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BS EN ISO 21003-3:2008

Withdrawn

Withdrawn

A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

Multilayer piping systems for hot and cold water installations inside buildings Fittings

Available format(s)

Hardcopy , PDF

Withdrawn date

16-02-2022

Language(s)

English

Published date

29-08-2008

£134.00
Excluding VAT

Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Symbols and abbreviated terms
5 Material characteristics
   5.1 Plastics fitting materials specified in reference
        product standards
   5.2 Plastics fitting materials not specified in reference
        product standards
   5.3 Metallic fitting material
   5.4 Influence on water intended for human consumption
6 General characteristics
   6.1 Appearance
   6.2 Opacity
7 Geometrical characteristics
   7.1 General
   7.2 Dimensions of sockets for socket weld, electrofusion
        and solvent-cemented fittings
   7.3 Dimensions of metallic fittings
8 Mechanical characteristics of plastics fittings (internal
   pressure test)
   8.1 General
   8.2 Plastics fitting materials specified in reference
        product standards
   8.3 Plastics fitting materials not specified in reference
        product standards
9 Physical and chemical characteristics of plastics fittings
   9.1 Plastics fitting materials specified in reference
        product standards
   9.2 Plastics fitting materials not specified in reference
        product standards
   9.3 Sealing elements
10 Performance requirements
11 Marking
   11.1 General requirements
   11.2 Minimum required marking
Annex A (normative) - List of reference product standards
Bibliography

Describes the characteristics of fittings for multilayer piping systems intended to be used for hot and cold water installations inside buildings for the conveyance of water - whether or not the water is intended for human consumption (domestic systems) or for heating systems - under specified design pressures and temperatures appropriate to the class of application.

Committee
PRI/88
DevelopmentNote
Supersedes 06/30133714 DC. (08/2008) Reviewed and confirmed by BSI, November 2017. (11/2017)
DocumentType
Standard
Pages
18
PublisherName
British Standards Institution
Status
Withdrawn
Supersedes

This part of ISO21003 specifies the characteristics of fittings for multilayer piping systems intended to be used for hot and cold water installations inside buildings for the conveyance of water — whether or not the water is intended for human consumption (domestic systems) or for heating systems — under specified design pressures and temperatures appropriate to the class of application (see Table1 of ISO21003-1:2008).

It also specifies the test parameters for the test methods referred to in this part of ISO21003.

ISO21003 is a reference product standard. It is applicable to multilayer pipes, fittings, their joints, and also to joints with components made of other plastics and non-plastics materials intended to be used for hot and cold water installations. This part of ISO21003 is intended for use only in conjunction with all the other parts of ISO21003.

This part of ISO21003 covers fusion, solvent-cemented and mechanical fittings for a range of service conditions (application classes) and design pressures. It is not applicable for values of design temperature, TD, maximum design temperature, Tmax, and malfunction temperature, Tmal, in excess of those in Table1 of ISO21003-1:2008.

NOTE1 It is the responsibility of the purchaser or specifier to make the appropriate selections from these aspects, taking into account their particular requirements and any relevant national regulations and installation practices or codes.

The polymeric materials used for the stress-designed layers are the following: polybutylene (PB), polyethylene of raised temperature resistance (PE-RT), crosslinked polyethylene (PE-X), polypropylene (PP) and chlorinated poly(vinyl chloride) (PVC-C).

The PE-X used shall be fully crosslinked and shall comply with the requirements of the relevant reference product standard (ISO15875).

NOTE2 For the purposes of ISO21003, crosslinked polyethylene (PE-X) as well as adhesives are considered as thermoplastic materials.

Standards Relationship
ISO 21003-3:2008 Identical
EN ISO 21003-3:2008 Identical

BS 8558:2015 Guide to the design, installation, testing and maintenance of services supplying water for domestic use within buildings and their curtilages. Complementary guidance to BS EN 806
BS 8558:2011 Guide to the design, installation, testing and maintenance of services supplying water for domestic use within buildings and their curtilages. Complementary guidance to BS EN 806
15/30299694 DC : 0 BS 8558 - GUIDE TO THE DESIGN, INSTALLATION, TESTING AND MAINTENANCE OF SERVICES SUPPLYING WATER FOR DOMESTIC USE WITHIN BUILDINGS AND THEIR CURTILAGES - COMPLEMENTARY GUIDANCE TO BS EN 806

EN 1254-3:1998 Copper and copper alloys - Plumbing fittings - Part 3: Fittings with compression ends for use with plastics pipes
ISO 15874-3:2013 Plastics piping systems for hot and cold water installations — Polypropylene (PP) — Part 3: Fittings
ISO 15877-3:2009 Plastics piping systems for hot and cold water installations — Chlorinated poly(vinyl chloride) (PVC-C) — Part 3: Fittings
ISO 1167-2:2006 Thermoplastics pipes, fittings and assemblies for the conveyance of fluids — Determination of the resistance to internal pressure — Part 2: Preparation of pipe test pieces
BS 7291-2:2006 Thermoplastics pipes and associated fittings for hot and cold water for domestic purposes and heating installations in buildings Specification for polybutylene (PB) pipes and associated fittings
ISO 1167-4:2007 Thermoplastics pipes, fittings and assemblies for the conveyance of fluids Determination of the resistance to internal pressure Part 4: Preparation of assemblies
ISO 9080:2012 Plastics piping and ducting systems — Determination of the long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation
ISO 21003-5:2008 Multilayer piping systems for hot and cold water installations inside buildings — Part 5: Fitness for purpose of the system
ISO 3126:2005 Plastics piping systems Plastics components Determination of dimensions
ISO 15876-3:2017 Plastics piping systems for hot and cold water installations — Polybutene (PB) — Part 3: Fittings
ISO 1167-3:2007 Thermoplastics pipes, fittings and assemblies for the conveyance of fluids Determination of the resistance to internal pressure Part 3: Preparation of components
ISO 21003-2:2008 Multilayer piping systems for hot and cold water installations inside buildings — Part 2: Pipes
ISO 21003-1:2008 Multilayer piping systems for hot and cold water installations inside buildings — Part 1: General
ISO 22391-3:2009 Plastics piping systems for hot and cold water installations — Polyethylene of raised temperature resistance (PE-RT) — Part 3: Fittings
BS 7291-4:1990 Thermoplastics pipes and associated fittings for hot and cold water for domestic purposes and heating installations in buildings Specification for chlorinated polyvinyl chloride (PVC-C) pipes and associated fittings and solvent cement
ISO/TS 21003-7:2008 Multilayer piping systems for hot and cold water installations inside buildings Part 7: Guidance for the assessment of conformity
ISO 15875-3:2003 Plastics piping systems for hot and cold water installations — Crosslinked polyethylene (PE-X) — Part 3: Fittings
EN 10226-1:2004 Pipe threads where pressure tight joints are made on the threads - Part 1: Taper external threads and parallel internal threads - Dimensions, tolerances and designation
ISO 228-1:2000 Pipe threads where pressure-tight joints are not made on the threads Part 1: Dimensions, tolerances and designation
ISO 7686:2005 Plastics pipes and fittings — Determination of opacity
EN 10088-1:2014 Stainless steels - Part 1: List of stainless steels
ISO 1167-1:2006 Thermoplastics pipes, fittings and assemblies for the conveyance of fluids Determination of the resistance to internal pressure Part 1: General method

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