Dr. Biswa Ranjan Das

Scientist D & Assistant Director
Defence Materials and Stores Research and Development Establishment, India


Highest Degree
Ph.D. in Textile Technology from Center for Energy Studies, IIT Delhi, India

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Biography

Dr. Biswa Ranjan Das is currently working as Senior Scientist at Defense Materials and Stores Research and Development Establishment, India. He obtained his Ph.D. in Textile Technology from Indian Institute of Technology, India. He has 11 month working experience of Textile Technology at Institute of Textile Technology, Choudwar, Cuttack, Odisha, India, 5 years and 3 months experience of Scientist Defense Materials and Stores Research and Development Establishment, India. He has published 34 research papers in national and international journal, and 10 papers in national and international conferences contributed as author/co-author. He is also working on 6 research projects. Dr. Biswa Ranjan received honors includes DRDO cash award (2010) from DMSRDE (DRDO), Ministry of Defense, Precitex Award holder, as the Best Spinning student of the Institute, Scored 98.54 percentile in GATE (Graduate Aptitude Tests in Engineering) with all India rank 6 in year 2002, and National scholarship holder throughout his career.

Area of Interest:

Physical Science Engineering
Material Engineering
Textile Technology
Composite Materials
Fibre and Textile Research

Selected Publications

  1. Sinha, M.K., B.R. Das, N. Prasad, B. Kishore and K. Kumar, 2018. Exploration of nanofibrous coated webs for chemical and biological protection. Zastita Materijala, 59: 189-198.
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  2. Sinha, M.K. and B.R. Das, 2018. Chitosan nanofibrous materials for chemical and biological protection. J. Text. Fibrous Mater., 1: 1-13.
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  3. Dasaradhan, B., B.R. Das, M.K. Sinha, K. Kumar, B. Kishore and N.E. Prasad, 2018. A brief review of technology and materials for aerostat application. Asian J. Text., (In Press). .
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  4. Sinha, M.K., B.R. Das, N.E. Prasad, K. Kumar and B. Kishore, 2017. Chemical, biological, radiological and nuclear (CBRN) protective clothing-An overview. Asian Text. J., 26: 53-56.

  5. Sinha, M.K., B.R. Das, K. Kumar, B. Kishore and N.E. Prasad, 2017. Development of ultraviolet (UV) radiation protective fabric using combined electrospinning and electrospraying technique. J. Inst. Eng., 10.1007/s40034-017-0094-z.
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  6. Rengasamy, R.S., S.M. Ishtiaque and B.R. Das, 2016. Dynamic failure behaviour of blended spun yarns during winding. J. Text. Inst., 107: 242-248.
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  7. Ishtiaque, S.M., R.S. Rengasamy, O.P. Sharma and B.R. Das, 2016. Influence of fibre strength and yarn structural characteristics on tensile failure of blended spun yarns: A prediction model. J. Text. Inst., 107: 127-135.
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  8. Ishtiaque, S.M., R.S. Rengasamy and B.R. Das, 2016. Tensile failure of blended spun yarns under dynamic condition: Part I -Yarn failure during warping. Indian J. Fibre Text. Res., 107: 255-262.

  9. Sinha, M.K., B.R. Das, A. Srivastava and A.K. Saxena, 2015. Study of electrospun poly-acrylo nitrile and PAN/CNT composite nanofibrous webs. Res. J. Text. Apparels, 19: 36-45.

  10. Sinha, M.K., B.R. Das, R. Mishra, A. Ranjan, A. Srivastava and A.K. Saxena, 2014. Study of electrospun polycarbosilane (PCS) nanofibrous web by needle-less technique. Fashion Text., Vol. 1. 10.1186/s40691-014-0002-9.
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  11. Sinha, M.K., B.R. Das, A. Srivastava and A.K. Saxena, 2014. Study of electrospun chitosan nanofibrous coated webs. J. Nano Res., 27: 129-141.
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  12. Ishtiaque, S.M., R.S. Rengasamy and B.R. Das, 2014. Prediction of strength and weavability of blended spun yarns. Fibers Polym., 15: 1752-1757.
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  13. Hati, S. and B.R. Das, 2014. Textile composites in aircraft applications. Asian Text. J., 23: 49-53.

  14. Sinha, M.K., B.R. Das, A. Srivastava and A.K. Saxena, 2013. Needle-less electrospinning and coating of poly vinyl alcohol with cross-linking agent via in-situ technique. Int. J. Text. Fashion Technol., 3: 29-38.

