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COMPARATIVE STUDY OF PROPERTIES OF LIGHTWEIGHT COMPOSITES BASED ON UNTREATED AND CHEMICAL TREATED OF HEMP HURDS

Jozef Junak

First published: 2013-06-20https://doi.org/10.5593/sgem2013/bd4/s18.004View metrics

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Publication details

Title
COMPARATIVE STUDY OF PROPERTIES OF LIGHTWEIGHT COMPOSITES BASED ON UNTREATED AND CHEMICAL TREATED OF HEMP HURDS
Authors
Jozef Junak
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 13th SGEM GeoConference on ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2013
Pages
317 - 324 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References36
  1. Maya J. J., Sabu T. Biofibres and biocomposites, Carbohydrate Polymers, vol. 71, p. 343–364, 2008.

  2. Nabi S. D, Jog J. P. Natural fiber polymer composites: a review, Advances in Polymer Technology, vol. 18, p. 351, 1999.

  3. Rowell R. M. Property enhanced natural fiber composite materials based on chemical modification, Prasad PN et al., editors, Science and technology of polymers and advanced materials, New York, Plenum Press, 1998.

  4. Zafeiropoulos N. E., Williams D. R. , Baillie C. A., Matthews F. L. Engineering and characterisation of the interface in flax fibre/polypropylene composite materials. Part I. Development and investigation of surface treatments. Composites: Part A vol. 33, p. 1083, 2002.

  5. Rozman H. D., Saad M. J., Mohd I. Z. A. Flexural and impact properties of oil palm empty fruit bunch (EFB)-polypropylene composites- the effect of maleic anhydride chemical modification of EFB, Polymer Testing, vol. 22, p. 335, 2003.

  6. Rozman H. D., Kumar R. N. , Abdul Khalil H. P. S. , Abusamah A. , Abu R. , Ismail H. Fibre activation with glycidyl methacrylate and subsequent copolymerization with diallyl phthalate, European Polymer Journal, vol. 33, p. 1213, 1997.

  7. George J. , Sreekala M. S. , Thomas S. A review on interfacial modification and characterization of natural fiber reinforced plastic composites. Polymer Engineering and Science, vol. 41, p. 1471, 2001.

  8. Kidalova L., Stevulova N., Terpakova E., Sicakova A. Utilization of alternative materials in lightweight composites, Journal of Cleaner Production, vol. 34, p. 116 -119, 2012.

  9. Kidalova L., Stevulova N., Junak J. Study of strength characteristics of hemp composite, WateEng12 : 4th International Conference on Engineering for Waste and Biomass Valorisation : proceedings, Porto, Portugal, vol. 5, p. 1539-1544, 2012.

  10. Terpakova E., Kidalova L., Estokova A., Cigasova J., Stevulova N. Chemical modification of hemp shives and their characterization, Procedia Engineering, vol. 42, p. 1017-1028, 2012. GeoConference on Energy and Clean Technologies

  11. Cigasova J., Stevulova N., Junak J. Properties monitoring of fibrous composites based on hemp hurds with different mean particle size, Polllack Periodica, vol. 8, 2013 (in press).

  12. Kidalova L., Terpakova E., Stevulova N. MgO cement as suitable conventional binders replacement in hemp concrete, Pollack Periodica, vol. 6/3, p. 115–122, 2011.

  13. STN EN 12390-7 : 2011 Testing hardened concrete, Part 7, Density of hardened concrete.

  14. STN EN 12087/A1 : 2007 Thermal insulating products for building applications. Determination of long term water absorption by immersion.

  15. Tröedec M., Peyratout C., Smith A. Influence of various chemical treatments on the interactions between hemp fibres and a lime matrix, Journal of the European Ceramic Society, vol. 29, p. 1861- 1868, 2009.

  16. Brencis R., Skujans J., Iljins U., Ziemelis I., Osits O. Research on foam gypsum with hemp fibrous reinforcement, Chemical Engineering transaction, vol. 25, p. 159- 164, 2011.

  17. Stevulova N., Kidalova L., Junak J., Cigasova, J., Terpakova E. Effect of hemp shive sizes on mechanical properties of lightweight fibrous composites, Procedia Engineering, vol. 42, p. 543-547, 2012.

