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DD ISO/TS 26873:2010

Current

Current

The latest, up-to-date edition.

Plastics pipes and fittings. Definition and construction procedures for reference lines

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

30-09-2010

$268.61
Including GST where applicable

Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Procedures for drawing reference lines
Annex A (informative) - International Standards in which
        reference lines can be found
Bibliography

Provides reference lines as the generic representation of the creep rupture properties of pipes made of thermoplastics material and gives procedures for drafting reference lines in a mathematical form.

Committee
PRI/88
DevelopmentNote
Reviewed and confirmed by BSI, August 2017. (08/2017)
DocumentType
Standard
Pages
14
PublisherName
British Standards Institution
Status
Current

This Technical Specification defines reference lines as the generic representation of the creep rupture properties of pipes made of thermoplastics material and gives procedures for drafting reference lines in a mathematical form.

Standards Relationship
ISO/TS 26873:2010 Identical

ISO 15493:2003 Plastics piping systems for industrial applications Acrylonitrile-butadiene-styrene (ABS), unplasticized poly(vinyl chloride) (PVC-U) and chlorinated poly(vinyl chloride) (PVC-C) Specifications for components and the system Metric series
ISO 3213:2009 Polypropylene (PP) pipes Effect of time and temperature on the expected strength
ISO 15494:2015 Plastics piping systems for industrial applications — Polybutene (PB), polyethylene (PE), polyethylene of raised temperature resistance (PE-RT), crosslinked polyethylene (PE-X), polypropylene (PP) — Metric series for specifications for components and the system
ISO/TS 15875-7:2003 Plastics piping systems for hot and cold water installations Crosslinked polyethylene (PE-X) Part 7: Guidance for the assessment of conformity
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
ISO 10146:1997 Crosslinked polyethylene (PE-X) pipes Effect of time and temperature on the expected strength
ISO 1452-1:2009 Plastics piping systems for water supply and for buried and above-ground drainage and sewerage under pressure — Unplasticized poly(vinyl chloride) (PVC-U) — Part 1: General
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 15874-1:2013 Plastics piping systems for hot and cold water installations — Polypropylene (PP) — Part 1: General
ISO 9080:2012 Plastics piping and ducting systems — Determination of the long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation
ISO 15877-2:2009 Plastics piping systems for hot and cold water installations — Chlorinated poly(vinyl chloride) (PVC-C) — Part 2: Pipes
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 15875-2:2003 Plastics piping systems for hot and cold water installations — Crosslinked polyethylene (PE-X) — Part 2: Pipes
ISO 12230:2012 Polybutene-1 (PB-1) pipes — Effect of time and temperature on the expected strength
ISO/TS 15876-7:2003 Plastics piping systems for hot and cold water installations Polybutylene (PB) Part 7: Guidance for the assessment of conformity
ISO 10931:2005 Plastics piping systems for industrial applications Poly(vinylidene fluoride) (PVDF) Specifications for components and the system
ISO 15877-1:2009 Plastics piping systems for hot and cold water installations — Chlorinated poly(vinyl chloride) (PVC-C) — Part 1: General
ISO 15874-2:2013 Plastics piping systems for hot and cold water installations — Polypropylene (PP) — Part 2: Pipes
ISO 15876-1:2017 Plastics piping systems for hot and cold water installations — Polybutene (PB) — Part 1: General
ISO 15876-3:2017 Plastics piping systems for hot and cold water installations — Polybutene (PB) — Part 3: Fittings
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
ISO 22391-2:2009 Plastics piping systems for hot and cold water installations — Polyethylene of raised temperature resistance (PE-RT) — Part 2: Pipes
ISO/TS 15877-7:2009 Plastics piping systems for hot and cold water installations Chlorinated poly(vinyl chloride) (PVC-C) Part 7: Guidance for the assessment of conformity
ISO 24033:2009 Polyethylene of raised temperature resistance (PE-RT) pipes — Effect of time and temperature on the expected strength
ISO 15876-2:2017 Plastics piping systems for hot and cold water installations — Polybutene (PB) — Part 2: Pipes
ISO 15875-1:2003 Plastics piping systems for hot and cold water installations — Crosslinked polyethylene (PE-X) — 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
ISO 15875-3:2003 Plastics piping systems for hot and cold water installations — Crosslinked polyethylene (PE-X) — Part 3: Fittings
ISO 13760:1998 Plastics pipes for the conveyance of fluids under pressure — Miner's rule — Calculation method for cumulative damage
ISO 22391-1:2009 Plastics piping systems for hot and cold water installations — Polyethylene of raised temperature resistance (PE-RT) — Part 1: General
ISO 15876-5:2017 Plastics piping systems for hot and cold water installations — Polybutene (PB) — Part 5: Fitness for purpose of the system
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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