NASA-TM-X-3316-1975 An investigation of fracture toughness fatigue-crack growth sustained-load flaw growth and impact properties of three pressure vessel steels《三个压力容器钢的断裂韧性 疲劳裂纹扩展.pdf
《NASA-TM-X-3316-1975 An investigation of fracture toughness fatigue-crack growth sustained-load flaw growth and impact properties of three pressure vessel steels《三个压力容器钢的断裂韧性 疲劳裂纹扩展.pdf》由会员分享,可在线阅读,更多相关《NASA-TM-X-3316-1975 An investigation of fracture toughness fatigue-crack growth sustained-load flaw growth and impact properties of three pressure vessel steels《三个压力容器钢的断裂韧性 疲劳裂纹扩展.pdf(57页珍藏版)》请在麦多课文档分享上搜索。
1、NASA TECHNICALMEMORANDUMCOCOIXNASA TM X-3316cAN INVESTIGATION OF FRACTURE TOUGHNESS,FATIGUE-CRACK GROWTH, SUSTAINED-LOADFLAW GROWTH, AND IMPACT PROPERTIESOF THREE PRESSURE VESSEL STEELSC. Michael Hudson, J, C. Newman, Jr.,and Peter E. LewisLangley Research CenterHampton, Va. 23665NATIONAL AERONAUTIC
2、S AND SPACE ADMINISTRATION WASHINGTON, D. C. DECEMBER 1975Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-1. Report No.NASA TMX-33162. Government Accession No.4. Title and SubtitleAN INVESTIGATION OF FRACTURE TOUGHNESS, FATIGUE-CRACK GROWTH, SUSTAINE
3、D-LOAD FLAW GROWTH, ANDIMPACT PROPERTIES OF THREE PRESSURE VESSEL STEELS7. Author(s)C. Michael Hudson, J. C. Newman, Jr., and Peter E. Lewis9. Performing Organization Name and AddressNASA Langley Research CenterHampton, Va. 2366512. Sponsoring Agency Name and AddressNational Aeronautics and Space Ad
4、ministrationWashington, D.C. 205463. Recipients Catalog No.5. Report DateDecember 19756. Performing Organization Code8. Performing Organization Report No.L- 1044710. Work Unit No.505-02-31-0111. Contract or Grant No.13. Type of Report and Period CoveredTechnical Memorandum14. Sponsoring Agency Code1
5、5. Supplementary Notes16. AbstractTests to determine fracture toughness, fatigue-crack growth, sustained-load flaw growth,and impact properties were conducted on three pressure vessel steels: A. O. Smith VMS 5002and VMS 1146A, and ASTM A- 225 Gr.B. The data obtained will help relieve the general pau
6、-city of such data on these pressure vessel steels.The elastic fracture toughness of the three steels does not decrease significantly withdecreasing temperature from room temperature to about 244 K (-20 F). The elastic fracturetoughness of the three steels increases with increasing specimen width an
7、d thickness.The fatigue- crack-growth data for all three steels fall into relatively narrow scatterbands on plots of rate against stress-intensity range. Barsoms equation (Transactions ASME,Journal of Engineering for Industry, Nov. 1971) predicts the upper bounds of the scatter bandsreasonably well.
8、Charpy impact energies decrease with decreasing temperature in the nominal tempera-ture range from room temperature to 244 K (-20 F).The nil- ductility temperatures of VMS 5002 and A- 225 Gr.B are 250 K (-10 F) and 241 K(-25 F), respectively. A lack of test material precluded obtaining the nil-ducti
9、lity temperatureof VMS 1146A.17. Key Words (Suggested by Author(s)VMS 5002VMS 1146AA- 225 Gr.BFracture toughnessFatigue-crack growth19. Security dassif. (of this report)Unclassified18. Distribution StatementUnclassified UnlimitedSubject Category 2620. Security Classif. (of this page) 21. No. of Page
10、s 22. Price“Unclassified 54 $4.25For sale by the National Technical Information Service, Springfield, Virginia 22161Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-AN INVESTIGATION OF FRACTURE TOUGHNESS, FATIGUE-CRACK GROWTH,SUSTAINED-LOAD FLAW GROWT
11、H, AND IMPACT PROPERTIESOF THREE PRESSURE VESSEL STEELSC. Michael Hudson, J. C. Newman, Jr.,and Peter E. LewisLangley Research CenterSUMMARYTests to determine fracture toughness, fatigue-crack growth, sustained-load flawgrowth, and impact properties were conducted on three pressure vessel steels:A.
