves and quick-exhaust valves. In addition, it does not apply to components that exchange energy with the fluid during flow-rate measurement, e.g. cylinders, accumulators, etc.ISO 6358-2:2013 does not provide a method to determine if a component has hysteretic behaviour; ISO 6358-1 does provide such a method.The charge test cannot be performed on components that do not have downstream port connections.ISO 6358-2:2013 specifies requirements for the test installation, the test procedure, and the presentation of results.Annexes provide the following:evaluation of measurement uncertainties; requirements for a method to test the volume of an isothermal tank; guidance on the isothermal tank; requirements for a method to test isothermal performance;guidance on the equation for calculating characteristics; guidance on calculating flow-rate characteristics.

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Main informations

Collections

National standards and national normative documents

Publication date

July 2013

Number of pages

54 p.

Reference

NF ISO 6358-2

ICS Codes

23.100.01   Fluid power systems in general

Classification index

E49-160-2

Print number

1 - 11/07/2013

International kinship

Sumary
Pneumatic fluid power - Determination of flow-rate characteristics of components using compressible fluids - Part 2 : alternative test methods

ISO 6358-2:2013 specifies a discharge test and a charge test as alternative methods for testing pneumatic fluid power components that use compressible fluids, i.e. gases, and that have internal flow passages that can be either fixed or variable in size to determine their flow-rate characteristics. However, ISO 6358-2:2013 does not apply to components whose flow coefficient is unstable during use, i.e. components that exhibit remarkable hysteretic behaviour (because they can contain flexible parts that deform under the flow) or that have an internal feedback phenomenon (such as regulators), or components that have a cracking pressure such as non-return (check) valves and quick-exhaust valves. In addition, it does not apply to components that exchange energy with the fluid during flow-rate measurement, e.g. cylinders, accumulators, etc.

ISO 6358-2:2013 does not provide a method to determine if a component has hysteretic behaviour; ISO 6358-1 does provide such a method.

The charge test cannot be performed on components that do not have downstream port connections.

ISO 6358-2:2013 specifies requirements for the test installation, the test procedure, and the presentation of results.

Annexes provide the following:

  • evaluation of measurement uncertainties;
  • requirements for a method to test the volume of an isothermal tank;
  • guidance on the isothermal tank;
  • requirements for a method to test isothermal performance;
  • guidance on the equation for calculating characteristics;
  • guidance on calculating flow-rate characteristics.
Standard replaced by (1)
NF ISO 6358-2
May 2020
Standard Current
Pneumatic fluid power - Determination of flow-rate characteristics of components using compressible fluids - Part 2 : alternative test methods

This document specifies a discharge test and a charge test as alternative methods for testing pneumatic fluid power components that use compressible fluids, i.e. gases, and that have internal flow passages that can be either fixed or variable in size to determine their flow-rate characteristics. However, this document does not apply to components whose flow coefficient is unstable during use, i.e. components that exhibit remarkable hysteretic behaviour (because they can contain flexible parts that deform under the flow) or that have an internal feedback phenomenon (such as regulators), or components that have a cracking pressure such as non-return (check) valves and quick-exhaust valves. In addition, it does not apply to components that exchange energy with the fluid during flow-rate measurement, e.g. cylinders, accumulators. NOTE This document does not provide a method to determine if a component has hysteretic behaviour; ISO 6358‑1 does provide such a method.

Table of contents
  • Avant-propos
    iv
  • Introduction
    v
  • 1 Domaine d'application
    1
  • 2 Références normatives
    2
  • 3 Termes et définitions
    3
  • 4 Symboles et unités
    3
  • 5 Installation d'essai
    3
  • 5.1 Circuit d'essai pour essai de décharge
    3
  • 5.2 Circuit d'essai pour essai de charge
    4
  • 5.3 Exigences générales
    5
  • 5.4 Exigences pour le réservoir (élément 4)
    6
  • 5.5 Exigences particulières
    8
  • 6 Modes opératoires d'essai
    9
  • 6.1 Conditions d'essai
    9
  • 6.2 Modes opératoires de mesure
    10
  • 6.3 Calcul des caractéristiques
    13
  • 7 Présentation des résultats des essais
    17
  • 8 Mention d'identification (référence à la présente partie de l'ISO 6358)
    18
  • Annexe A (informative) Évaluation de l'incertitude de mesure
    19
  • Annexe B (normative) Méthode d'essai pour déterminer et étalonner le volume d'un réservoir isotherme
    25
  • Annexe C (informative) Remplissage du réservoir isotherme
    33
  • Annexe D (informative) Méthode d'essai pour déterminer la performance isotherme
    36
  • Annexe E (informative) Équations de calcul des caractéristiques de débit
    39
  • Annexe F (informative) Modes opératoires de calcul du rapport des pressions totales critique, b, et de l'indice subsonique, m, par la méthode des moindres carrés en utilisant la fonction "Solveur" de Microsoft Excel
    42
  • Bibliographie
    46
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