Saikat Acharya
Central Glass and Ceramic Research Institute
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Publication
Featured researches published by Saikat Acharya.
Journal of Physics D | 2016
Pradip Sekhar Das; Manjima Bhattacharya; Dipak Kr Chanda; Srikanta Dalui; Saikat Acharya; Swapankumar Ghosh; Anoop Kumar Mukhopadhyay
Here we report two qualitative models on failure and deformation mechanisms at macro- and nano-scales of alkali activated clay (AACL), a material of extraordinary importance as a low cost building material. The models were based on experimental data of compressive failure and nanoindentation response of the AACL materials. A 420% improvement in compressive strength (sigma(c)) of the AACL was achieved after 28 days (d) of curing at room temperature and it correlated well with the decrements in the residual alkali and pH concentrations with the increase in curing time. Based on extensive post-mortem FE-SEM examinations, a schematic model for the compressive failure mechanism of AACL was proposed. In addition, the nanoindentation results of AACL provided the first ever experimental evidence of the presence of nano-scale plasticity and a nano-scale contact deformation resistance that increased with the applied load. These results meant the development of a unique strain tolerant microstructure in the AACL of Indian origin. The implications of these new observations were discussed in terms of a qualitative model based on the deformation of layered clay structure.
Journal of The Mechanical Behavior of Biomedical Materials | 2016
Aniruddha Samanta; Manjima Bhattacharya; Srilzanta Dalui; Megha Acharya; Pradip Sekhar Das; Dipak Kr Chanda; Saikat Acharya; Sankar Kalidas Sivaraman; Shekhar Nath; Ashok Kumar Mandal; Jiten Ghosh; Anoop Kumar Mukhopadhyay
Here we report the first ever studies on nanomechanical properties e.g., nanohardness and Young׳s modulus for human hair of Indian origin. Three types of hair samples e.g., virgin hair samples (VH), bleached hair samples (BH) and Fe-tannin complex colour treated hair samples (FT) with the treatment by a proprietary hair care product are used in the present work. The proprietary hair care product involves a Fe-salt based formulation. The hair samples are characterized by optical microscopy, atomic force microscopy, field emission scanning electron microscopy, energy dispersive X-ray spectroscopy (EDAX) genesis line map, EDAX spot mapping, nanoindentation, tensile fracture, and X-ray diffraction techniques. The nanoindentation studies are conducted on the cross-sections of the VH, BH and FT hair samples. The results prove that the nanomechanical properties e.g., nanohardness and Young׳s modulus are sensitive to measurement location e.g., cortex or medulla and presence or absence of the chemical treatment. Additional results obtained from the tensile fracture experiments establish that the trends reflected from the evaluations of the nanomechanical properties are general enough to hold good. Based on these observations a schematic model is developed. The model explains the present results in a qualitative yet satisfactory manner.
Ceramics International | 2015
Saikat Acharya; Sandip Bysakh; Venkitanarayanan Parameswaran; Anoop Kumar Mukhopadhyay
Polymer Bulletin | 2014
Saikat Acharya; Anoop Kumar Mukhopadhyay
Materials Characterization | 2017
Saikat Acharya; Raj Kumar Gupta; Jiten Ghosh; Sandip Bysakh; K.S. Ghosh; D K Mondal; Anoop Kumar Mukhopadhyay
Archive | 2014
Arjun Dey; Devashish Kaushik; Nilormi Biswas; Saikat Acharya; Riya Chakraborty; Anoop Kumar Mukhopadhyay
Materials Research Express | 2017
Saikat Acharya; D K Mondal; K.S. Ghosh; Anoop Kumar Mukhopadhyay
Procedia Engineering | 2014
Saikat Acharya; Anoop Kumar Mukhopadhyay
Archive | 2014
Arjun Dey; Riya Chakraborty; Payel Bandyopadhyay; Nilormi Biswas; Manjima Bhattacharya; Saikat Acharya; Anoop Kumar Mukhopadhyay
Archive | 2014
Riya Chakraborty; Arjun Dey; Nilormi Biswas; Manjima Bhattacharya; Payel Bandyopadhyay; Jyoti Sharma; Devashish Kaushik; Saikat Acharya; Anoop Kumar Mukhopadhyay