ISO 12230:2012
Polybutene-1 (PB-1) pipes — Effect of time and temperature on the expected strength
Polybutene-1 (PB-1) pipes — Effect of time and temperature on the expected strength
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 9
- Дата публикации:
- 1 июня 2012 г.
- Издание:
- ISO IS 12230 edition 2 version 1
- ICS:
- 23.040.20
ISO12230:2012 specifies minimum values for the expected strength as a function of time and temperature in the form of reference lines and tabulated data, for use in calculations on pipes made of polybutene-1 homopolymer (PB-H), and polybutene-1 random copolymer (PB-R). For the sake of simplicity the designation polybutene and the abbreviation PB are used throughout.
Abstract
Overview
ISO 12230:2012 - "Polybutene-1 (PB-1) pipes - Effect of time and temperature on the expected strength" defines how to quantify the long‑term hoop strength of pipes made from polybutene-1. The standard provides reference lines, mathematical equations and tabulated hoop‑strength values as a function of time and temperature for polybutene homopolymer (PB‑H) and polybutene random copolymer (PB‑R). These reference data are intended for use in design calculations and conformity assessment of PB‑1 piping systems.
Key topics and technical requirements
- Scope: Minimum expected strength (hoop stress) vs. time and temperature for PB‑H and PB‑R pipes.
- Reference model: A four‑parameter mathematical model (two-branch equations) describes the reference lines; the lower value from the two branches defines the expected minimum hoop strength.
- Material designations: PB‑H = polybutene homopolymer; PB‑R = polybutene random copolymer (definitions and composition limits are given).
- Coefficients and temperature ranges: Distinct coefficient sets are provided for PB‑H (valid 10 °C to 110 °C) and PB‑R (valid 10 °C to 95 °C); graphical reference lines are shown in Figures 1 and 2.
- Tabulated values: Tables list calculated expected hoop strength values for various combinations of time and temperature for both PB‑H and PB‑R (Tables 2 and 3).
- Extrapolation: Arrhenius temperature dependence with an activation energy of 110 kJ/mol is used to derive extrapolation time factors (k) for specified temperature ranges; an extrapolation factor of 100 is acceptable up to 50 °C.
- Pre‑conditioning: Pipes shall be conditioned per manufacturer recommendations; PB‑R specimens require annealing 96 h at 95 °C before thermal stability testing at 110 °C.
- Conformance (Annex A): Test programs must produce failures across specified time intervals at key temperatures (20 °C, 60–82 °C, 95 °C). At least 97.5% of plotted experimental points must lie on or above the reference lines to demonstrate conformance; provisions are given for running data points and long tests.
Applications and users
Who uses ISO 12230:2012?
- Pipe manufacturers and compound formulators (PB‑H, PB‑R)
- Design and pipeline engineers performing lifetime and pressure‑rating calculations
- Testing laboratories and certification bodies assessing long‑term hydrostatic strength
- Standards committees and product specifiers for building/plumbing and industrial fluid systems
Practical uses:
- Determining allowable hoop stress for service life estimates
- Supporting product certification and compliance demonstrations
- Enabling extrapolation from accelerated tests to service temperatures
Related standards
- ISO 1167-1 / ISO 1167-2 - methods for determining resistance to internal pressure (referenced normative tests)
- ISO 9080 - procedures for long‑term hydrostatic strength extrapolation
Keywords: ISO 12230:2012, polybutene-1, PB-1 pipes, expected strength, hoop strength, time-temperature, PB-H, PB-R, long-term hydrostatic strength, reference lines, extrapolation.
Технические детали
- Технический комитет
- ISO/TC 138/SC 5 - General properties of pipes, fittings and valves of plastic materials and their accessories -- Test methods and basic specifications
- SKU
- ISO 12230:2012
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