• ISO 3213:2009

    Current The latest, up-to-date edition.

    Polypropylene (PP) pipes Effect of time and temperature on the expected strength

    Available format(s):  Hardcopy, PDF, PDF 3 Users, PDF 5 Users, PDF 9 Users

    Language(s):  English, French, Russian

    Published date:  16-09-2009

    Publisher:  International Organization for Standardization

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    Abstract - (Show below) - (Hide below)

    ISO 3213:2009 specifies the minimum values for expected strength as a function of time and temperature in the form of reference lines, for use in calculations on pipes made of:

    - polypropylene homopolymer (PP-H);

    - polypropylene block copolymer (PP-B) (also called heterophasic copolymer);

    - polypropylene random copolymer (PP-R);

    - polypropylene random copolymer (this material can be distinguished by DSC testing or another appropriate method to indicate a second melting peak) with a modified crystallinity (PP-RCT).

    General Product Information - (Show below) - (Hide below)

    Development Note Supersedes ISO/DIS 3213. (09/2009)
    Document Type Standard
    Publisher International Organization for Standardization
    Status Current
    Supersedes

    Standards Referenced By This Book - (Show below) - (Hide below)

    05/30132152 DC : DRAFT APR 2005 ISO 21004 - PLASTICS PIPING SYSTEMS - MULTILAYER PIPES AND THEIR JOINTS, BASED ON THERMOPLASTICS, FOR WATER SUPPLY
    DIN EN 15015 E : 2008 PLASTICS PIPING SYSTEMS - SYSTEMS FOR HOT AND COLD WATER NOT INTENDED FOR HUMAN CONSUMPTION - PERFORMANCE CHARACTERISTICS FOR PIPES, FITTINGS AND THEIR JOINTS
    DD ISO/TS 26873:2010 Plastics pipes and fittings. Definition and construction procedures for reference lines
    I.S. EN 15015:2009 PLASTICS PIPING SYSTEMS - SYSTEMS FOR HOT AND COLD WATER NOT INTENDED FOR HUMAN CONSUMPTION - PERFORMANCE CHARACTERISTICS FOR PIPES, FITTINGS AND THEIR JOINTS
    04/30118854 DC : DRAFT SEP 2004 EN 15015 - PLASTICS PIPING SYSTEMS - SYSTEMS FOR HOT AND COLD WATER NOT INTENDED FOR HUMAN CONSUMPTION - PERFORMANCE CHARACTERISTICS FOR PIPES, FITTINGS AND THEIR JOINTS
    DIN EN 15015:2008-01 Plastics piping systems - Systems for hot and cold water not intended for human consumption - Performance characteristics for pipes, fittings and their joints
    11/30239909 DC : 0 BS EN 15015 - PLASTICS PIPING SYSTEMS - HOT AND COLD WATER PIPING COMPONENTS - REQUIREMENTS AND TEST/ASSESSMENT METHODS FOR PIPES AND FITTINGS
    BS EN 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 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
    UNI EN 15015 : 2008 PLASTICS PIPING SYSTEMS - SYSTEMS FOR HOT AND COLD WATER NOT INTENDED FOR HUMAN CONSUMPTION - PERFORMANCE CHARACTERISTICS FOR PIPES, FITTINGS AND THEIR JOINTS
    13/30212494 DC : 0 BS EN ISO 15494 - PLASTICS PIPING SYSTEMS FOR INDUSTRIAL APPLICATIONS - POLYBUTENE (PB), POLYETHYLENE (PE) AND POLYPROPYLENE (PP) - SPECIFICATIONS FOR COMPONENTS AND THE SYSTEM - METRIC SERIES
    ISO 21004:2006 Plastics piping systems Multilayer pipes and their joints, based on thermoplastics, for water supply
    PREN ISO 15494 : DRAFT 2013 PLASTICS PIPING SYSTEMS FOR INDUSTRIAL APPLICATIONS - POLYBUTENE (PB), POLYETHYLENE (PE) AND POLYPROPYLENE (PP) - SPECIFICATIONS FOR COMPONENTS AND THE SYSTEM - METRIC SERIES (ISO/DIS 15494:2013)
    I.S. EN 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 15494:2015)
    EN 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 15494:2015)
    DIN EN ISO 15494:2016-03 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 15494:2015)
    BS EN 15015:2007 Plastics piping systems. Systems for hot and cold water not intended for human consumption. Performance characteristics for pipes, fittings and their joints
    DIN EN 15015:2014-06 (Draft) PLASTICS PIPING SYSTEMS - SYSTEMS FOR HOT AND COLD WATER NOT INTENDED FOR HUMAN CONSUMPTION - PERFORMANCE CHARACTERISTICS FOR PIPES, FITTINGS AND THEIR JOINTS
    EN 15015:2007 Plastics piping systems - Systems for hot and cold water not intended for human consumption - Performance characteristics for pipes, fittings and their joints
    UNE-EN ISO 15494:2016 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 15494:2015)
    ISO/TS 26873:2010 Plastics pipes and fittings — Definition and construction procedures for reference lines

    Standards Referencing This Book - (Show below) - (Hide below)

    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 1043-1:2011 Plastics — Symbols and abbreviated terms — Part 1: Basic polymers and their special characteristics
    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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