ISO 7539-6:2011
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
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Corrosion of metals and alloys Stress corrosion testing Part 6: Preparation and use of precracked specimens for tests under constant load or constant displacement
Hardcopy , PDF 1 User , PDF 3 Users , PDF 5 Users , PDF 9 Users
14-09-2018
English, French
10-10-2011
ISO 7539-6:2011 covers procedures for designing, preparing and using precracked specimens for investigating susceptibility to stress corrosion. It gives recommendations for the design, preparation and use of precracked specimens for investigating susceptibility to stress corrosion.
The term "metal" as used in ISO 7539-6:2011 includes alloys.
Because of the need to confine plasticity at the crack tip, precracked specimens are not suitable for the evaluation of thin products, such as sheet or wire, and are generally used for thicker products including plate bar and forgings. They can also be used for parts joined by welding.
Precracked specimens can be loaded with equipment for application of a constant load or can incorporate a device to produce a constant displacement at the loading points. Tests conducted under increasing displacement or increasing load are dealt with in ISO 7539-9.
A particular advantage of precracked specimens is that they allow data to be acquired from which critical defect sizes, above which stress corrosion cracking can occur, can be estimated for components of known geometry subjected to known stresses. They also enable rates of stress corrosion crack propagation to be determined. The latter data can be taken into account when monitoring parts containing defects during service.
DevelopmentNote |
DRAFT ISO/DIS 7539-6 is also available for this standard. (08/2017)
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DocumentType |
Standard
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Pages |
38
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PublisherName |
International Organization for Standardization
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Status |
Withdrawn
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Supersedes |
Standards | Relationship |
DS EN ISO 7539-6 : 2012 | Identical |
UNE-EN ISO 7539-6:2012 | Identical |
NS EN ISO 7539-6 : 2011 | Identical |
I.S. EN ISO 7539-6:2011 | Identical |
NBN EN ISO 7539-6 : 2011 | Identical |
NF EN ISO 7539-6 : 2011 | Identical |
PN EN ISO 7539-6 : 2012 | Identical |
EN ISO 7539-6:2011 | Identical |
NEN EN ISO 7539-6 : 2011 | Identical |
ONORM EN ISO 7539-6 : 2012 | Identical |
UNI EN ISO 7539-6 : 2011 | Identical |
BS EN ISO 7539-6:2011 | Identical |
DIN EN ISO 7539-6:2012-01 | Identical |
SN EN ISO 7539-6 : 2012 | Identical |
BS 6980-6(1990) : AMD 8734 | Identical |
DIN 50922:1985-10 | Corresponds |
DIN EN ISO 7539-8:2008-08 | Corrosion of metals and alloys - Stress corrosion testing - Part 8: Preparation and use of specimens to evaluate weldments (ISO 7539-8:2000) |
BS ISO 16110-1:2007 | Hydrogen generators using fuel processing technologies Safety |
06/30148182 DC : DRAFT MAY 2006 | ISO 7866 - GAS CYLINDERS REFILLABLE SEAMLESS ALUMINIUM ALLOY GAS CYLINDERS - DESIGN, CONSTRUCTION AND TESTING |
05/30042912 DC : DRAFT JAN 2005 | PREN 15045 - TRANSPORTABLE GAS CYLINDERS - SPECIFICATION FOR THE DESIGN AND CONSTRUCTION OF REFILLABLE SEAMLESS ALUMINIUM OR ALUMINIUM ALLOY GAS CYLINDERS FOR PORTABLE CO[2] FIRE EXTINGUISHERS OF WATER CAPACITIES FROM 0,5 LITRE UP TO 15 LITRES |
17/30337655 DC : 0 | BS ISO 21153 - CORROSION OF METALS AND ALLOYS - MEASUREMENT OF ENVIRONMENTALLY ASSISTED SMALL CRACK GROWTH RATE |
BS EN ISO 7866:2012 | Gas cylinders. Refillable seamless aluminium alloy gas cylinders. Design, construction and testing |
DIN EN ISO 7539-11:2015-03 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION CRACKING - PART 11: GUIDELINES FOR TESTING THE RESISTANCE OF METALS AND ALLOYS TO HYDROGEN EMBRITTLEMENT AND HYDROGEN-ASSISTED CRACKING (ISO 7539-11:2013) |
