In Situ Studies of Phase Transformation and Residual Stresses in LTT Alloys During Welding Using Synchrotron Radiation
Author:
Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-14794-4_2
Reference16 articles.
1. Alexandrov BT, Lippold JC (2004) Methodology for in situ investigation of phase transformations in welded joints. IIW-Doc., IX-2114-04, pp 1–13
2. Babu SS, Elmer JW, Vitek JM, David SA (2002) Time-resolved X-ray diffraction in Fe-C-Al-Mn steel welds. Acta Mater 50:4763–4781
3. Bhadeshia HKDH (2004) Developments in martensitic and bainitic steels: role of the shape deformation. Mater Sci Eng A A378:34–39
4. Dai H, Francis JA, Stone HJ, Bhadeshia HKDH, Withers PJ (2008) Characterizing phase transformations and their effect on ferritic weld residual stresses with X-rays and neutrons. Metall Mater Trans A 39A:3070–3078
5. Eckerlid J, Nilsson T, Karlsson L (2003) Fatigue properties of longitudinal attachments welded using low transformation temperature filler. Sci Technol Weld Join 8(5):353–359
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