Kaushal K. Jha, Ph.D.

Affiliations: 
2012 Civil Engineering Florida International University, Miami, FL, United States 
Area:
Civil Engineering
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"Kaushal Jha"

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Nakin Suksawang grad student 2012 Florida International
 (An energy based nanomechnical properties evaluation method for cementitious materials.)
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Publications

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Jha KK, Suksawang N, Lahiri D, et al. (2014) A novel energy-based method to evaluate indentation modulus and hardness of cementitious materials from nanoindentation load–displacement data Materials and Structures/Materiaux Et Constructions. 48: 2915-2927
Jha KK, Suksawang N, Agarwal A. (2014) A new insight into the work-of-indentation approach used in the evaluation of material's hardness from nanoindentation measurement with Berkovich indenter Computational Materials Science. 85: 32-37
Jha KK, Bhanot V, Ryali V. (2013) A simple model for calculating vehicle thermal loads Sae Technical Papers. 2
Jha KK, Suksawang N, Lahiri D, et al. (2013) Evaluating initial unloading stiffness from elastic work-of-indentation measured in a nanoindentation experiment Journal of Materials Research. 28: 789-797
Jha KK, Zhang S, Suksawang N, et al. (2013) Work-of-indentation as a means to characterize indenter geometry and load-displacement response of a material Journal of Physics D: Applied Physics. 46
Jha KK, Suksawang N, Lahiri D, et al. (2012) Energy-based analysis of nanoindentation curves for cementitious materials Aci Materials Journal. 109: 81-90
Jha KK, Suksawang N, Agarwal A. (2011) The sensitivity of the β-material parameter and its determination based on optimization of error in the mechanical properties Computational Materials Science. 50: 2891-2897
Jha KK, Suksawang N, Agarwal A. (2011) Analytical approach for the determination of nanomechanical properties for metals Conference Proceedings of the Society For Experimental Mechanics Series. 4: 65-73
Jha KK, Suksawang N, Agarwal A. (2010) Analytical method for the determination of indenter constants used in the analysis of nanoindentation loading curves Scripta Materialia. 63: 281-284
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