I.S. EN ISO 7539-9:2008 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 9: PREPARATION AND USE OF PRE-CRACKED SPECIMENS FOR TESTS UNDER RISING LOAD OR RISING DISPLACEMENT |
I.S. EN 16602-70-37:2014 | SPACE PRODUCT ASSURANCE - DETERMINATION OF THE SUSCEPTIBILITY OF METALS TO STRESS-CORROSION CRACKING |
UNI EN ISO 7539-9 : 2008 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 9: PREPARATION AND USE OF PRE-CRACKED SPECIMENS FOR TESTS UNDER RISING LOAD OR RISING DISPLACEMENT |
ISO 7539-11:2013 | Corrosion of metals and alloys — Stress corrosion testing — Part 11: Guidelines for testing the resistance of metals and alloys to hydrogen embrittlement and hydrogen-assisted cracking |
UNE-EN ISO 11114-4:2017 | Transportable gas cylinders - Compatibility of cylinder and valve materials with gas contents - Part 4: Test methods for selecting steels resistant to hydrogen embrittlement (ISO 11114-4:2017) |
BS EN 12862:2000 | Transportable gas cylinders. Specification for the design and construction of refillable transportable welded aluminium alloy gas cylinders |
DIN EN ISO 11114-4:2017-09 | TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 4: TEST METHODS FOR SELECTING STEELS RESISTANT TO HYDROGEN EMBRITTLEMENT (ISO 11114-4:2017) |
BS EN ISO 7539-9:2008 | Corrosion of metals and alloys. Stress corrosion testing Preparation and use of pre-cracked specimens for tests under rising load or rising displacement |
17/30341479 DC : 0 | BS ISO 16111 - TRANSPORTABLE GAS STORAGE DEVICES - HYDROGEN ABSORBED IN REVERSIBLE METAL HYDRIDE |
BS ISO 7539-11 : 2013 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION CRACKING - PART 11: GUIDELINES FOR TESTING THE RESISTANCE OF METALS AND ALLOYS TO HYDROGEN EMBRITTLEMENT AND HYDROGEN-ASSISTED CRACKING |
ISO 9591:2004 | Corrosion of aluminium alloys — Determination of resistance to stress corrosion cracking |
BS 6980-5(1990) : 1990 AMD 1995 | STRESS CORROSION TESTING - METHOD FOR THE PREPARATION AND USE OF C-RING SPECIMENS |
03/104505 DC : DRAFT FEB 2003 | BS ISO 11114-4 - TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 4: TEST METHODS FOR SELECTING METALLIC MATERIALS RESISTANT TO HYDROGEN EMBRITTLEMENT |
BS EN 16602-70-37:2014 | Space product assurance. Determination of the susceptibility of metals to stress-corrosion cracking |
08/30148224 DC : DRAFT FEB 2008 | BS ISO 26444 - GAS CYLINDERS - REFILLABLE WELDED ALUMINIUM ALLOY GAS CYLINDERS FOR GREATER THAN 60 BAR TEST PRESSURE - DESIGN, CONSTRUCTION AND TESTING |
DIN EN ISO 7866:2013-01 | Gas cylinders - Refillable seamless aluminium alloy gas cylinders - Design, construction and testing (ISO 7866:2012) |
I.S. EN ISO 7539-8:2008 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 8: PREPARATION AND USE OF SPECIMENS TO EVALUATE WELDMENTS |
ISO 21601:2013 | Corrosion of metals and alloys — Guidelines for assessing the significance of stress corrosion cracks detected in service |
I.S. EN ISO 11114-4:2017 | TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 4: TEST METHODS FOR SELECTING STEELS RESISTANT TO HYDROGEN EMBRITTLEMENT (ISO 11114-4:2017) |
PD 6493:1991 | Guidance on methods for assessing the acceptability of flaws in fusion welded structures |
UNE-EN ISO 7539-11:2015 | Corrosion of metals and alloys - Stress corrosion cracking - Part 11: Guidelines for testing the resistance of metals and alloys to hydrogen embrittlement and hydrogen-assisted cracking (ISO 7539-11:2013) |
BS ISO 7539-8 : 2000 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PREPARATION AND USE OF SPECIMENS TO EVALUATE WELDMENTS |
BS EN ISO 7539-7:2005 | Corrosion of metals and alloys. Stress corrosion testing Method for slow strain rate testing |
BS ISO 21601:2013 | Corrosion of metals and alloys. Guidelines for assessing the significance of stress corrosion cracks detected in service |
I.S. EN ISO 7866:2012 | GAS CYLINDERS - REFILLABLE SEAMLESS ALUMINIUM ALLOY GAS CYLINDERS - DESIGN, CONSTRUCTION AND TESTING (ISO 7866:2012) |
UNI EN ISO 7866 : 2012 | GAS CYLINDERS - REFILLABLE SEAMLESS ALUMINIUM ALLOY GAS CYLINDERS - DESIGN, CONSTRUCTION AND TESTING |
ISO 16111:2008 | Transportable gas storage devices Hydrogen absorbed in reversible metal hydride |
