PRICES include / exclude VAT
Homepage>BS Standards>19 TESTING>19.120 Particle size analysis. Sieving>BS ISO 20998-3:2017 Measurement and characterization of particles by acoustic methods Guidelines for non-linear theory
Sponsored link
immediate downloadReleased: 2017-06-28
BS ISO 20998-3:2017 Measurement and characterization of particles by acoustic methods Guidelines for non-linear theory

BS ISO 20998-3:2017

Measurement and characterization of particles by acoustic methods Guidelines for non-linear theory

Format
Availability
Price and currency
English Secure PDF
Immediate download
292.80 EUR
You can read the standard for 1 hour. More information in the category: E-reading
Reading the standard
for 1 hour
29.28 EUR
You can read the standard for 24 hours. More information in the category: E-reading
Reading the standard
for 24 hours
87.84 EUR
English Hardcopy
In stock
292.80 EUR
Standard number:BS ISO 20998-3:2017
Pages:36
Released:2017-06-28
ISBN:978 0 580 89639 2
Status:Standard
DESCRIPTION

BS ISO 20998-3:2017


This standard BS ISO 20998-3:2017 Measurement and characterization of particles by acoustic methods is classified in these ICS categories:
  • 19.120 Particle size analysis. Sieving

This document gives guidelines for ultrasonic attenuation spectroscopy methods for determining the size distributions of one or more material phases dispersed in a liquid at high concentrations, where the ultrasonic attenuation spectrum is not a linear function of the particle volume fraction. In this regime, particle-particle interactions are not negligible.

This document is applicable to colloids, dispersions, slurries, and emulsions. The typical particle size for such analysis ranges from 10 nm to 3 mm, although particles outside this range have also been successfully measured. Measurements can be made for concentrations of the dispersed phase ranging from about 5 % by volume to over 50 % by volume, depending on the density contrast between the continuous and the dispersed phases, the particle size, and the frequency range[ 9 ] [ 10 ]. These ultrasonic methods can be used to monitor dynamic changes in the size distribution, including agglomeration or flocculation.