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Research Article

Study of Thermal Insulation Performance of Layered Jute Nonwoven: A Sustainable Material

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References

  • Basu, G., and A. N. Roy. 2008. Blending of jute with different natural fibres. Journal of Natural Fibers 4 (4): 13–29. 10.1080/15440470801893323
  • Basu, G., A. K. Samanta, and P. Ghosh. 2008. Enzyme and silicone treatments on jute fibre. Part II: Effect on process performance during yarn making and yarn properties. The Journal of the Textile Institute 99 (4): 307–16. 10.1080/00405000701414816
  • Binici, H., O. Aksogan, and C. Demirhan. 2016. Mechanical, thermal and acoustical characterizations of an insulation composite made of bio-based materials. Sustainable Cities and Society 20: 17–26. 10.1016/j.scs.2015.09.004
  • Binici, H., M. Eken, M. Dolaz, O. Aksogan, and M. Kara. 2014. An environmentally friendly thermal insulation material from sunflower stalk, textile waste and stubble fibres. Construction and Building Materials 51: 24–33. 10.1016/j.conbuildmat.2013.10.038
  • Bribia, I. Z., A. V. Capilla, and A. A. Usón. 2011. Life cycle assessment of building materials: Comparative analysis of energy and environmental impacts and evaluation of the eco-efficiency improvement potential. Building and Environment 46 (5): 1133–40. 10.1016/j.buildenv.2010.12.002
  • Briga-Sá, A., D. Nascimento, N. Teixeira, J. Pinto, F. Caldeira, H. Varum, and A. Paiva. 2013. Textile waste as an alternative thermal insulation building material solution. Construction and Building Materials 38: 155–60. 10.1016/j.conbuildmat.2012.08.037
  • Chen, H., V. V. Ginzburg, J. Yang, Y. Yang, W. Liu, Y. Huang, L. Du, and B. Chen. 2016. Thermal conductivity of polymer-based composites: Fundamentals and applications. Progress in Polymer Science 59: 41–85. 10.1016/j.progpolymsci.2016.03.001
  • Debnath, S., and M. Madhusoothanan. 2010. Thermal insulation, compression and air permeability of polyester needle-punched nonwoven. Indian Journal of Fibre & Textile Research 35 (1): 38–44.
  • Debnath, S., and M. Madhusoothanan. 2011. Thermal resistance and air permeability of jute-polypropylene blended needle-punched nonwoven. Indian Journal of Fibre & Textile Research 36 (2): 122–31.
  • Frydrych, I., G. Dziworska, and J. Bilska. 2002. Comparative analysis of the thermal insulation properties of fabrics made of natural and man-made cellulose fibers. Fibres & Textiles in Eastern Europe 10: 40–44.
  • Ghosh, S., S. Singha, and S. Maity. 2019. Thermal insulation behavior of chemically treated jute fiber quilt. Journal of Natural Fibers.1–13 10.1080/15440478.2019.1636744
  • Gupta, M. K., and R. K. Srivastava. 2017. Mechanical, thermal and dynamic mechanical analysis of jute fibre reinforced epoxy composite. Indian Journal of Fibre & Textile Research 42 (1): 64–71.
  • Huang, C., X. Qian, and R. Yang. 2018. Thermal conductivity of polymers and polymer nanocomposites. Materials Science and Engineering: R: Reports 132: 1–22. 10.1016/j.mser.2018.06.002
  • Korjenic, A., J. Zach, and J. Hroudova. 2016. The use of insulating materials based on natural fibers in combination with plant facades in buildings constructions. Energy and Buildings 116:45–58. 10.1016/j.enbuild.2015.12.037
  • Kundu, B. C., K. C. Basak, and P. B. Sarkar.1959. Jute in India (1st ed.), pp. 335–393. The Indian Central Jute Committee, Calcutta.