  15. Sinha, M.K., B.R. Das, A. Srivastava and A.K. Saxena, 2013. Influence of process parameters on electrospun nanofibre morphology. Asian J. Text., 3: 8-14.
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  16. Das, B.R., S.M. Ishtiaque, and R.S. Rengasamy, 2013. Study on fiber overlap and fiber extent in blended spun yarns. J. Eng. Fibers Fabr., 8: 137-145.
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  17. Das, B.R., D. Bhattacharjee, K. Kumar and A. Srivastava, 2013. Thermo-physiological comfort characteristics of fine-denier polypropylene fabrics. Res. J. Text. Apparel, 17: 133-140.
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  18. Das, B.R. and P.K. Banerjee, 2013. Interface bond and compatibility of jute with asphalt. Composites Part B, 53: 69-75.
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  19. Das, B.R., S.M. Ishtiaque and R.S. Rengasamy, 2012. Study on the static and dynamic strengths and weavability of spun yarns. Fibers Polym., 13: 231-236.
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  20. Hati, S. and B.R. Das, 2011. Seam Pucker in Apparels: A Critical Review of Evaluation Methods. Asian J. Text., 1: 60-73.
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  21. Das, B.R., S.M. Ishtiaque, R.S. Rengasamy and S. Hati, 2011. Prediction of weavability of warp yarns: A critical review. Res. J. Text. Apparel, 15: 38-49.

  22. Das, B.R., S.M. Ishtiaque and R.S. Rengasamy, 2011. Static failure mechanism of staple yarns: A critical review. Asian J. Textile, 1: 50-58.
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  23. Das, B.R., S.M. Ishtiaque and R.S. Rengasamy, 2011. Static and dynamic tensile behaviour of spun yarns: A critical review. Res. J. Text. Apparel, 15: 70-83.
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  24. Das, B.R., S.M. Ishtiaque and R.S. Rengasamy, 2011. Migration behaviour of polyester/viscose blended rotor spun yarns. Asian J. Text., 1: 27-34.
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  25. Das, B.R., 2011. Superabsorbent polymers. Asian Text. J., 20: 27-32.

  26. Das, B.R., 2011. Failure of textile structures under dynamic states. Melliand Int., 38: 282-284.

  27. Das, B.R., 2011. Auxetic textile materials: Advantage of negative Poisson’s ratio. Asian Techn. Text., 5: 46-50.

  28. Das, B.R. and S.M. Ishtiaque, 2011. Superhydrophobic surface development on textile substrate. Asian Techn. Text., 5: 37-40.

  29. Das, B.R. and S. Hati, 2011. Engineered clothing and ultraviolet radiation. Asian Text. J., 20: 28-33.

  30. Das, B.R., S.M. Ishtiaque, R.S. Rengasamy, S. Hati and A. Kumar, 2010. Ultraviolet absorbers for textiles. Res. J. Text. Apparel, 14: 42-52.
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  31. Das, B.R., S.M. Ishtiaque, R.S. Rengasamy, R. Guruprasad and S. Hati, 2010. Failure mechanism of staple yarns: A critical review. J. Text. Apparel Technol. Manage., Vol. 6, No. 4. .
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  32. Das, B.R., 2010. UV radiation protective clothing. Open Text. J., 3: 14-21.
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  33. Das, B.R., 2010. Tensile behaviour of spun yarns under static state. J. Eng. Fibers Fabr., 5: 1-9.
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  34. Das, B.R., 2010. Tensile behavior of spun yarns under dynamic state. Melliand Int., 38: 106-107.

  35. Das, B.R., 2010. Electrospun nanofibrous scaffolds for tissue engineering. Asian Text. J., 19: 61-65.

  36. Rengasamy, R.S., B.R. Das and Y.B. Patil, 2009. Thermo-physiological comfort characteristics of polyester air-jet-textured and cotton-yarn fabrics. J. Text. Inst., 100: 507-511.
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  37. Rengasamy, R.S., B.R. Das and Y.B. Patil, 2009. Bending and Compression Behaviour of Polyester Air-jet-textured and Cotton-yarn Fabrics. Open Text. J., 2: 48-52.
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  38. Ishtiaque, S.M., P. Subramani, A. Kumar and B.R. Das, 2009. Structural and tensile properties of ring and compact plied yarns. Indian J. Fibre Text. Res., 34: 213-218.
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  39. Rengasamy, R.S., S.M. Ishtiaque, B.R. Das and A. Ghosh, 2008. Fabric assistance in woven structures made from different spun yarns. Indian J. Fibre Text. Res., 33: 377-382.
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  40. Ishtiaque, S.M., B.R. Das, A. Kumar and M. Ramamoorthy, 2008. Static and dynamic failure mechanisms of cotton yarns. Indian J. Fibre Text. Res., 33: 111-118.
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