UNI EN 10208-1 : 2009
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
View Superseded by
STEEL PIPES FOR PIPELINES FOR COMBUSTIBLE FLUIDS - TECHNICAL DELIVERY CONDITIONS - PART 1: PIPES OF REQUIREMENT CLASS A
12-05-2022
01-01-2009
Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Symbols and abbreviations
5 Classification and designation
5.1 Classification
5.2 Designation
6 Information to be supplied by the purchaser
6.1 Mandatory information
6.2 Options
6.3 Example of ordering
7 Manufacturing
7.1 General
7.2 Steelmaking
7.3 Pipe manufacture
7.4 Heat treatment condition
7.5 Sizing
7.6 Strip end welds
7.7 Jointers
7.8 General requirements for non-destructive testing
8 Requirements
8.1 General
8.2 Chemical composition
8.3 Mechanical properties
8.4 Weldability
8.5 Appearance and soundness
8.6 Dimensions, masses and tolerances
9 Inspection
9.1 Types of inspection and inspection documents
9.2 Summary of inspection and testing
9.3 Selection and preparation of samples and test pieces
9.4 Test methods
9.5 Retests, sorting and reprocessing
10 Marking of the pipes
10.1 General marking
10.2 Special marking
11 Coating for temporary protection
Annex A (normative) Specification of welded jointers
Annex B (normative) Treatment of imperfections and defects
disclosed by visual examination
Annex C (normative) Non-destructive testing
Bibliography
Describes the technical delivery conditions for seamless and welded steel pipes for the on land transport of combustible fluids primarily in gas supply systems but excluding pipeline applications in the petroleum and natural gas industries. Also includes less stringent quality and testing requirements than those in EN 10208-2.
DevelopmentNote |
Replaces UNI 8488
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DocumentType |
Standard
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PublisherName |
Ente Nazionale Italiano di Unificazione (UNI)
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Status |
Superseded
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SupersededBy | |
Supersedes |
Standards | Relationship |
NF EN 10208-1 : 2009 | Identical |
EN 10208-1:2009 | Identical |
BS EN 10208-1:2009 | Identical |
I.S. EN 10208-1:2009 | Identical |
NBN EN 10208-1 : 2009 | Identical |
UNE-EN 10208-1:2011 | Identical |
NS EN 10208-1 : 2009 | Identical |
DIN EN 10208-1:2009-07 | Identical |
SN EN 10208-1 : 2009 | Identical |
NEN EN 10208-1 : 2009 | Identical |
DIN EN 10208-1:1998-02 | Identical |
UNI 9167 : 2009 | INITIAL PRESSURE AND REDUCTION PLANTS FOR NATURAL GAS - DESIGN, CONSTRUCTION AND TESTING |
UNI 7133-4 : 2012 | GAS ODORISATION FOR DOMESTIC AND SIMILAR USES - PART 4: ODORANT REQUIREMENTS |
UNI 11528 : 2014 | GAS PLANTS OVER 35 KW - DESIGN, INSTALLATION AND COMMISSIONING |
UNI 10682 : 2010 | SMALL BULK LPG FACILITIES FOR DISTRIBUTION NETWORK - DESIGN, CONSTRUCTION, INSTALLATION, TESTING AND OPERATION |
EN ISO 14284:2002 | Steel and iron - Sampling and preparation of samples for the determination of chemical composition (ISO 14284:1996) |
EN 10002-1 : 2001 | METALLIC MATERIALS - TENSILE TESTING - PART 1: METHOD OF TEST AT AMBIENT TEMPERATURE |
EN 10052:1993 | Vocabulary of heat treatment terms for ferrous products |
EN 10246-17:2000 | Non-destructive testing of steel tubes - Part 17: Ultrasonic testing of tube ends of seamless and welded steel tubes for the detection of laminar imperfections |
EN ISO 6508-1:2016 | Metallic materials - Rockwell hardness test - Part 1: Test method (ISO 6508-1:2016) |
EN 10246-1:1996 | Non destructive testing of steel tubes - Part 1: Automatic electromagnetic testing of seamless and welded (except submerged arc welded) ferromagnetic steel tubes for verification of hydraulic leak-tightness |
EN ISO 6506-1:2014 | Metallic materials - Brinell hardness test - Part 1: Test method (ISO 6506-1:2014) |
ISO 6506-1:2014 | Metallic materials Brinell hardness test Part 1: Test method |
EN 10079:2007 | Definition of steel products |
EN 10027-2:2015 | Designation systems for steels - Part 2: Numerical system |
CEN/TR 10261:2013 | Iron and steel - European standards for the determination of chemical composition |
