11/30242080 DC : DRAFT MAY 2011
Current
The latest, up-to-date edition.
BS ISO 16486-5 - PLASTICS PIPING SYSTEMS FOR THE SUPPLY OF GASEOUS FUELS - UNPLASTICIZED POLYAMIDE (PA-U) PIPING SYSTEMS WITH FUSION JOINTING AND MECHANICAL JOINTING - PART 5: FITNESS FOR PURPOSE OF THE SYSTEM
23-11-2012
Foreword
Introduction
1 Scope
2 Normative references
3 Terms, definitions, symbols and abbreviated terms
4 Fitness for purpose
Annex A (normative) - Preparation of test assemblies
by butt fusion
Annex B (normative) - Preparation of test assemblies
by electrofusion
Annex C (normative) - Test methods for the assessment
of fitness for purpose of transition fittings
Bibliography
BS ISO 16486-5
| Committee |
PRI/88/2
|
| DocumentType |
Draft
|
| PublisherName |
British Standards Institution
|
| Status |
Current
|
| ISO 13953:2001 | Polyethylene (PE) pipes and fittings — Determination of the tensile strength and failure mode of test pieces from a butt-fused joint |
| ISO 13956:2010 | Plastics pipes and fittings — Decohesion test of polyethylene (PE) saddle fusion joints — Evaluation of ductility of fusion joint interface by tear test |
| 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 12176-2:2008 | Plastics pipes and fittings — Equipment for fusion jointing polyethylene systems — Part 2: Electrofusion |
| ISO 6259-1:2015 | Thermoplastics pipes — Determination of tensile properties — Part 1: General test method |
| ISO 13954:1997 | Plastics pipes and fittings — Peel decohesion test for polyethylene (PE) electrofusion assemblies of nominal outside diameter greater than or equal to 90 mm |
| ISO 291:2008 | Plastics — Standard atmospheres for conditioning and testing |
| ISO 13955:1997 | Plastics pipes and fittings — Crushing decohesion test for polyethylene (PE) electrofusion assemblies |
| 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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