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Content | WELDING RESEARCH -s155WELDING JOURNAL Inc. for their financial support of this pro- ject. The authors are also grateful to Clark Bicknell for welding, Les Dean for writing the LabVIEW 5.0 code for thermal data acquisition, and Walter Boddez for discus- sions on thermocouple fabrication and supply purchases. References 1. Rosenthal, D. 1941. Mathematical theory of heat distribution during welding and cutting. Welding Journal20(5): 220-s to 234-s. 2. Rosenthal, D. 1946. The theory of moving sources of heat and its application to metal treatments. Trans. ASME48: 848–866. 3. Adams, C. M., Jr. 1958. Cooling rates and peak temperatures in fusion welding. Welding Journal37(5): 210-s to 215-s. 4. Ashby, M. F., and Easterling, K. E. 1982. A first report on diagrams for grain growth in welds. Acta Metall.30(11): 1969–1978. 5. Christensen, B. N., Davies, V. D. L., and Gjermundsen, K. 1965. Distribution of temper- atures in arc welding. British Welding Journal (February): 54–75. 6. Eagar, T. W., and Tsai, N.-S. 1983. Tem- perature fields produced by traveling distrib- uted heat sources. Welding Journal 62(12): 346-s to 355-s. 7. Grosh, R. J., and Trabanat, E. A. 1956. Arc-welding temperatures. Welding Journal 35(8): 396-s to 400-s. 8. Kasuya, T., and Yurioka, N. 1993. Prediction of welding thermal history by a comprehensive so- lution. Welding Journal 72(3): 107-s to 115-s. 9. Nunes, A. C., Jr. 1983. An extended Rosenthal weld model. Welding Journal62(6): 165-s to 170-s. 10. Rykalin, N. N., and Beketov, A. I. 1967. Calculating the thermal cycle in the heat-af- fected zone from the two-dimensional outline of the molten pool. Welding Production14(9): 42–47. 11. Tanaka, S. 1943. A study on heat con- duction of a moving heat source. Journal Japan Welding Society13(9): 347–359. 12. Shah, A. K., Kulkarni, S. D., Gopinathan, V., and Krishnan, R. 1995. Weld heat-affected zone in Ti-6Al-4V alloy, Part 1: Computer simulation of the effect of weld vari- ables on the thermal cycles in the HAZ. Weld- ing Journal74(9): 297-s to 304-s. 13. Kou, S. 1981. Simulation of heat flow during the welding of thin plates. Metall.Trans- actions A.12A(12): 2025–2030. 14. Goldak, J., Chakravarti, A., and Bibby, M. 1984. A new finite element model for weld- ing heat sources. Metall. Trans. B.15B(2): 299–305. 15. Easterling, K. E. 1992. Introduction to the Physical Metallurgy of Welding. 2nd ed, Ox- ford, U.K.: Butterworth-Heinemann Ltd. 16. Myers, P. S., Uyehara, O. A., and Bor- man, G. L. 1967. Fundamentals of heat flow in welding. Weld. Res. Council Bull.123: 1–46. 17. Tsai, C. L., and Tso, C. M. 1993. Heat flow in fusion welding. ASM Handbook, Vol. 6: Welding, Brazing and Soldering. Materials Park, Ohio: ASM International, pp. 7–18. 18. Zhang, W., Elmer, J. W., and DebRoy, T. 2002. Modeling and real time mapping of phases during GTA welding of 1005 steel. Ma- terials Science and Engineering A(Switzerland) 333 (1-2): 320–335. 19. Hess, W. F., Merill, L. L., Nippes, E.F., Jr., and Bunk, A. P. 1943. The measurement of cooling rates associated with arc welding and their application to the selection of optimum welding conditions. Welding Journal22(9): 377-s to 422-s. 20. Collins, L. E., Godden, M. J., and Boyd, J. D. 1983. Microstructures of linepipe steels. Can. Metall. Q.22(2): 169–179. 21. Ion, J. C., Easterling, K. E., and Ashby, M. F. 1984. A second report on diagrams of mi- crostructure and hardness for heat-affected zones in welds. Acta Metall.32(11): 1949–1962. 22. CSA Standard Z245.1-02, Steel Pipe. 2002. Canadian Standards Association. 23. CCT diagram for Grade 690 microal- loyed steel. Private communication between D. G. Ivey and L. Collins, IPSCO, Inc. 24. Hansen, M. 1958. Constitution of Binary Al- loys. Second ed., New York, N.Y.: McGraw-Hill. 25. Fuerschbach, P. W., and Knorovsky, G. A. 1991. A study of melting efficiency in plasma arc and gas tungsten arc welding. Welding Jour- nal70(11): 287-s to 297-s. 26. Kou, S. 2003. Heat flow in welding. Weld- ing Metallurgy, 37–43, Hoboken, N.J., Wiley-In- terscience. 27. Key, J. F. 1993. Arc physics of gas-tung- sten arc welding. ASM Handbook, Vol. 6: Weld- ing, Brazing, and Soldering. Materials Park, Ohio: ASM International, pp. 30–35. 28. Poorhaydari, K. 2005. Microstructure and property examination of weld HAZ in Grade 100 microalloyed steel. PhD disserta- tion. Edmonton, University of Alberta. CANWETALK? The Welding Journal staff encourages an exchange of ideas with you, our readers. If you’d like to ask a question, share an idea or voice an opinion, you can call, write, e-mail or fax. Staff e-mail addresses are listed below, along with a guide to help you interact with the right person. Publisher/Editor Andrew Cullison cullison@aws.org, Extension 249 Article Submissions Senior Editor Mary Ruth Johnsen mjohnsen@aws.org, Extension 238 Feature Articles Associate Editor Howard Woodward woodward@aws.org, Extension 244 Society News Personnel Assistant Editor Kristin Campbell kcampbell@aws.org, Extension 257 New Products News of the Industry Managing Editor Zaida Chavez zaida@aws.org, Extension 265 Design and Production Advertising Sales Director Rob Saltzstein salty@aws.org, Extension 243 Advertising Sales Advertising Production Coordinator Frank Wilson fwilson@aws.org, Extension 465 Advertising Production Advertising Sales & Promotion Coordinator Lea Garrigan garrigan@aws.org, Extension 220 Production and Promotion Peer Review Coordinator Doreen Kubish doreen@aws.org, Extension 275 Peer Review of Research Papers Welding Journal Dept. 550 N.W. LeJeune Rd. Miami, FL 33126 (800) 443-9353 FAX (305) 443-7404 Poorhaydari Supplement 10/05cor 9/9/05 11:59 AM Page 155 |
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