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ISO 16332:2018

Current
Current

The latest, up-to-date edition.

Diesel engines — Fuel filters — Method for evaluating fuel/water separation efficiency
Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English

Published date

05-04-2018

ISO 16332:2018 specifies a fuel/water separator comparison test under defined and simplified laboratory conditions.

This test is intended for pressure side fuel/water separators as well as for suction side fuel/water separators. Pressure side fuel/water separators are tested with fine droplets and suction side filters are tested with coarse droplets using the same test rig layout.

The rated flow (in litres per hour) is intended for the range between 50 l/h and 1 500 l/h. By agreement between customer and fuel/water separator manufacturer, and with some modifications, the procedures can be used for fuel/water separators with higher or lower flow rates.

Committee
ISO/TC 22/SC 34
DevelopmentNote
Supersedes ISO/DIS 16332 & ISO TS 16332. (04/2018)
DocumentType
Standard
Pages
44
PublisherName
International Organization for Standardization
Status
Current

Standards Relationship
BS ISO 16332:2018 Identical

ISO 13320:2009 Particle size analysis Laser diffraction methods
ISO 3968:2017 Hydraulic fluid power — Filters — Evaluation of differential pressure versus flow
ISO 12937:2000 Petroleum products — Determination of water — Coulometric Karl Fischer titration method
ISO 6889:1986 Surface active agents — Determination of interfacial tension by drawing up liquid films
ISO/TS 16332:2006 Diesel engines Fuel filters Method for evaluating fuel/water separation efficiency
ISO 3722:1976 Hydraulic fluid power — Fluid sample containers — Qualifying and controlling cleaning methods
ISO 80000-1:2009 Quantities and units — Part 1: General
ISO 1219-1:2012 Fluid power systems and components — Graphical symbols and circuit diagrams — Part 1: Graphical symbols for conventional use and data-processing applications
ISO 9101:1987 Surface active agents — Determination of interfacial tension — Drop volume method

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