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Content | WELDING RESEARCH -S295WELDING JOURNAL sections provide a high stress intensity re- gion conducive to crack initiation and/or tortuous regions conducive to crack ar- rest. 7) Recrystallization was observed in the upper temperatures range (1050– 1200°C) of the DTR and coincided with ductility recovery. Acknowledgments The authors are indebted to Nathan Nissley, Antonio Ramirez, Dan Ryan, and Shu Shi, members of the Welding and Joining Metallurgy Group at The Ohio State University, for their valuable assis- tance during this investigation. We are grateful for the financial support from BWX Technologies, Inc. References 1. Nissley, N. E. 2002. Development of the strain-to-fracture test to study ductility dip cracking in austenitic alloys. M.S. thesis, The Ohio State University, Columbus, Ohio. 2. Hemsworth, B., Boniszewski, T., and Eaton, N. F. 1969. Classification and definition of high temperature welding cracks in alloys. Metal Construction and British Welding Journal (2): 5–16. 3. Honeycombe, J., and Gooch, T. G. 1970.Microcracking in fully austenitic stainless steel weld metal. Metal Construction and British Welding Journal(9): 375–380. 4. Bowers, R. 1997. Unpublished research. Edison Welding Institute, Columbus, Ohio. 5. Rowe, M., Lippold, J. C., and Juhas, M. C. 1997. Summary of ductility dip cracking — Ductility dip cracking literature review.The Ohio State University, Columbus, Ohio. 6. Kikel, J. M., and Parker, D. M. 1998. Duc- tility dip cracking susceptibility of Filler Metal 52 and Alloy 690. Trends in Welding Research, pp. 757–762. 7. Masubuchi, K., and Martin, D. C. 1962. Mechanisms of cracking in HY-80 steel weld- ments. Welding Journal41(8): 375-s to 384-s. 8. DuPont, J. N., Robino, C. V., and Marder, A. R. 1998. Solidification and weldability of Nb- bearing superalloys. Welding Journal77(10): 417-s to 431-s. 9. Matsuda, F. 1990. Hot crack susceptibility of weld metal. Proceedings of the 1st U.S.-Japan Symposium on Advances in Welding Metallurgy, 19–36. Miami, Fla.: American Welding Society. 10. Arata, Y., Matsuda, F., and Katayama, S. 1977. Solidification crack susceptibility in weld metals of fully austenitic stainless steels (Re- port II) — Effect of ferrite, P, S, C, Si, and Mn on ductility properties of solidification brittle- ness. Transactions of JWRI6(1): 105–117. 11. Haddrill, D. M., and Baker, R. G. 1965. Microcracking in austenitic weld metal. British Welding Journal12(8): 411–419. 12. Zhang, Y., Nakagawa, H., and Matsuda, F. 1985. Weldability of Fe-36% Ni alloy (Report V) — Behaviors of grain boundary sliding and cavity formation preceding reheat hot cracking in weld metal. Transactions of JWRI14(2): 119–124. 13. Mintz, B., Abu-Shosha, R., and Shaker, M. 1993. Influence of deformation induced fer- rite, grain boundary sliding, and dynamic re- crystallization on hot ductility of 0.1-0.75%C steels. Materials Science and Technology9(10): 907–914. 14. Zhang, Y., Nakagawa, H., and Matsuda, F. 1985. Weldability of Fe-36% Ni alloy (Report VI) — Further investigation on mechanism of reheat hot cracking in weld metal. Transactions of JWRI14(2). 15. Rhines, F. N., and Wray, P. J. 1961. In- vestigation of the intermediate temperature ductility minimum in metals. Transactions of the ASM54: 117–128. 16. Bengough, G. D. 1912. A study of the properties of alloys at high temperatures. Jour- nal, Institute of Metals7: 123–174. 17. Mathew, M. D., Sasikala, G., Mannan, S. L., and Rodriguez, P. 1993. A comparative study of the creep rupture properties of Type 316 stainless steel base and weld metals. Transac- tions of the ASME, Journal of Engineering Mate- rials and Technology115: 163–170. 18. Haddrill, D. M., and Baker, R. G. 1965. Heat affected zone cracking in thick section austenitic steels during post weld heat treat- ment. BWRA Bulletin6(11): 282–288. 19. Troiano, A. R. 1960. The role of hydro- gen and other interstitials in the mechanical be- havior of metals. Transactions of the ASM52(1): 54–80. 20. Savage, W. F., Nippes, E. F., and Szek- eres, E. S. 1976. Hydrogen induced cracking in a low alloy steel. Welding Journal55(9): 276-s to 283-s. 21. Jones, D. A. 1996. Principles and Preven- tion of Corrosion, 2d ed. Upper Saddle River, N.J.: Prentice & Hall, Inc. 22. Watanabe, T. 1988. The potential for grain boundary design in materials develop- ment. Materials Forum11: 284–300. 23. Palumbo, G., and Aust, K. T. 1992. Spe- cial properties of Sgrain boundaries. Materials Interfaces — Atomic Level Structure and Proper- ties, pp. 190–211. Great Britain: Chapman-Hall. 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 Jeff Weber jweber@aws.org, Extension 246 General Management, Reprint Permission, Copyright Issues Editor Andrew Cullison cullison@aws.org, Extension 249 Article Submissions Senior Editor Mary Ruth Johnsen mjohnsen@aws.org, Extension 238 Feature Articles Associate Editor Susan Campbell campbell@aws.org, Extension 244 Society News Personnel Associate Editor Ross Hancock hancock@aws.org, Extension 226 New Products New Literature Production 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. 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