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Sandeep Chaudhary

Professor, Department of Civil Engineering

Indian Institute of Technology Indore (IIT Indore), Simrol, Indore, India – 453552

Учёная степень: д.т.н.

Учёное звание: профессор

Contacts:

Email: schaudhary@iiti.ac.in; sandeep.nitjaipur@gmail.com

Phone: +91-731-660-3256 (O); +91 9549654195 (M)

sandeepiiti.in

Links to identifiers:

  • h- index Web of Science: 23
  • h- index Scopus: 24
  • Scopus: 57212122317
  • ORCID: 0000-0001-6535-9047
  • Researcher ID: C-8890-2019

Education:

  • B.E. (Civil) (1996) (MBM Engineering College Jodhpur, India)
  • M.E. (Structural) (1996) (Malaviya National Institute of Technology Jaipur, India)
  • Ph.D. (2006, Indian Institute of Technology Delhi, India)
  • Post Doc. Research Fellow (2010-11, Structural System Laboratory, KNU, S. Korea).

 

1. Professional Experience

1.1. Academic Positions held:

  1. a) Professor, Indian Institute of Technology (IIT) Indore, India since 23.10.2018
  2. b) Associate Professor, Indian Institute of Technology (IIT) Indore, India 17.05.2017-22.10.2018
  3. c) Associate Professor, Malaviya National Institute of Technology (MNIT) Jaipur, India, 01.07.2010-16.05.2017
  4. d) Post-doctoral Research Fellow, Structural System Laboratory, KNU, South Korea, 17.08.2010-31.07.2011
  5. e) Reader, Malaviya National Institute of Technology (MNIT) Jaipur, Jaipur, 01.07.07-30.06.2010
  6. f) Lecturer, Malaviya National Institute of Technology (MNIT) Jaipur, Jaipur, 31.10.1996-30.06.2007

1.2. Professional affiliations:

  1. ● Chair for the Standing Committee on Code Development (SC1: Design) of the Asian Concrete Federation.
  2. ● Fellow of Institution of Engineers (India). F1268025
  3. ● Life Member of Indian Concrete Institute, Chennai (India). LM8595
  4. ● Life Member of The Indian Society for Technical Education. LM 36714
  5. ● Member of RILEM technical committee 273-RAC, Structural behaviour and innovation of recycled aggregate concrete.
  6. ● Member, Indian Green Building Council. (2022-2023) IGBC - IM - 1100283
  7. ● Member, Fire and Security Association of India. (2022-205) IDR-I-0322-1197

 

2. Research Experience

2.1. Research Metrics

Journal publications in web of science indexed journals: 93
Q1 journal publications: 47
Conference proceedings published in web of science indexed journals: 07
Conference proceedings published in non-indexed journals/presentations: 46
Chapter/Report publications: 03
Book publications: 06
Total citations: 2969
Google Scholar h-index: 28
Google Scholar i 10-index: 62

2.2. Sponsored research projects

As principal investigator (PI): 08
As co-principal investigator (Co-PI): 02
As scientist mentor: 02
As guide: 02

List of Sponsored Projects as Principal Investigator:

  1. "A comprehensive rheology based thixotropic fluid flow model for improved control on 3D printing of concrete" funded by SERB, DST, GOI. (2021- 2024).
  2. “Safeguarding heritage structures using seismic metamaterials” funded by SPARC, MHRD. (2019 – 2021). Collaborating Institutes: Université Aix-Marseille, France and Imperial College London, UK.
  3. "Natural-coloured functionally graded rubberised geopolymer system: A cement-less solution for optimised concrete paver manufacturing” funded by DST, GOI. Indo-UK Project. (2018-2020). Collaborating Institute: University of Edinburgh, UK.
  4. “Sustainable and economical functionally graded rubberised concrete pavements” funded by DST, GOI. Indo-Tunisia Project. (2017-2021). Collaborating Institute: University of Carthage, Tunisia.
  5. “Waste utilisation in concrete as aggregate: Asian perspective” funded by Asian Concrete Federation (2016-2019).
  6. “Utilisation of plastic waste in concrete: Feasibility studies” funded by DST, GOI (2016-2019). PI from MNIT Jaipur.
  7. “Experimental and analytical studies for the short term and long-term behavior of epoxy bonded steel-concrete composite bridges” funded by DST, GOI (2012-2015).
  8. “Development of a highly efficient procedure and GUI equipped software for the service load analysis of composite structures” funded by DST, GOI (2008-2011).

List of Sponsored Projects as Co-Principal Investigator:

  1. “Waste characterisation and possible gainful utilisation of induction melting furnace dust” funded by Jaideep Ispat & Alloys Pvt. Ltd., Moira Sariya, Indore, India.
  2. “Utilisation of Bamboo Strip as reinforcement in concrete” funded by TEQIP, MHRD. (2019-2020).

List of Sponsored Projects as Scientist Mentor:

  1. “Durability of concrete containing zinc slag as partial replacement of sand” funded by DST, GOI (2010-2013).
  2. “Durability studies on geopolymer concrete containing waste rubber fibre as partial replacement of sand” funded by DST, GOI (2015-2017).

List of Sponsored Projects as Guide:

  1. “Experimental investigations of bond characteristics of steel-concrete composite interface connected by adhesive bonding” funded by Institution of Engineers (India) (2015-2016).
  2. “Performance evaluation of interlocking brick/block masonry” funded by Institution of Engineers (India) (2007-2008).

