ISO 9080:2012
Plastics piping and ducting systems - Determination of the long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation

Standard No.
ISO 9080:2012
Release Date
2012
Published By
International Organization for Standardization (ISO)
Latest
ISO 9080:2012
Scope
This International Standard specifies a method for predicting the long-term hydrostatic strength of thermoplastics materials by statistical extrapolation. The method is applicable to all types of thermoplastics pipe at applicable temperatures. It was developed on the basis of test data from pipe systems.

ISO 9080:2012 Referenced Document

  • ISO 11357-3 Plastics - Differential scanning calorimetry (DSC) - Part 3: Determination of temperature and enthalpy of melting and crystallization*2018-03-01 Update
  • ISO 1167-1 Thermoplastics pipes, fittings and assemblies for the conveyance of fluids - Determination of the resistance to internal pressure - Part 1: General method
  • ISO 1167-2 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 12162 Thermoplastics materials for pipes and fittings for pressure applications - Classification, designation and design coefficient
  • ISO 17456 Plastics piping systems - Multilayer pipes - Determination of long-term strength
  • ISO 2507-1:1995 Thermoplastics pipes and fittings - Vicat softening temperature - Part 1: General test method
  • ISO 3126 Plastics piping systems - Plastics components - Determination of dimensions

ISO 9080:2012 history

  • 2012 ISO 9080:2012 Plastics piping and ducting systems - Determination of the long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation
  • 2003 ISO 9080:2003 Plastics piping and ducting systems - Determination of the long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation
Plastics piping and ducting systems - Determination of the long-term hydrostatic strength of thermoplastics materials in pipe form by extrapolation



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