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BS EN ISO 1167-4 : 2008

Current

Current

The latest, up-to-date edition.

THERMOPLASTICS PIPES, FITTINGS AND ASSEMBLIES FOR THE CONVEYANCE OF FLUIDS - DETERMINATION OF THE RESISTANCE TO INTERNAL PRESSURE - PART 4: PREPARATION OF ASSEMBLIES

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-01-2008

Foreword
1 Scope
2 Normative references
3 Principle
4 Test pieces
  4.1 Sampling
  4.2 Fused assemblies
  4.3 Mechanical end-load-bearing assemblies
  4.4 Adhesively bonded assemblies
  4.5 Non-end-load-bearing assemblies
  4.6 Free length of pipes
  4.7 Testing of tolerance variations
  4.8 Measurement of dimensions
Bibliography

Defines the procedure for the preparation of both end-load-bearing and non-end-load-bearing assemblies, for the determination of their resistance to internal hydrostatic pressure according to ISO 1167-1.

Committee
PRI/88/4
DevelopmentNote
Together with BS EN ISO 1167-1, BS EN ISO 1167-2 and BS EN ISO 1167-3 supersedes BS EN 921 and BS 2782-11.1127A(1995). Supersedes 06/30144271 DC. (04/2008) Reviewed and confirmed by BSI, December 2016. (12/2016)
DocumentType
Standard
Pages
14
PublisherName
British Standards Institution
Status
Current
Supersedes

EN 1067:2005 Adhesives - Examination and preparation of samples for testing
ISO 12176-1:2017 Plastics pipes and fittings — Equipment for fusion jointing polyethylene systems — Part 1: Butt fusion
ISO 12176-2:2008 Plastics pipes and fittings — Equipment for fusion jointing polyethylene systems — Part 2: Electrofusion
EN 1066 : 1997 ADHESIVES - SAMPLING
ISO 11414:2009 Plastics pipes and fittings Preparation of polyethylene (PE) pipe/pipe or pipe/fitting test piece assemblies by butt fusion
ISO 3126:2005 Plastics piping systems Plastics components Determination of dimensions
ISO 11413:2008 Plastics pipes and fittings Preparation of test piece assemblies between a polyethylene (PE) pipe and an electrofusion fitting
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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