ASTM G146-2001(2007) Standard Practice for Evaluation of Disbonding of Bimetallic Stainless Alloy Steel Plate for Use in High-Pressure High-Temperature Refinery Hydrogen Service《高压.pdf
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1、Designation: G 146 01 (Reapproved 2007)Standard Practice forEvaluation of Disbonding of Bimetallic Stainless Alloy/SteelPlate for Use in High-Pressure, High-Temperature RefineryHydrogen Service1This standard is issued under the fixed designation G 146; the number immediately following the designatio
2、n indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers a procedure fo
3、r the evaluation ofdisbonding of bimetallic stainless alloy/steel plate for use inrefinery high-pressure/high-temperature (HP/HT) gaseous hy-drogen service. It includes procedures to (1) produce suitablelaboratory test specimens, (2) obtain hydrogen charging con-ditions in the laboratory that are si
4、milar to those found inrefinery HP/HT hydrogen gas service for evaluation of bime-tallic specimens exposed to these environments, and (3)perform analysis of the test data. The purpose of this practiceis to allow for comparison of data among test laboratories onthe resistance of bimetallic stainless
5、alloy/steels to hydrogen-induced disbonding (HID).1.2 This practice applies primarily to bimetallic productsfabricated by weld overlay of stainless alloy onto a steelsubstrate. Most of the information developed using this prac-tice has been obtained for such materials. The proceduresdescribed herein
6、, may also be appropriate for evaluation of hotroll bonded, explosive bonded, or other suitable processes forapplying stainless alloys on steel substrates. However, due tothe broad range of possible materials, test conditions, andvariations in test procedures, it is up to the user of this practiceto
7、 determine the suitability and applicability of these proce-dures for evaluation of such materials.1.3 This practice is intended to be applicable for evaluationof materials for service conditions involving severe hydrogencharging which may produce HID as shown in Fig. 1 forstainless steel weld overl
8、ay on steel equipment (see Refs 1 and2inAppendix X1). However, it should be noted that thispractice may not be appropriate for forms of bimetallicconstruction or service conditions which have not been ob-served to cause HID in service.1.4 Additional information regarding the evaluation of bi-metalli
9、c stainless alloy/steel plate for HID, test methodologies,and the effects of test conditions, materials, and weldingvariables, and inspection techniques is given in Appendix X1.1.5 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard
10、.1.6 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. See Section 6
11、 foradditional safety information.2. Referenced Documents2.1 ASTM Standards:2G 111 Guide for Corrosion Tests in High Temperature orHigh Pressure Environment, or BothE3 Guide for Preparation of Metallographic Specimens2.2 ASME Standard:Boiler and Pressure Vessel Code Section V, Article 5, Tech-nique
12、Two33. Terminology3.1 Definitions:3.1.1 HIDa delamination of a stainless alloy surface layerfrom its steel substrate produced by exposure of the material toa hydrogen environment.3.1.1.1 DiscussionThis phenomenon can occur in inter-nally stainless alloy lined steel equipment by the accumulationof mo
13、lecular hydrogen in the region of the metallurgical bondat the interface between the steel and stainless alloy surfacelayer produced by exposure to service conditions involvingHP/HT hydrogen in the refinery hydroprocessing.4. Summary of Practice4.1 Stainless alloy/steel specimens are exposed to a ga
14、seoushydrogen containing environment at HP/HT conditions forsufficient time to produce hydrogen charging in the material.1This practice is under the jurisdiction of ASTM Committee G01 on Corrosionof Metals and is the direct responsibility of Subcommittee G01.05 on LaboratoryCorrosion Tests.Current e
15、dition approved May 1, 2007. Published May 2007. Originallyapproved in 1996. Last previous edition in 2001 as G 14601.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer t
16、o the standards Document Summary page onthe ASTM website.3Available from American Society of Mechanical Engineers (ASME), ASMEInternational Headquarters, Three Park Ave., New York, NY 10016-5990, http:/www.asme.org.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken,
17、 PA 19428-2959, United States.Following exposure, the specimens are cooled to ambienttemperature at a controlled rate. The specimens are then held atroom temperature for a designated period to allow for thedevelopment of HID between the stainless alloy surface layerand the steel. Following the hold
18、period, the specimens areevaluated for HID at this interface using straight beam ultra-sonic methods with metallographic examination to confirm anyHID found. The size and distribution of the disbonded re-gion(s) are then characterized by this practice. Single ormultiple hydrogen exposure/cooling cyc
19、les can be conductedand varying exposure conditions and cooling rates can beincorporated into this evaluation to provide assessment of thedisbonding characteristics of materials and service conditionused for refinery process equipment containing HP/HT hydro-gen containing environments.5. Significanc
20、e and Use5.1 This practice provides an indication of the resistance orsusceptibility, or both, to HID of a metallurgically bondedstainless alloy surface layer on a steel substrate due to exposureto hydrogen-containing gaseous environments under HP/HTconditions. This practice is applicable over a bro
21、ad range ofpressures, temperatures, cooling rates, and gaseous hydrogenenvironments where HID could be a significant problem. Theseprocedures can be used to assess the effects of materialcomposition, processing methods, fabrication techniques, andheat treatment as well as the effects of hydrogen par
22、tialpressure, service temperature, and cooling rate. The HIDproduced by these procedures may not correlate directly withservice experience for particular applications.Additionally, thispractice does not address the evaluation of high-temperaturehydrogen attack in the steel substrate. Typically, long
23、er expo-sure times at the test conditions must be utilized to allow forthe resistance to decarburization, internal blistering or crack-ing, or both, to be evaluated.6. Apparatus6.1 Because this practice is intended to be conducted at highpressures and high temperatures, the apparatus must be con-str
24、ucted to safely contain the test environment while beingresistant to the cumulative embrittling effects of hydrogen.Secondly, the test apparatus must be capable of allowing (1)introduction of the test gas, (2) removal of air from the test cell,(3) uniform heating of the test specimens, and (4) cooli
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