  18. de Bruijn P. B., Jeppssona K. H., Sandinb K., Nilssona Ch. Mechanical properties of lime–hemp concrete containing shives and fibres, Biosystems Engineering, vol. 103, 474-479, 2009.

  19. Maya J. J., Sabu T. Biofibres and biocomposites, Carbohydrate Polymers, vol. 71, p. 343–364, 2008.

  20. Nabi S. D, Jog J. P. Natural fiber polymer composites: a review, Advances in Polymer Technology, vol. 18, p. 351, 1999.

  21. Rowell R. M. Property enhanced natural fiber composite materials based on chemical modification, Prasad PN et al., editors, Science and technology of polymers and advanced materials, New York, Plenum Press, 1998.

  22. Zafeiropoulos N. E., Williams D. R. , Baillie C. A., Matthews F. L. Engineering and characterisation of the interface in flax fibre/polypropylene composite materials. Part I. Development and investigation of surface treatments. Composites: Part A vol. 33, p. 1083, 2002.

  23. Rozman H. D., Saad M. J., Mohd I. Z. A. Flexural and impact properties of oil palm empty fruit bunch (EFB)-polypropylene composites- the effect of maleic anhydride chemical modification of EFB, Polymer Testing, vol. 22, p. 335, 2003.

  24. Rozman H. D., Kumar R. N. , Abdul Khalil H. P. S. , Abusamah A. , Abu R. , Ismail H. Fibre activation with glycidyl methacrylate and subsequent copolymerization with diallyl phthalate, European Polymer Journal, vol. 33, p. 1213, 1997.

  25. George J. , Sreekala M. S. , Thomas S. A review on interfacial modification and characterization of natural fiber reinforced plastic composites. Polymer Engineering and Science, vol. 41, p. 1471, 2001.

  26. Kidalova L., Stevulova N., Terpakova E., Sicakova A. Utilization of alternative materials in lightweight composites, Journal of Cleaner Production, vol. 34, p. 116 -119, 2012.

  27. Kidalova L., Stevulova N., Junak J. Study of strength characteristics of hemp composite, WateEng12 : 4th International Conference on Engineering for Waste and Biomass Valorisation : proceedings, Porto, Portugal, vol. 5, p. 1539-1544, 2012.

  28. Terpakova E., Kidalova L., Estokova A., Cigasova J., Stevulova N. Chemical modification of hemp shives and their characterization, Procedia Engineering, vol. 42, p. 1017-1028, 2012. GeoConference on Energy and Clean Technologies

  29. Cigasova J., Stevulova N., Junak J. Properties monitoring of fibrous composites based on hemp hurds with different mean particle size, Polllack Periodica, vol. 8, 2013 (in press).

  30. Kidalova L., Terpakova E., Stevulova N. MgO cement as suitable conventional binders replacement in hemp concrete, Pollack Periodica, vol. 6/3, p. 115–122, 2011.

  31. STN EN 12390-7 : 2011 Testing hardened concrete, Part 7, Density of hardened concrete.

  32. STN EN 12087/A1 : 2007 Thermal insulating products for building applications. Determination of long term water absorption by immersion.

  33. Tröedec M., Peyratout C., Smith A. Influence of various chemical treatments on the interactions between hemp fibres and a lime matrix, Journal of the European Ceramic Society, vol. 29, p. 1861- 1868, 2009.

  34. Brencis R., Skujans J., Iljins U., Ziemelis I., Osits O. Research on foam gypsum with hemp fibrous reinforcement, Chemical Engineering transaction, vol. 25, p. 159- 164, 2011.

  35. Stevulova N., Kidalova L., Junak J., Cigasova, J., Terpakova E. Effect of hemp shive sizes on mechanical properties of lightweight fibrous composites, Procedia Engineering, vol. 42, p. 543-547, 2012.

  36. de Bruijn P. B., Jeppssona K. H., Sandinb K., Nilssona Ch. Mechanical properties of lime–hemp concrete containing shives and fibres, Biosystems Engineering, vol. 103, 474-479, 2009.

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