EN ISO 377:2017 | Steel and steel products - Location and preparation of samples and test pieces for mechanical testing (ISO 377:2017) |
ISO 6508-1:2016 | Metallic materials — Rockwell hardness test — Part 1: Test method |
EN 1594:2013 | Gas infrastructure - Pipelines for maximum operating pressure over 16 bar - Functional requirements |
EN 10256:2000 | Non-destructive testing of steel tubes - Qualification and competence of level 1 and 2 non-destructive testing personnel |
EN 1011-1:2009 | Welding - Recommendations for welding of metallic materials - Part 1: General guidance for arc welding |
ISO 3183:2012 | Petroleum and natural gas industries Steel pipe for pipeline transportation systems |
EN 10168:2004 | Steel products - Inspection documents - List of information and description |
EN ISO 2566-1:1999 | Steel - Conversion of elongation values - Part 1: Carbon and low alloy steels (ISO 2566-1:1984) |
EN 473:2008 | Non-destructive testing - Qualification and certification of NDT personnel - General principles |
API 5L : 2012 | LINE PIPE |
EN 910 : 1996 | DESTRUCTIVE TESTS ON WELDS IN METALLIC MATERIALS - BEND TESTS |
ISO 15609-1:2004 | Specification and qualification of welding procedures for metallic materials Welding procedure specification Part 1: Arc welding |
EN 10246-7:2005 | Non-destructive testing of steel tubes - Part 7: Automatic full peripheral ultrasonic testing of seamless and welded (except submerged arc welded) tubes for the detection of longitudinal imperfections |
EN 10021:2006 | General technical delivery conditions for steel products |
EN 10246-10:2000 | Non-destructive testing of steel tubes - Part 10: Radiographic testing of the weld seam of automatic fusion arc welded steel tubes for the detection of imperfections |
ISO 2566-1:1984 | Steel Conversion of elongation values Part 1: Carbon and low alloy steels |
EN 10204:2004 | Metallic products - Types of inspection documents |
EN 10246-9:2000 | Non-destructive testing of steel tubes - Part 9: Automatic ultrasonic testing of the weld seam of submerged arc welded steel tubes for the detection of longitudinal and/or transverse imperfections |
EN ISO 15609-1:2004 | Specification and qualification of welding procedures for metallic materials - Welding procedure specification - Part 1: Arc welding (ISO 15609-1:2004) |
EN 10246-3:1999 | Non-destructive testing of steel tubes - Part 3: Automatic eddy current testing of seamless and welded (except submerged arc-welded) steel tubes for the detection of imperfections |
ISO 19232-1:2013 | Non-destructive testing — Image quality of radiographs — Part 1: Determination of the image quality value using wire-type image quality indicators |
EN 10027-1:2016 | Designation systems for steels - Part 1: Steel names |
ISO 8492:2013 | Metallic materials Tube Flattening test |
EN 10020:2000 | Definition and classification of grades of steel |
EN ISO 8492:2013 | Metallic materials - Tube - Flattening test (ISO 8492:2013) |
ISO 15607:2003 | Specification and qualification of welding procedures for metallic materials General rules |
EN 10266:2003 | Steel tubes, fittings and structural hollow sections - Symbols and definitions of terms for use in product standards |
EN 10220:2002 | Seamless and welded steel tubes - Dimensions and masses per unit length |
ISO 377:2017 | Steel and steel products — Location and preparation of samples and test pieces for mechanical testing |
ISO 14284:1996 | Steel and iron — Sampling and preparation of samples for the determination of chemical composition |
EN 10246-8:1999 | Non-destructive testing of steel tubes - Part 8: Automatic ultrasonic testing of the weld seam of electric welded steel tubes for the detection of longitudinal imperfections |
EN ISO 15607:2003 | Specification and qualification of welding procedures for metallic materials - General rules (ISO 15607:2003) |
EN 287-1:2011 | Qualification test of welders - Fusion welding - Part 1: Steels |
EN 10246-5 : 1999 | NON-DESTRUCTIVE TESTING OF STEEL TUBES - PART 5: AUTOMATIC FULL PERIPHERAL MAGNETIC TRANSDUCER/FLUX LEAKAGE TESTING OF SEAMLESS AND WELDED (EXCEPT SUBMERGED ARC WELDED) FERROMAGNETIC STEEL TUBES FOR THE DETECTION OF LONGITUDINAL IMPERFECTIONS |
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