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Grain structure and topology

 

1.   H.L. Wei, J.W. Elmer, T. DebRoy. Crystal growth during keyhole mode laser welding. Acta Materialia, 2017, vol. 133, pp. 10-20. (pdf)

 

2.   H. L. Wei, J. W. Elmer, T. DebRoy. Three-dimensional modeling of grain structure evolution during welding of an aluminum alloy. Acta Materialia, 2017, vol. 126, pp. 413-425. (pdf)

 

3.   H. L. Wei, J. W. Elmer, T. DebRoy. Origin of grain orientation during solidification of an aluminum alloy. Acta Materialia, 2016, vol. 115, pp. 123-131. (pdf)

 

4.   S. Mishra and T. DebRoy, Non-Isothermal Grain Growth in Metals and Alloys, Materials Science and Technology, 2006, vol. 22 (3), pp. 253-278 (pdf).

 

5.   S. Mishra and T. DebRoy, Grain Topology in Ti-6Al-4V Welds Monte Carlo Simulation and Experiments, Journal of Physics D: Applied Physics, 2004, vol. 37, pp. 2191-2196 (pdf).

 

6.   S. Mishra and T. DebRoy, Measurements and Monte Carlo Simulation of Grain Growth in the Heat-Affected Zone of Ti-6Al-4V Welds, Acta Materialia, 2004, vol. 52(5), pp. 1183-1192 (pdf).

 

7.   S. Sista and T. DebRoy, Three Dimensional Monte Carlo Simulation of Grain Growth in Zone Refined Iron, Metallurgical and Materials Transactions B, 2001, vol. 32B, pp. 1195-1201 (pdf).

 

8.   Z. Yang, S. Sista, J. W. Elmer, and T. DebRoy, Three Dimensional Monte Carlo Simulation of Grain Growth during GTA Welding of Titanium, Acta Materialia, 2000, vol. 48, no. 20, pp. 4813-4825 (pdf).

 

9.   S. Sista, Z. Yang and T. DebRoy, Three Dimensional Monte Carlo Simulation of Grain Growth in the HAZ of a 2.25 Cr-1 Mo Steel Weld, Metallurgical and Materials Transactions B, 2000, vol. 31B, pp. 529-536 (pdf).