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API STD 521: Guide for Pressure-relieving and Depressuring Systems – Edition 6

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682

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API STD 653: Tank Inspection, Repair, Alteration, and Reconstruction – Edition 4

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CSA Z662:19 – Oil and gas pipeline systems

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1197

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CSA Z341 Series-18: Storage of hydrocarbons in underground formations

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878

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CSA Z246.2-14 – Emergency preparedness and response for petroleum and natural gas industry systems

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CSA Z341 Series:22 – Storage of hydrocarbons in underground formations

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CSA Z731-09 (R2014) – Emergency Preparedness and Response

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CSA Z662:23 – Oil and gas pipeline systems

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CSA Z341 Series:26 – Storage of Hydrocarbons in underground formations

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CSA B51:24 Boiler, Pressure Vessel, and Pressure Piping Code

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ISO 13924:2000

ISO 13924:2000 Plastics pipes and fittings – Bending-tensile cycle test for PE/metal transition fittings, PE tapping tees and PE branch saddles

CDN $82.00

SKU: 04364c68565a Categories: ,

Description

This International Standard specifies a method for testing the flexural fatigue resistance of piping assemblies under

pressure.

The method is applicable to polyethylene (PE) tapping tees, PE/metal transition fittings and PE branch saddles,

intended for use with PE pipes having a nominal outside diameter de u 63 mm.

NOTE The test is based on simulating the stresses generated in practice on buried piping networks, i.e. combined bending

and tensile stresses, at ambient temperature. The test is accelerated by magnifying the displacements observed in practice.

Edition

1

Published Date

2000-03-23

Status

PUBLISHED

Pages

5

Language Detail Icon

English

Format Secure Icon

Secure PDF

Abstract

This International Standard specifies a method for testing the flexural fatigue resistance of piping assemblies under

pressure.

The method is applicable to polyethylene (PE) tapping tees, PE/metal transition fittings and PE branch saddles,

intended for use with PE pipes having a nominal outside diameter de u 63 mm.

NOTE The test is based on simulating the stresses generated in practice on buried piping networks, i.e. combined bending

and tensile stresses, at ambient temperature. The test is accelerated by magnifying the displacements observed in practice.

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