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Bhaskar Botcha
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Process-machine interactions and a multi-sensor fusion approach to predict surface roughness in cylindrical plunge grinding process
B Botcha, V Rajagopal, STS Bukkapatnam
Procedia Manufacturing 26, 700-711, 2018
212018
Smart manufacturing multiplex
B Botcha, AS Iquebal, STS Bukkapatnam
Manufacturing Letters 25, 102-106, 2020
142020
Implementing the transformation of discrete part manufacturing systems into smart manufacturing platforms
B Botcha, Z Wang, S Rajan, N Gautam, STS Bukkapatnam, A Manthanwar, ...
International Manufacturing Science and Engineering Conference 51371 …, 2018
142018
Towards rapid, in situ characterization for materials-on-demand manufacturing
AS Iquebal, B Botcha, S Bukkapatnam
Manufacturing Letters 23, 29-33, 2020
82020
Tracking and quantifying spatter characteristics in a laser directed energy deposition process using Kalman filter
AS Iquebal, A Yadav, B Botcha, RK Gorthi, S Bukkapatnam
Manufacturing Letters 33, 692-700, 2022
52022
Efficient manufacturing processes and performance qualification via active learning: Application to a cylindrical plunge grinding platform
B Botcha, AS Iquebal, STS Bukkapatnam
Procedia Manufacturing 53, 716-725, 2021
52021
R., and Bukkapatnam, STS, 2018,“Process-Machine Interactions and a Multi-Sensor Fusion Approach to Predict Surface Roughness in Cylindrical Plunge Grinding Process,”
B Botcha, V Rajagopal, N Babu
Proc. Manuf 26, 700-711, 0
5
Ripple formations determine the heterogeneous microstructure of directed energy deposition (DED)-printed 316L components
H Balhara, B Botcha, SJ Wolff, STS Bukkapatnam
Materials & Design 227, 111756, 2023
42023
Towards futuristic autonomous experimentation--A surprise-Reacting sequential experiment policy
I Ahmed, S Bukkapatnam, B Botcha, Y Ding
arXiv preprint arXiv:2112.00600, 2021
32021
Ripple formation and its effect on the multi-scale microstructure of Directed Energy Deposition (DED)-printed 316L components
H Balhara, B Botcha, S Wolff, S Bukkapatnam
arXiv preprint arXiv:2111.11601, 2021
2021
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