12、O. Smith VMS 5002 and VMS 1146A, and ASTM A-225 Gr.B. The data obtained willhelp relieve the general paucity of such data on these pressure vessel steels.The elastic fracture toughness of the three steels does not decrease significantlywith decreasing temperature from room temperature to about 244 K
13、 (-20 F). Theelastic fracture toughness of the three steels increases with increasing specimen widthand thickness.The fatigue-crack-growth data for all three steels fall into relatively narrow scatterbands on plots of rate against stress-intensity range. Barsoms equation (TransactionsASME, Journal o
14、f Engineering for Industry, Nov. 1971) predicts the upper bounds of thescatter bands reasonably well.Charpy impact energies decrease with decreasing temperature in the nominal tem-perature range from room temperature to 244 K (-20 F).The nil-ductility temperatures of VMS 5002 and A-225 Gr.B are 250
15、K (-10 F) and241 K (-25 F), respectively. A lack of test material precluded obtaining the nil-ductilitytemperature of VMS 1146A.INTRODUCTIONThe development of fracture mechanics analysis into a practical tool for predictingthe behavior of cracked structures has precipitated a need for fracture tough
16、ness andfatigue-crack-growth data on many materials. Relatively large quantities of such datahave been generated for materials used for aerospace applications (ref. 1). However,there are relatively few such data on materials used for pressure vessel applications.Consequently, when a fracture mechani
17、cs analysis was recently performed on a series ofProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-pressure vessels at the Langley Research Center, the needed data had to be generated.A series of fracture-toughness and fatigue-crack-growth tests were c
18、onducted onthree pressure vessel steels: A. O. Smith VMS 5002, A. O. Smith VMS 1146A, andASTM A-225 Gr.B. The test temperatures ranged from room temperature to 227 K(-50 F) in the fracture-toughness tests. The test temperature was room temperature inthe fatigue-crack-growth tests.Sustained-load flaw
19、-growth, Charpy impact fracture, and drop-weight impact frac-ture experiments were conducted on the three steels. Properties determined by theseexperiments were also needed in evaluating the integrity of the vessels.This report presents the results of all experiments conducted. The results can beuse
20、d to predict crack growth and failure in these three pressure vessel steels. TheCharpy results are suitable for determining the minimum allowable operating temperaturefor the steels, according to the current ASME Boiler and Pressure Vessel Code (ref. 2).Chicago Bridge Martin Marietta Aerospace(joint
21、ly with LaRC), the fracture-toughness, fatigue-crack-growth, and sustained-loadflaw-growth tests; Martin Marietta Aerospace, the Charpy impact tests; and PittsburghTesting Laboratory, the drop-weight tests.SYMBOLS AND ABBREVIATIONSExcept for the figures, this paper presents physical quantities in bo
22、th the Interna-tional System of Units (SI) and the U.S. Customary Units. For clarity, the figures showonly SI units. All measurements and calculations were made in U.S. Customary Units.Reference 3 presents factors relating the two systems, and appendix A presents thosefactors used in the present inv
23、estigation.a crack length, mm (in.)a crack length at start of fracture-toughness test, mm (in.)asi crack length at start of sustained-load flaw-growth test, mm (in.)CyN energy absorbed in impact test on Charpy V-notch specimen, N-m (ft-lbf)da/dN rate of fatigue-crack growth, nm/cycle (in/cycle)Provi
24、ded by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-e elongation in 51-mm (2-in.) gage length, percentK rate of change of stress intensity factor with time, (MN/m3/2J/sAK stress-intensity-factor range, MN/m / ksi-in / JKp. material fracture-toughness paramete
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