ONORM EN ISO 21003-5 : 2008
Superseded
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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MULTILAYER PIPING SYSTEMS FOR HOT AND COLD WATER INSTALLATIONS INSIDE BUILDINGS - PART 5: FITNESS FOR PURPOSE OF THE SYSTEM
Superseded date
05-19-2022
Superseded by
Published date
01-12-2013
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DevelopmentNote |
Supersedes ONORM B 5159. (03/2018)
|
DocumentType |
Standard
|
PublisherName |
Osterreichisches Normungsinstitut/Austrian Standards
|
Status |
Superseded
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SupersededBy |
Standards | Relationship |
ISO 21003-5:2008 | Identical |
EN ISO 21003-5:2008 | Identical |
ONORM EN 1264-4 : 2009 | WATER BASED SURFACE EMBEDDED HEATING AND COOLING SYSTEMS - PART 4: INSTALLATION |
ONORM EN ISO 21003-1 : 2012 | MULTILAYER PIPING SYSTEMS FOR HOT AND COLD WATER INSTALLATIONS INSIDE BUILDINGS - PART 1: GENERAL (ISO 21003-1:2008) |
ONORM B 2531 : 2012 | SPECIFICATIONS FOR INSTALLATIONS INSIDE BUILDINGS CONVEYING WATER FOR HUMAN CONSUMPTION - NATIONAL SUPPLEMENTS TO ONORM EN 806-1 TO -5 |
ONORM EN 1254-6 : 2013 | COPPER AND COPPER ALLOYS - PLUMBING FITTINGS - PART 6: FITTINGS WITH PUSH-FIT ENDS |
EN 12293:1999 | Plastics piping systems - Thermoplastics pipes and fittings for hot and cold water - Test method for the resistance of mounted assemblies to temperature cycling |
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 |
ISO 15875-5:2003 | Plastics piping systems for hot and cold water installations — Crosslinked polyethylene (PE-X) — Part 5: Fitness for purpose of the system |
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 17456:2006 | Plastics piping systems Multilayer pipes Determination of long-term strength |
ISO 22391-5:2009 | Plastics piping systems for hot and cold water installations — Polyethylene of raised temperature resistance (PE-RT) — Part 5: Fitness for purpose of the system |
ISO 15877-5:2009 | Plastics piping systems for hot and cold water installations — Chlorinated poly(vinyl chloride) (PVC-C) — Part 5: Fitness for purpose of the system |
EN 713:1993 | Plastics piping systems - Mechanical joints between fittings and polyolefin pressure pipes - Test method for leaktightness under internal pressure of assemblies subjected to bending |
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 |
EN 12295:1999 | Plastics piping systems - Thermoplastics pipes and associated fittings for hot and cold water - Test method for resistance of joints to pressure cycling |
ISO 21003-3:2008 | Multilayer piping systems for hot and cold water installations inside buildings — Part 3: Fittings |
ISO 13760:1998 | Plastics pipes for the conveyance of fluids under pressure — Miner's rule — Calculation method for cumulative damage |
EN 12294:1999 | Plastics piping systems - Systems for hot and cold water - Test method for leaktightness under vacuum |
ISO 15874-5:2013 | Plastics piping systems for hot and cold water installations — Polypropylene (PP) — Part 5: Fitness for purpose of the system |
ISO 15876-5:2017 | Plastics piping systems for hot and cold water installations — Polybutene (PB) — Part 5: Fitness for purpose of the system |
EN 712:1993 | Thermoplastics piping systems - End-load bearing mechanical joints between pressure pipes and fittings - Test method for resistance to pull-out under constant longitudinal force |
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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