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ISO 834-10:2014

Current
Current

The latest, up-to-date edition.

Fire resistance tests Elements of building construction Part 10: Specific requirements to determine the contribution of applied fire protection materials to structural steel elements
Available format(s)

Hardcopy , PDF 1 User , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English

Published date

10-02-2014

ISO 834-10:2014 specifies a method for testing fire protection systems applied to structural steel members used in buildings as beams, columns, or tension members. It is intended for use in conjunction with the assessment protocol described in ISO 83411. It applies to steel sections (including hollow sections) and only considers sections without openings in the web. Results from analysis of I or H sections are directly applicable to angles, channels, and T-sections for the same section factor, whether used as individual members, e.g. bracing, or part of a fabricated structural system such as a steel truss construction. ISO 834-10:2014 does not apply to solid bar, rod, or concrete-filled hollow sections.

ISO 834-10:2014 describes the fire test procedures that specify the tests which should be carried out to determine the ability of the fire protection system to remain sufficiently coherent and in position for a well-defined range of deformations, furnace, and steel temperatures, such that the efficacy of the fire protection system is not significantly impaired, and to provide data on the thermal characteristics of the fire protection system when exposed to the standard temperature/time curve specified in ISO 8341.

In special circumstances, where specified in National Building Regulations, there can be a requirement to subject reactive fire protection materials to a smouldering curve. The test and the requirements for its use are described in ISO 834-10:2014 (Annex G).

ISO 834-10:2014 is applicable to both passive and reactive fire protection systems as defined in the terms and definitions, which are installed or applied in such a way that they remain in place for the intended duration of fire exposure.

The fire test methodology makes provision for the collection and presentation of data which is then used as direct input into ISO 83411 to determine the limits of direct application to steel sections of various shapes, sizes, and fire resistance periods.

DevelopmentNote
Supersedes ISO/DIS 834-10. (02/2014)
DocumentType
Standard
Pages
61
ProductNote
THIS STANDARD ALSO REFERS TO IEC 584-1
PublisherName
International Organization for Standardization
Status
Current

Standards Relationship
BS ISO 834-10:2014 Identical

07/30147204 DC : 0 BS 476-10 - FIRE TESTS ON BUILDING MATERIALS AND STRUCTURES - PART 10: GUIDE TO THE PRINCIPLES, SELECTION, ROLE AND APPLICATION OF FIRE TESTING AND THEIR OUTPUTS
ISO 834-11:2014 Fire resistance tests Elements of building construction Part 11: Specific requirements for the assessment of fire protection to structural steel elements
BS ISO 834-11:2014 Fire resistance tests. Elements of building construction Specific requirements for the assessment of fire protection to structural steel elements

ISO/TR 834-3:2012 Fire-resistance tests — Elements of building construction — Part 3: Commentary on test method and guide to the application of the outputs from the fire-resistance test
ISO 834-7:2000 Fire-resistance tests — Elements of building construction — Part 7: Specific requirements for columns
ISO 8421-2:1987 Fire protection — Vocabulary — Part 2: Structural fire protection
ISO 1716:2010 Reaction to fire tests for products Determination of the gross heat of combustion (calorific value)
ISO 13943:2017 Fire safety — Vocabulary
ISO 1182:2010 Reaction to fire tests for products Non-combustibility test
ISO/TR 12470:1998 Fire-resistance tests Guidance on the application and extension of results
ISO 834-1:1999 Fire-resistance tests Elements of building construction Part 1: General requirements
ISO 834-6:2000 Fire-resistance tests — Elements of building construction — Part 6: Specific requirements for beams
IEC 60584-1:2013 Thermocouples - Part 1: EMF specifications and tolerances

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