ISO 16110-1:2007 | Hydrogen generators using fuel processing technologies Part 1: Safety |
ISO 20703:2006 | Gas cylinders — Refillable welded aluminium-alloy cylinders — Design, construction and testing |
EN 16602-70-37:2014 | Space product assurance - Determination of the susceptibility of metals to stress-corrosion cracking |
UNI EN ISO 7539-8 : 2008 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 8: PREPARATION AND USE OF SPECIMENS TO EVALUATE WELDMENTS |
UNI EN 12862 : 2002 | TRANSPORTABLE GAS CYLINDERS - SPECIFICATION FOR THE DESIGN AND CONSTRUCTION OF REFILLABLE TRANSPORTABLE WELDED ALUMINIUM ALLOY GAS CYLINDERS |
NF EN ISO 7866 : 2012 | GAS CYLINDERS - REFILLABLE SEAMLESS ALUMINIUM ALLOY GAS CYLINDERS - DESIGN, CONSTRUCTION AND TESTING |
DIN EN ISO 7539-7:2005-05 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 7: METHOD FOR SLOW STRAIN RATE TESTING |
BS EN 16602-70-45:2014 | Space product assurance. Mechanical testing of metallic materials |
BS EN ISO 7539-8:2008 | Corrosion of metals and alloys. Stress corrosion testing Preparation and use of specimens to evaluate weldments |
15/30288130 DC : 0 | BS EN ISO 11114-4 - TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 4: TEST METHODS FOR SELECTING STEELS RESISTANT TO HYDROGEN EMBRITTLEMENT |
BS ISO 16111:2008 | Transportable gas storage devices. Hydrogen absorbed in reversible metal hydride |
03/314809 DC : DRAFT SEP 2003 | EN ISO 13680 - PETROLEUM AND NATURAL GAS INDUSTRIES - CORROSION-RESISTANT ALLOY SEAMLESS TUBES FOR USE AS CASING, TUBING AND COUPLING STOCK - TECHNICAL DELIVERY CONDITIONS |
DIN EN ISO 7539-9:2008-08 | Corrosion of metals and alloys - Stress corrosion testing - Part 9: Preparation and use of pre-cracked specimens for tests under rising load or rising displacement (ISO 7539-9:2003) |
11/30219194 DC : 0 | BS ISO 7539-11 - CORROSION OF METALS AND ALLOYS - STRESS CORROSION CRACKING - PART 11: GUIDELINES FOR TESTING THE RESISTANCE OF METALS AND ALLOYS TO HYDROGEN EMBRITTLEMENT AND HYDROGEN-ASSISTED CRACKING |
05/30139447 DC : DRAFT SEP 2005 | ISO 21601 - GUIDELINES FOR ASSESSING THE SIGNIFICANCE OF STRESS CORROSION CRACKS DETECTED IN SERVICE |
11/30219244 DC : DRAFT SEP 2011 | BS ISO 21601 - CORROSION OF METALS AND ALLOYS - GUIDELINES FOR ASSESSING THE SIGNIFICANCE OF STRESS CORROSION CRACKS DETECTED IN SERVICE |
ANSI/CSA FC 1:2014 | FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY |
I.S. EN ISO 7539-11:2014 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION CRACKING - PART 11: GUIDELINES FOR TESTING THE RESISTANCE OF METALS AND ALLOYS TO HYDROGEN EMBRITTLEMENT AND HYDROGEN-ASSISTED CRACKING (ISO 7539-11:2013) |
SAE J 2579 : 2013 | STANDARD FOR FUEL SYSTEMS IN FUEL CELL AND OTHER HYDROGEN VEHICLES |
ISO 7539-7:2005 | Corrosion of metals and alloys — Stress corrosion testing — Part 7: Method for slow strain rate testing |
EN ISO 7539-9:2008 | Corrosion of metals and alloys - Stress corrosion testing - Part 9: Preparation and use of pre-cracked specimens for tests under rising load or rising displacement (ISO 7539-9:2003) |
ISO 7539-8:2000 | Corrosion of metals and alloys Stress corrosion testing Part 8: Preparation and use of specimens to evaluate weldments |
BS EN 1975:2000 | Transportable gas cylinders. Specification for the design and construction of refillable transportable seamless aluminium and aluminium alloy gas cylinders of capacity from 0,5 litre up to 150 litre |
BS EN ISO 7539-5:1995 | Corrosion of metals and alloys. Stress corrosion testing Method for the preparation and use of C-ring specimens |
ISO 7539-5:1989 | Corrosion of metals and alloys Stress corrosion testing Part 5: Preparation and use of C-ring specimens |
BS EN ISO 11114-4:2005 | Transportable gas cylinders. Compatibility of cylinder and valve materials with gas contents Test methods for selecting metallic materials resistant to hydrogen embrittlement |
ISO 11114-4:2017 | Transportable gas cylinders Compatibility of cylinder and valve materials with gas contents Part 4: Test methods for selecting steels resistant to hydrogen embrittlement |
