ISO 5119:2023
International Standard
Current Edition
·
Approved on
24 November 2023
Low temperature sealing capability of elastomeric seals — Test methods
ISO 5119:2023 Files
English
14 Pages
Current Edition
123.23 USD
ISO 5119:2023 Scope
This specification details a test method for static O-ring seals in elastomeric materials which are subject to pressurized gas media at low temperatures. It gives guidance on the design of test equipment, standard test parameters, and reporting criteria. It does not specify performance criteria that should be agreed upon between supplier and customer.
The test procedure may be used to test seals of alternate size and design or using alternative media but such deviations shall be detailed separately on the report form and the results shall not be used to determine the minimum operating temperature of seals of any other configuration than that tested.
Best Sellers
GSO 150-2:2013
Gulf Standard
Expiration dates for food products - Part 2 :
Voluntary expiration dates

YSMO GSO 150-2:2020
GSO 150-2:2013
Yemeni Technical Regulation
Expiration dates for food products - Part 2 :
Voluntary expiration dates


YSMO GSO 2055-1:2020
GSO 2055-1:2015
Yemeni Standard
HALAL FOOD - Part 1 : General Requirements


GSO 2055-1:2015
Gulf Technical Regulation
HALAL FOOD - Part 1 : General Requirements

Recently Published
ISO 24690:2025
International Standard
Glass reinforced thermosetting plastic (GRP) pipes — Test method for the determination of long-term pressure endurance strength

ISO 15614-11:2025
International Standard
Specification and qualification of welding procedures for metallic materials — Welding procedure test — Part 11: Electron and laser beam welding

IEC/TS 81001-2-2:2025
International Standard
Health software and health IT systems safety, effectiveness and security — Part 2-2: Guidance for the implementation, disclosure and communication of security needs, risks and controls

ISO 37190:2025
International Standard
Guidance for practical implementation of ISO 37155 series for supervising at each life cycle phase of smart community infrastructures
