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Norm

ISO 5660-1:2015

Issue date: 2015 03 20

Reaction-to-fire tests — Heat release, smoke production and mass loss rate — Part 1: Heat release rate (cone calorimeter method) and smoke production rate (dynamic measurement) (Corrected version 2021-01)

ISO 5660-1:2015 specifies a method for assessing the heat release rate and dynamic smoke production rate of specimens exposed in the horizontal orientation to controlled ...
Valid
Publisher:
International Organization for Standardization
Format:
Digital | 55 Pages
Language:
English

ISO 5660-1:2015 specifies a method for assessing the heat release rate and dynamic smoke production rate of specimens exposed in the horizontal orientation to controlled levels of irradiance with an external igniter. The heat release rate is determined by measurement of the oxygen consumption derived from the oxygen concentration and the flow rate in the combustion product stream. The time to ignition (sustained flaming) is also measured in this test.

The dynamic smoke production rate is calculated from measurement of the attenuation of a laser light beam by the combustion product stream. Smoke obscuration is recorded for the entire test, regardless of whether the specimen is flaming or not.

ISO 5660-1:2015
2015 03 20
Reaction-to-fire tests — Heat release, smoke production and mass loss rate — Part 1: Heat release ra...
Norm
ISO 5660-2:2002
2002 12 09
Reaction-to-fire tests — Heat release, smoke production and mass loss rate — Part 2: Smoke productio...
Norm
ISO 5660-1:2002
2002 12 06
Reaction-to-fire tests — Heat release, smoke production and mass loss rate — Part 1: Heat release ra...
Norm
ISO 5660-1:1993/Cor 1:1993
1993 10 21
Fire tests — Reaction to fire — Part 1: Rate of heat release from building products — (Cone calorime...
Norm
ISO 5660-1:1993
1993 06 10
Fire tests — Reaction to fire — Part 1: Rate of heat release from building products — (Cone calorime...
Norm
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Norm
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Issue date : 2024 02 01
Railway applications - Fire protection on railway vehicles - Part 2: Requirements for fire behaviour of materials and components