2.3. Patents:

  1. Trilok Gupta, Ravi Kr. Sharma, Sandeep Chaudhary and Salman Siddique (2020). “Composition for preparation of paver block utilizing rubber waste.”, Patent No. 3825236, India, Grant Date: 27.12.2021 (Granted)
  2. Trilok Gupta, Sandeep Chaudhary, Ravi Kr. Sharma and Sudhir Jain (2020). “Method of preparation of Conplas paver block utilizing waste polythene”, Patent No. 396218, India, Grant Date: 05.05.2022 (Granted)

2.4. Ten Significant Recent Publications:

  1. Jain, P., Gupta, R., and Chaudhary, S., (2022). " Comprehensive assessment of ceramic ETP sludge waste as a SCM for the production of concrete". Journal of Building Engineering, 57, 104973. DOI: 10.1016/j.jobe.2022.104973 (I.F. 7.14)
  2. Jain, A., Choudhary, S., Gupta, R., Chaudhary, S., and Gautam, L. (2022). "Effect of granite industry waste addition on durability properties of fly ash blended self-compacting concrete". Construction and Building Materials, 340, 127727. DOI: 10.1016/j.conbuildmat.2022.127727 . (I.F. 7.96)
  3. Gupta, S., and Chaudhary, S. (2022). “State of the art review on supplementary cementitious materials in India – II: Characteristics of SCMs, effect on concrete and environmental impact”. Journal of Cleaner Production, 357, 131945 DOI: 10.1016/j.jclepro.2022.131945 . (I.F. 11.07)
  4. Gupta, S., Singh, D., Gupta, T., and Chaudhary, S. (2022). “Effect of limestone calcined clay cement (LC3) on the fire safety of concrete structures”. Computers and Concrete, 27(4), 263-278. DOI: 10.12989/cac.2022.29.4.263. (I.F. 7.27)
  5. Thakare, A. A., Gupta, T., Deevan, R. and Chaudhary, S. (2022). “Micro and macro-structural properties of waste tyre rubber fibre-reinforced bacterial self-healing mortar”. Construction and Building Materials, 322, 126459. DOI: 10.1016/j.conbuildmat.2022.126459. (I.F .7.96)
  6. Jain, A., Chaudhary, S. and Gupta, R. (2022). “Mechanical and microstructural characterisation of fly ash blended self-compacting concrete containing granite waste”. Construction and Building Materials, 314 (Part A), 125480. DOI: 10.1016/j.conbuildmat.2021.125480 (I.F. 7.96)
  7. Bhardwaj, A., Nagpal, A. K., Chaudhary, S., and Matsagar, V. (2021). “Effect of location of load on shear lag behavior of bonded steel-concrete flexural members”. Steel and Composite Structures, 41(1), 123-136. DOI: 10.12989/scs.2021.41.1.123 (I.F. 6.14)
  8. Jain, A., Sharma, N., Choudhary, N., Gupta, R., and Chaudhary, S. (2021). "Utilisation of non-metalised plastic bag fibers along with fly ash in concrete". Construction and Building Materials, 291, 123329. (I.F. 7.96)
  9. Gupta, V., Pathak, D. K., Kumar, R., Miglani, A., Siddique, S., and Chaudhary, S. (2021). "Production of colored bi-layered bricks from stone processing waste: structural and spectroscopic characterisation". Construction and Building Materials, 278, 122339. (I.F. 7.96)
  10. Thakare, A. A., Singh, A., Gupta, V., Siddique, S., and Chaudhary, S. (2020). "Sustainable development of self-compacting cementitious mixes using waste originated fibers: A review". Resources, Conservation and Recycling, 105250. DOI:10.1016/j.resconrec.2020.105250 (I.F. 13.72)

 

3. Supervision

3.1. Summary

3.2. List of PhD thesis awarded

  1. Akshay Thakare (2022), Performance assessment of rubberised self-compacting concrete
  2. Choudhary Sumit Mukund (2022), Strength, durability, ductility and microstructure investigation of functionally graded concrete containing rubber fiber as replacement of fine aggregate, Co-Supervisor: Dr. Rajesh Gupta
  3. Vivek Gupta (2021) , Industrial scale waste utilisation in unfired bricks
  4. Abhishek Jain (2021), Sustainable production of self-compacting concrete utilising fly ash and granite waste, Co-Supervisor: Dr. Rajesh Gupta
  5. Ankit Bhardwaj (2020), Investigations into behaviour of adhesive bonded steel-concrete composite flexural members, Co-Supervisors: Prof. V. Matasagar, Prof. A. K. Nagpal
  6. Salman Siddique (2018), Utilisation of bone china ceramic waste as fine aggregate in sustainable concrete, Co-Supervisor: Dr. S. Shrivastava
  7. Pankaj Kumar (2018), Performance evaluation of mechanically connected and adhesive bonded steel-concrete composite connections, Co-Supervisor: Dr. Amar Kumar Patnaik
  8. Salmabanu Luhar (2017), Performance evaluation of rubberised geopolymer concrete and flyash based geopolymer mortar
  9. M. P. Ramnavas (2016), Development of computational techniques for service load analysis of steel-concrete composite structures, Co-Supervisor: Prof. A. K. Nagpal
  10. Trilok Gupta, Strength (2016), durability, ductility and fire performance of concrete containing waste rubber tyre ash and rubber fibers as partial replacement of fine aggregates, Co-Supervisor: Prof. R. K. Sharma
  11. Kashyap A. Patel (2016), Development of computationally efficient techniques for instantaneous and time-dependent analysis of reinforced concrete beams and frames at service load, Co-supervisor: Prof. A. K. Nagpal
  12. S.A.A. Naqvi, (2013), Experimental and numerical studies for the behaviour of interlocking block masonry
  13. Bhavna Tripathi (2012), Durability of concrete containing ISF slag as partial replacement of sand
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