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Surya Dipta Deb

M.S. Mechanical Engineering (2009)
Surya Dipta Deb

Research Projects

 

Nonisothermal Sintering of Nanocrystalline and Microscaled Ceramic Materials

Sintering involves consolidation of powders under the application of heat to form solids of higher density and is often the final step in the processing of ceramic materials. The time-temperature cycles used in sintering affect the kinetics and, in turn, influence the quality of the sintered product. Considering the densification mechanisms controlled by grain boundary diffusion along with interface reaction and the grain growth mechanism, this work presents a systematic numerical study on the sintering of nanocrystalline Yttria tetragonal stabilized Zirconia and microscaled –Alumina, to bring out the effects of the time-temperature cycles on their sintering behavior. Effects of initial grain size and inhomogeneous initial density distribution are also examined. Based on the studies, empirical correlations are developed that relate the final grain size and the sintering time to the temperature cycle. The results serve as guidelines in the design of time-temperature cycles for the sintering of the two material systems considered.

Predicted and actual grain size and sintering time for nanostructured alumina and zirconia
Predicted and actual grain size and sintering time for nanostructured alumina and zirconia

Publication

  1. S. Deb and R. Pitchumani, “Analysis of Nonisothermal Sintering of Nanocrystalline and Microscaled Ceramic Materials,” Advances in Applied Ceramics: Structural, Functional and Bioceramics, 110(5), 301–310, 2011.

Sponsor

National Science Foundation