• There are no items in your cart
We noticed you’re not on the correct regional site. Switch to our AMERICAS site for the best experience.
Dismiss alert

ASTM G 146 : 2001

Superseded
Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by
superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Practice for Evaluation of Disbonding of Bimetallic Stainless Alloy/Steel Plate for Use in High-Pressure, High-Temperature Refinery Hydrogen Service
Available format(s)

Hardcopy , PDF

Superseded date

11-11-2014

Language(s)

English

Published date

10-10-2001

CONTAINED IN VOL. 03.02, 2015 Defines a procedure for the evaluation of disbonding of bimetallic stainless alloy/steel plate for use in refinery high-pressure/high-temperature (HP/HT) gaseous hydrogen service.

1.1 This practice describes a procedure for the evaluation of disbonding of bimetallic stainless alloy/steel plate for use in refinery high-pressure/high-temperature (HP/HT) gaseous hydrogen service. It includes procedures to (a) produce suitable laboratory test specimens (b) obtain hydrogen charging conditions in the laboratory that are similar to those found in refinery HP/HT hydrogen gas service for evaluation of bimetallic specimens exposed to these environments, and (c) perform analysis of the test data. The purpose of this practice is to allow for comparison of data among test laboratories on the resistance of bimetallic stainless alloy/steels to hydrogen-induced disbonding (HID).

1.2 This practice applies primarily to bimetallic products fabricated by weld overlay of stainless alloy onto a steel substrate. Most of the information developed using this practice has been obtained for such materials. The procedures described herein, may also be appropriate for evaluation of hot roll bonded, explosive bonded, or other suitable processes for applying stainless alloys on steel substrates. However, due to the broad range of possible materials, test conditions, and variations in test peocedures, it is up to the user of this practice to determine the suitability and applicability of these procedures for evaluation of such materials.

1.3 This practice is intended to be applicable for evaluation of materials for service conditions involving severe hydrogen charging which may produce HID as shown in Fig. 1 for stainless steel weld overlay on steel equipment (see Refs1 and 2 and Appendix X1). However, it should be noted that this practice may not be appropriate for forms of bimetallic construction or service conditions which have not been observed to cause HID in service.

1.4 Additional information regarding the evaluation of bimetallic stainless alloy/steel plate for HID, test methodologies, and the effects of test conditions, materials, and welding variables, and inspection techniques is given in Appendix X1.

1.5 The values stated in SI units are to be regarded as the standard.

1.6 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Committee
G 01
DocumentType
Standard Practice
Pages
6
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

BS ISO 16110-1:2007 Hydrogen generators using fuel processing technologies Safety
API 934-E : 2018 RECOMMENDED PRACTICE FOR MATERIALS AND FABRICATION OF 1[1/4]CR-[1/2]MO STEEL PRESSURE VESSELS FOR SERVICE ABOVE 825 DEGREES F (440 DEGREES C)
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 7539-11:2014 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)
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
SAE J2579:2018(R2023) Standard for Fuel Systems in Fuel Cell and Other Hydrogen Vehicles
DIN EN ISO 7539-11 E : 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)
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
API 934-A : 2008 MATERIALS AND FABRICATION OF 2 [1/4]CR-1MO, 2 [1/4]CR-1MO-[1/4]V, 3CR-1MO, AND 3CR-1MO-[1/4]V STEEL HEAVY WALL PRESSURE VESSELS FOR HIGH-TEMPERATURE, HIGH-PRESSURE HYDROGEN SERVICE
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)
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
BS ISO 16111:2008 Transportable gas storage devices. Hydrogen absorbed in reversible metal hydride
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
ANSI/CSA FC 1:2014 FUEL CELL TECHNOLOGIES - PART 3-100: STATIONARY FUEL CELL POWER SYSTEMS - SAFETY
UNE-ISO 16110-1:2015 Hydrogen generators using fuel processing technologies -- Part 1: Safety
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)
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
API TR 934-G : 2016 DESIGN, FABRICATION, OPERATIONAL EFFECTS, INSPECTION, ASSESSMENT, AND REPAIR OF COKE DRUMS AND PERIPHERAL COMPONENTS IN DELAYED COKING UNITS
SAE J 2579 : 2013 STANDARD FOR FUEL SYSTEMS IN FUEL CELL AND OTHER HYDROGEN VEHICLES
API 934-C : 2008 MATERIALS AND FABRICATION OF 1 [1/4]CR-[1/2]MO STEEL HEAVY WALL PRESSURE VESSELS FOR HIGH-PRESSURE HYDROGEN SERVICE OPERATING AT OR BELOW 825 DEGREES F (441 DEGREES C)

ASTM G 111 : 1997 Standard Guide for Corrosion Tests in High Temperature or High Pressure Environment, or Both
ASME PV CODE 5 : 2017 BOILER AND PRESSURE VESSEL CODE - NONDESTRUCTIVE EXAMINATION

View more information
£62.61
Excluding VAT

Access your standards online with a subscription

Features

  • Simple online access to standards, technical information and regulations.

  • Critical updates of standards and customisable alerts and notifications.

  • Multi-user online standards collection: secure, flexible and cost effective.