  • Kymalainen, H. R., and A. M. Sjoberg. 2008. Flax and hemp fibres as raw materials for thermal insulations. Building and Environment 43 (7): 1261–69. 10.1016/j.buildenv.2007.03.006
  • Liu, K., H. Takagi, R. Osugi, and Z. Yang. 2012. Effect of lumen size on the effective transverse thermal conductivity of unidirectional natural fiber composites. Composites Science and Technology 72 (5): 633–39. 10.1016/j.compscitech.2012.01.009
  • Liu, X. Y., and G. C. Dai. 2007. Surface modification and micromechanical properties of jute fiber mat reinforced polypropylene composites. eXPRESS Polymer Letters, 1 (5): 299–307. 10.3144/expresspolymlett.2007.43
  • Maity, S. 2016. Jute needlepunched nonwovens: manufacturing, properties, and applications. Journal of Natural Fibers, 13 (4): 383–96. 10.1080/15440478.2015.1029200
  • Maity, S., K. Singha, D. P. Gon, P. Paul, and M. Singha, 2012. Review on jute nonwovens: manufacturing, properties and applications. International Journal of Textile Science, 1 (5): 36–43.
  • Muthukumar, N., G. Thilagavathi, S. Neelakrishnan, and P. T. Poovaragan. 2019. Sound and thermal insulation properties of flax/low melt PET needle punched nonwovens. Journal of Natural Fibers, 16 (2): 245–52. 10.1080/15440478.2017.1414654
  • Muthuraj, R., C. Lacoste, P. Lacroix, and A. Bergeret. 2019. Sustainable thermal insulation biocomposites from rice husk, wheat husk, wood fibers and textile waste fibers: Elaboration and performances evaluation. Industrial Crops and Products 135: 238–45. 10.1016/j.indcrop.2019.04.053
  • Neira, D. S. M., and G. S. Marinho 2009. Nonwoven sisal fiber as thermal insulator material. Journal of Natural Fibers 6 (2): 115–26. 10.1080/15440470802328964
  • Paul, N. G., and M. Mukhopadhyay. 1977. Thermal insulation values of jute fabrics and its blends with other fibers. Indian Journal of Fibre & Textile Research 2 (3): 88–91.
  • Roy, G., M. Naskar, and S. N. Ghosh. 2009. Development of digital thermal insulation value tester for jute products. Indian Journal of Fibre & Textile Research 34 (1): 36–40.
  • Sengupta, S. 2010. Sound reduction by needle-punched nonwoven fabrics. Indian Journal of Fibre & Textile Research 35 (3): 237–42.
  • Sengupta, S., and S. Debnath. 2019. Study on needle-punched jute nonwoven as an artificial medium for germination of seed: Effect of bulk density. Journal of Natural Fibers 16 (4): 494–502 10.1080/15440478.2018.1426078
  • Sengupta, S., S. Debnath, and A. Sengupta. 2016. Fabric bending behaviour testing instrument for technical textiles. Measurement 87: 205–15. 10.1016/j.measurement.2016.03.030
  • Sengupta, S., and A. Sengupta. 2013. Electrical resistance of jute needle-punched non-woven fabric–effect of punch density, needle penetration and area density. Journal of the Textile Institute 104 (2): 132–39. 10.1080/00405000.2012.699940
  • Stout, H. P., 1988. Fibre and yarn quality in jute spinning, edited by P. W. Harrison, pp. 19–21. Textile Institute Publishing:Manchester.
  • Zakriya, G. M., and G. Ramakrishnan. 2019. Jute and hollow conjugated polyester composites for outdoor & indoor insulation applications. Journal of Natural Fibers 16 (2): 185–98 10.1080/15440478.2017.1410515
  • Zakriya, M., G. Ramakrishnan, N. Gobi, N. K. Palaniswamy, and J. Srinivasan. 2017. Jute-reinforced non-woven composites as a thermal insulator and sound absorber – A review. Journal of Reinforced Plastics and Composites 36 (3): 206–13 10.1177/0731684416679745

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