सीएसआईआर-केंद्रीय काँच एवं सिरामिक अनुसंधान संस्थान

CSIR-Central Glass & Ceramic Research Institute

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সিএসআইআর-কেন্দ্রীয় কাঁচ ও সেরামিক গবেষণা সংস্থা

सीएसआईआर-केंद्रीय काँच एवं सिरामिक अनुसंधान संस्थान

CSIR-Central Glass & Ceramic Research Institute

Scientist's Profile

Scientists ▸ Dr. Barnasree Chanda
Dr. Barnasree Chanda

Dr. Barnasree Chanda

Scientist, CSIR-CGCRI & Assistant Professor, ACSIR

Energy Materials & Devices Division


Contact Information:

Phone:033-23223286
E-Mail: barnasree@cgcri.res.in

Dr. Barnasree Chanda

Dr. Chanda joined CSIR-CGCRI on 12th August, 2022

Professional Career

Position Held Organisation Duration
Scientist Council Of Scientific and Industrial Research-Central Glass & Ceramic Research Institute (CSIR-CGRI) August 2022-till date
Assistant Professor Council Of Scientific and Industrial Research-Academy of Scientific and Innovative Research (CSIR-ACSIR) October 2022-till date
Research Associates Indian Institute of Technology Kharagpur January 2022-June 2022

 

Education

Degree

Discipline

University; Year

PhD

Metallurgical and Materials Engineering

Indian Institute of Technology Kharagpur, 2021

M.Tech

Mechanical Engineering

National Institute of Technology Silchar

B.E.

Mechanical Engineering

Gauhati University

 

RESEARCH INTERESTS:

High Entropy Alloys, Solid Oxide Fuel Cell; Solid Oxide Electrolyzer Cell, Thermoelectric Materials

Professional Recognition/ Award/ Prize/ Certificate, Fellowship:

  • Reviewer of Journal Alloys and Compounds, Journal of Materials Research and Technology.
  • Institutional fellowship for pursuing PhD in IIT Kharagpur a period of five year, by MHRD, Govt. of India, MHRD, 2016-2020
  • Teaching Assistant for the National Programme on Technology Enhanced Learning (NPTEL) Online course ‘Advanced Materials and Processes’ funded by MHRD, Govt. of India from July 2018- November 2018.   MHRD 2018
  • Best poster awardee for poster presentation titled, “Evolution of eutectic microstructure in high entropy CoCrFeNiNbx (0.45< x <0.65) alloys, in 56th National Metallurgist Day (NMD) Conference and 72th Annual Technical Meeting (ATM), 14-16 November 2018, Kolkata, India NMD   2018
  • The Awardee of DST “INSPIRE Faculty Fellowship 2021” in the Engineering Sciences category.            DST     2022

1.      Barnasree Chanda, Jayanta Das, “Effect of cold working on the rate sensitivity in high entropy lamellar CoCrFeNi (Nbx/Tay) eutectic composites, Materials Science and Engineering: A, 144557. (Impact Factor: 6.044)

2.      PP Jana, KS Anand, Barnasree Chanda, JA Chelvane, J Das,Evolution of microstructure, magneto-structural transformation, and magnetocaloric effect in (Fe72-0.9xNi8-0.1xCo8) Zr7B4Cu1Gax (0≤ x ≤ 6 at.%) alloys, Materials Science and Engineering: B 287, 116121, 2023. (Impact Factor: 3.407)

3.      A Sinha, K Kandi, Barnasree Chanda, A Sinha, Mechanical characterization of nano clay composite modified with 2-(2-hydroxypropoxy) propan-1-ol, Advances in Materials and Processing Technologies, 1-9. (Impact Factor: 6.044)

4.      Barnasree Chanda, Swagat Kumar Pani, Jayanta Das, “Mechanism of microstructure evolution and spheroidization in ultrafine lamellar CoCrFeNi(Nb0.5/Ta0.4) eutectic high entropy alloys upon hot deformation”, Materials Science & Engineering A. (Impact Factor: 6.044)

5.      Barnasree Chanda, Jayanta Das, “Evolution of microstructure homogeneity and mechanical properties in nano-/ultrafine eutectic CoCrFeNiNbx (0.45 ≤ x ≤ 0.65) high entropy alloy ingots and cast rods”, Journal of Alloys and Compounds (2022) 163610 (1-13). https://doi.org/10.1016/j.jallcom.2022.163610 (Impact Factor: 6.371)

6.      Animesh Sinha Kishore Kandi, Barnasree Chanda, Arindam Sinha, “Mechanical characterization of nano clay composite modified with 2-(2-hydroxypropoxy) propan-1-ol Mechanical characterization of nano clay composite modified with 2-(2-hydroxypropoxy) propan-1-ol”, Advances in Materials and Processing Technologies (2022) https://doi.org/10.1080/2374068X.2022.2133672 (Impact Factor: 2.9 (Scopus)).

7.      Barnasree Chanda, Parijat P. Jana, Jayanta Das, “A tool to predict the evolution of phase and Young’s modulus in high entropy alloys using artificial neural network”, Computational Materials Science, 197 (2021) 110619 (1-13). https://doi.org/10.1016/j.commatsci.2021.110619 (Impact Factor: 3.572)

8.      Barnasree Chanda, Gaurav Potnis, Parijat P. Jana, Jayanta Das, “A review on nano-/ultrafine advanced eutectic alloys”, Journal of Alloys and Compounds 827 (2020) 154226 (1-49). https://doi.org/10.1016/j.jallcom.2020.154226 (Impact Factor: 6.371)

9.      Barnasree Chanda, Jayanta Das, “An assessment on the stability of the eutectic phases in high entropy alloys”, Journal of Alloys and Compounds 798 (2019) (167-173). https://doi.org/10.1016/j.jallcom.2019.05.241 (Impact Factor: 6.371)

10.  Barnasree Chanda, Abhilash Verma, Jayanta Das, “Nano-/Ultrafine Eutectic in CoCrFeNi (Nb/Ta) high-entropy alloys”, Transactions of the Indian Institute of Metals 71 (2018) 11 (2717-2723). https://doi.org/10.1007/s12666-018-1408-7 (Impact Factor: 1.499)

11.  Barnasree Chanda, Jayanta Das, “Composition Dependence on the Evolution of Nanoeutectic in CoCrFeNiNbx (0.45 ≤ x≤ 0.65) High Entropy Alloys”, Advanced Engineering Materials 20 (2018) 1700908 (1-9). https://doi.org/10.1002/adem.201700908 (Impact Factor: 4.122)

12.  Barnasree Chanda, Rahul Kumar, Kaushik Kumar, Sumit Bhowmik, “Optimisation of Mechanical Properties of Wood Dust-reinforced Epoxy Composite Using Grey Relational Analysis”. Proceedings of fourth international conference on soft computing for problem solving, Springer, 13-24 (2015). DOI 10.1007/978-81-322-2220-0_2.

 

Last Updated on April 17, 2023