BS EN 14638-1:2006 | Transportable gas cylinders. Refillable welded receptacles of a capacity not exceeding 150 litres Welded austenitic stainless steel cylinders made to a design justified by experimental methods |
ISO 7866:2012 | Gas cylinders — Refillable seamless aluminium alloy gas cylinders — Design, construction and testing |
UNE-ISO 16110-1:2015 | Hydrogen generators using fuel processing technologies -- Part 1: Safety |
ISO 7539-9:2003 | Corrosion of metals and alloys Stress corrosion testing Part 9: Preparation and use of pre-cracked specimens for tests under rising load or rising displacement |
UNE-EN ISO 7866:2013 | Gas cylinders - Refillable seamless aluminium alloy gas cylinders - Design, construction and testing (ISO 7866:2012) |
EN ISO 7539-11:2014 | Corrosion of metals and alloys - Stress corrosion testing - Part 11: Guidelines for testing the resistance of metals and alloys to hydrogen embrittlement and hydrogen-assisted cracking (ISO 7539-11:2013) |
EN 14638-1:2006 | Transportable gas cylinders - Refillable welded receptacles of a capacity not exceeding 150 litres - Part 1: Welded austenitic stainless steel cylinders made to a design justified by experimental methods |
EN ISO 11114-4:2017 | Transportable gas cylinders - Compatibility of cylinder and valve materials with gas contents - Part 4: Test methods for selecting steels resistant to hydrogen embrittlement (ISO 11114-4:2017) |
EN ISO 7539-7:2005 | Corrosion of metals and alloys - Stress corrosion testing - Part 7: Method for slow strain rate testing (ISO 7539-7:2005) |
EN ISO 7539-5:1995 | Corrosion of metals and alloys - Stress corrosion testing - Part 5: Preparation and use of C-ring specimens (ISO 7539-5:1989) |
EN ISO 7539-8:2008 | Corrosion of metals and alloys - Stress corrosion testing - Part 8: Preparation and use of specimens to evaluate weldments (ISO 7539-8:2000) |
EN ISO 7539-4:1995 | Corrosion of metals and alloys - Stress corrosion testing - Part 4: Preparation and use of uniaxially loaded tension specimens (ISO 7539-4:1989) |
EN 16602-70-45:2014 | Space product assurance - Mechanical testing of metallic materials |
03/116565 DC : DRAFT OCT 2003 | ISO 20703 - GAS CYLINDERS - REFILLABLE WELDED ALUMINIUM ALLOY - DESIGN, CONSTRUCTION AND TESTING |
BS ISO 20703:2006 | Gas cylinders. Refillable welded aluminium-alloy cylinders. Design, construction and testing |
BS EN ISO 7539-11:2014 | Corrosion of metals and alloys. Stress corrosion cracking Guidelines for testing the resistance of metals and alloys to hydrogen embrittlement and hydrogen-assisted cracking |
I.S. EN ISO 7539-7:2005 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 7: METHOD FOR SLOW STRAIN RATE TESTING |
BS ISO 7539-9 : 2003 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 9: PREPARATION AND USE OF PRE-CRACKED SPECIMENS FOR TESTS UNDER RISING LOAD OR RISING DISPLACEMENT |
I.S. EN 16602-70-45:2014 | SPACE PRODUCT ASSURANCE - MECHANICAL TESTING OF METALLIC MATERIALS |
DIN EN ISO 11114-4:2015-08 (Draft) | TRANSPORTABLE GAS CYLINDERS - COMPATIBILITY OF CYLINDER AND VALVE MATERIALS WITH GAS CONTENTS - PART 4: TEST METHODS FOR SELECTING STEELS RESISTANT TO HYDROGEN EMBRITTLEMENT (ISO 11114-4:2017) |
ONORM EN ISO 7539-9 : 2008 | CORROSION OF METALS AND ALLOYS - STRESS CORROSION TESTING - PART 9: PREPARATION AND USE OF PRE-CRACKED SPECIMENS FOR TESTS UNDER RISING LOAD OR RISING DISPLACEMENT |
DIN EN 14638-1:2006-07 | Transportable gas cylinders - Refillable welded receptacles of a capacity not exceeding 150 litres - Part 1: Welded austenitic stainless steel cylinders made to a design justified by experimental methods |
ASME STP-PT-017 : 2008 | PROPERTIES FOR COMPOSITE MATERIALS IN HYDROGEN SERVICE |
ISO 7539-1:2012 | Corrosion of metals and alloys — Stress corrosion testing — Part 1: General guidance on testing procedures |
ISO 11782-2:1998 | Corrosion of metals and alloys Corrosion fatigue testing Part 2: Crack propagation testing using precracked specimens |
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