NACE RP0497-1997 Field Corrosion Evaluation Using Metallic Test Specimens (Item No 21083)《现场用金属试样的腐蚀评估 项目编号21083》.pdf
《NACE RP0497-1997 Field Corrosion Evaluation Using Metallic Test Specimens (Item No 21083)《现场用金属试样的腐蚀评估 项目编号21083》.pdf》由会员分享,可在线阅读,更多相关《NACE RP0497-1997 Field Corrosion Evaluation Using Metallic Test Specimens (Item No 21083)《现场用金属试样的腐蚀评估 项目编号21083》.pdf(26页珍藏版)》请在麦多课文档分享上搜索。
1、THE CORROSION SOCIETY Stand a rd NACE Standard RP0497-2004 Item No. 21083 Recommended Practice Field Corrosion Evaluation Using Metallic Test Specimens This NACE International standard represents a consensus of those individual members who have reviewed this document, its scope, and provisions. Its
2、acceptance does not in any respect preclude anyone, whether he has adopted the standard or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not in conformance with this standard. Nothing contained in this NACE International standard is to be construed as gr
3、anting any right, by implication or otherwise, to manufacture, sell, or use in connection with any method, apparatus, or product covered by Letters Patent, or as indemnifying or protecting anyone against liability for infringement of Letters Patent. This standard represents minimum requirements and
4、should in no way be interpreted as a restriction on the use of better procedures or materials. Neither is this standard intended to apply in all cases relating to the subject. Unpredictable circumstances may negate the usefulness of this standard in specific instances. NACE International assumes no
5、responsibility for the interpretation or use of this standard by other parties and accepts responsibility for only those official NACE International interpretations issued by NACE International in accordance with its governing procedures and policies which preclude the issuance of interpretations by
6、 individual volunteers. Users of this NACE International standard are responsible for reviewing appropriate health, safety, environmental, and regulatory documents and for determining their applicability in relation to this standard prior to its use. This NACE International standard may not necessar
7、ily address all potential health and safety problems or environmental hazards associated with the use of materials, equipment, and/or operations detailed or referred to within this standard. Users of this NACE International standard are also responsible for establishing appropriate health, safety, a
8、nd environmental protection practices, in consultation with appropriate regulatory authorities if necessary, to achieve compliance with any existing applicable regulatory requirements prior to the use of this standard. CAUTIONARY NOTICE: NACE International standards are subject to periodic review, a
9、nd may be revised or withdrawn at any time without prior notice. NACE International requires that action be taken to reaffirm, revise, or withdraw this standard no later than five years from the date of initial publication. The user is cautioned to obtain the latest edition. Purchasers of NACE Inter
10、national standards may receive current information on all standards and other NACE International publications by contacting the NACE International Membership Services Department, 1440 South Creek Drive, Houston, Texas 77084-4906 (telephone +I 281 228-6200). Reaffirmed 2004-03-31 Approved 1997-12-22
11、NACE International 1440 South Creek Dr. Houston, Texas 77084-4906 +I (281)228-6200 ISBN 1-57590-048-3 02004, NACE International RP0497-2004 Foreword Corrosion test information is often needed for selecting metallic construction materials for chemical process and other equipment. Usually, the informa
12、tion most readily available is laboratory corrosion test results for a specific set of controlled conditions. However, these conditions frequently do not represent service environments of specific equipment. Varying levels of contaminants, aeration, flow, temperature variations, liquid and/or vapor
13、exposure, and other factors can make service conditions difficult or impossible to duplicate in the laboratory. Thus, in many instances, the more accurate method of evaluating metals for a particular application is by exposing metallic test specimens in the field or actual service environment. These
14、 methods can provide a much more accurate estimate of service performance than laboratory testing. As with any corrosion study, careful design of the field test program and accurate interpretation of the test results are needed to develop meaningful data that lead to a conclusive study and correct c
15、onclusions. To that end, this standard recommended practice aids the design, implementation, and evaluation of field corrosion testing programs using metallic test specimens. No other materials or testing are addressed in this standard. This standard is particularly helpful when used in conjunction
16、with ASTM“ G 4. This standard was originally prepared in 1997 by NACE Task Group T-5A-29, a component of Unit Committee T-5A on Corrosion in Chemical Processes. It was reaffirmed in 2004 by Specific Technology Group (STG) 36 on Process Industry-Chemicals. This standard is issued by NACE under the au
17、spices of STG 36. In NACE standards, the terms shall, must, should, and may are used in accordance with the definitions of these terms in the NACE Publications Style Manual, 4th ed., Paragraph 7.4.1.9. Shall and must are used to state mandatory requirements. The term should is used to state somethin
18、g considered good and is recommended but is not mandatory. The term may is used to state something considered optional. (I) ASTM International (ASTM), 100 Barr Harbor Dr., West Conshohocken, PA 19428-2959. NACE International I RP0497-2004 NACE International Stand a rd Recommended Practice Field Corr
19、osion Evaluation Using Metallic Test Specimens Contents 1 . General . 1 2 . Applications of Field Corrosion Testing 1 3 . Guidelines for Conducting a Field Corrosi 4 . Data Obtained by Field Corrosion Testing 5 . Test Rack Design and Exposure Location 6 . Test Specimens 7 . Test Specimen Cleaning an
20、d Scale Characterization After Exposure . 18 8 . Interpretation of Corrosion Types . 20 9 . Reporting the Results . 22 1 O . Reproducibility 22 References 23 . Figure 2: Checklist for Test Specimen Selection . 3 Figure 3: Making and Stressing a U-Bend Stress Corrosion Test Specimen 7 Figure 4: C-Rin
21、g Stress Corrosion Test Specimen 8 Figure 5: Double-Cantilever-Beam (DCB) Stress Corrosion Test Specimen 9 Figure 6A: Flat Bar Test Rack . 11 Figure 6B: Typical Spool Rack (Side View) . 11 12 12 Figure 6E: Pipe Insert Racks . 13 Figure 6F: Test Specimen Spacers (PFTE or Ceramic) 13 Figure 7: Retract
22、able “Slip-In” Test Specimen Holder . 14 Figure 8: Typical Welded Test Specimen 18 Figure 9: Determination of True Test Specimen Mass Loss During Cleaning . 19 Figure 6C: Typical Spool Rack (End View) Figure 6D: Welded Test Specimen Rack II NACE International RP0497-2004 Section 1: General 1 .I 2.1
23、2.2 Scope 1.2 Limitations 1.1.1 This standard describes how field corrosion test- ing using metallic test specimens is conducted, what types of corrosion information may be obtained, and how test racks and test specimens are designed. A summary of critical data that must be recorded is pro- vided. G
24、uidelines for interpreting and reporting test results are also discussed. 1.1.2 Corrosion fatigue can be a serious problem, but no field methods of testing are known. Therefore, cor- rosion-fatigue testing is outside the scope of this standard. The ability of the field test program to predict system
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