Jute fiber (50 %) reinforced PVC+PP hybrid composites were prepared by injection molding and heat pressing. Mechanical properties (tensile strength, TS; bending strength, BS; tensile modulus, TM; bending modulus, BM; and impact strength, IS) and burning speed of composites were studied. Hybrid composite of 55 % PP and 45 % PVC showed the best results and was selected as desired specimen. TS, BS, TM, BM, IS and burning speed of the selected desired specimen (SDS) was found as 63.6 MPa, 68.7 MPa, 1.38 GPa, 1.76 GPa, 24 KJ/m2 and 3.2 cm/min respectively. Finer particle size Aluminium trihydrate (ATH) and Zinc borate with Antimony Trioxide (ZB-AT) was used as fire retardants. TS and IS decreased; on the contrary, TM and BM increased with increasing both AT and ZB-AT. But BS decreased with increasing ATH and increased with increasing ZB-AT. Burning speed of SDS reduced to 2.8 cm/min and 2.2 cm/min after using 10 % ATH and 10 % ZB-AT (ZB, 7.5%; AT, 2.5%) respectively.
Published in | International Journal of Materials Science and Applications (Volume 2, Issue 5) |
DOI | 10.11648/j.ijmsa.20130205.13 |
Page(s) | 162-167 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2013. Published by Science Publishing Group |
Fire Retardants, Flammability, Jute Fiber, PVC–PP Composite, Hybrid Composite Material, Zinc Borate, Aluminium Trihydrate, Mechanical Properties, Statistical Analysis
[1] | T. D. Hapuarachchi, G. Ren, M.Fan, P. J. Hogg and T. Peijs, "Fire retardency of natural fibre reinforced sheet moulding compound,"Appl Compos Mater, vol. 14, pp. 251-264, 2007. |
[2] | A. K. Bledzki and J. Gassam, "Composites reinforced with cellulose based fibers," Prog. Poly. m. sci., vol. 24, pp. 221-274, 1999. |
[3] | P. Wambua, J. Ivan and I. Verport, "Natural fibres: can they replace glass in fibre reinforced plastics," Compos. Science Technol., vol. 63, pp. 1259-1264, 2003. |
[4] | H.U. Zaman, A. H. Khan, M. A. Hossain, M. A. Khan and R. A. Khan, "Mechanical and electrical properties of jute fabrics rainforced polyethylene/polypropylene composites: role of Gamma radiation,"Polym. Plast. Technol. Eng., vol. 48, pp. 760-766, 2009. |
[5] | M. A. Khan, R.A. Khan, Haydaruzzaman, A. Hossain and A. H. Khan, "Effect of Gamma radiation on the physic-mechanical and electrical properties of jute fiber reignforced polypropylene composites," Journal of Reign. Plast. And comp, vol. 28, no.13, 2009. |
[6] | A. K. Rana, A. Mandal, B. C. Mitra, R. Jacobson, R. Rowell and A. N. Banerjee, "Short jute fiber-reinforced polypropylene composites: effect of compatibilizer," Journal of Applied Polymer Science, vol. 69, pp. 329-338, 1998. |
[7] | M. A. Khan, G. Hinrichsen and L. T. Drzal, "Influence of novel coupling agents on mechanical properties of jute-reinforced polypropylene composite," J. Mater. Sci. Lett., vol. 20, pp. 1711–1713, 2001. |
[8] | M. F. Mina, S. Seema, R. Matin, M. J. Rahaman, R. B. Sarker, M. A. Gafur and M. A. H. Bhuiyan, "Improved performance of isotactic polypropylene/titanium dioxide composites: Effect of processing conditions and filler content," Polym. Degrad. Stab., vol. 94, no. 2, pp. 183–188, 2009. |
[9] | A. A. Klyosov, Wood-plastic composites. Hoboken, New Jersey: John Wiley & Sons, Inc., 2007, pp. 56-60. |
[10] | S. Sun, C. Li, L. Zhang and H. L. Du, "Interfacial structure and mechanical properties of PVC composites reinforced by CaCO3 with different particle size and surface treatment," Polym. Int., vol. 55, pp. 158-164, 2006. |
[11] | A. K. Bledzki and J. Gassan, "Composites reinforced with cellulose based fibres," Prog. Polym. Sci., vol. 24, pp. 221–274, 1999. |
[12] | C. H. Chen, C. H. Li, C. C. Teng and C. H. Yang, "Fusion, electrical conductivity, thermal and mechanical properties of rigid poly (vinyl chloride) (PVC)/carbon black (CB) composites," Journal of Applied Polymer Science, vol. 99, pp. 2167-2173, 2006. |
[13] | J. K. Kim and K. Pal, "Recent advance in the processing of wood plastic composites," Engineering Materials, vol. 32, 2011. |
[14] | M. Al-Maamori, A. Al-Mosawi and A. Hashim, "Flame retardancy enhancement of hybrid composite material by using inorganic retardants," Materials Sciences and Application, vol. 2, pp. 1134-1138, 2011. |
[15] | S. Bourbigot and S. Duquesne, "Fire retardant polymers: recent developments and opportunities," Journal of Materials Chemistry, April, 2007. |
[16] | M. T. Albdiry, A. I. Almosawi and B. F. Yousif, "The synergistic effect of hybrid flame retardants on pyrolysis behaviour of hybrid composite materials", Journal of Engineering Science and Technology, vol. 7(3), pp. 351-359, 2012. |
[17] | A. R. Shah, D. Lee, S. Kim, A. Wasy, Y. Q Wang, K. C. Ham, K. Jayaraman, B. S. Kim and J. I Song, "Effect of wt % of ATH on mechanical strength of Polypropylene/Aluminium Trihydrate (PP/ATH) composite," 9th International Conference on Fracture & Strength of Solids, June 2013. |
APA Style
Shovon Bhattacharjee, Muhammad Hasnan Sazzad, Muhammed Ariful Islam, M. M. Ahtashom, Asaduzzaman, et al. (2013). Effects of Fire Retardants on Jute Fiber Reinforced Polyvinyl Chloride/Polypropylene Hybrid Composites. International Journal of Materials Science and Applications, 2(5), 162-167. https://doi.org/10.11648/j.ijmsa.20130205.13
ACS Style
Shovon Bhattacharjee; Muhammad Hasnan Sazzad; Muhammed Ariful Islam; M. M. Ahtashom; Asaduzzaman, et al. Effects of Fire Retardants on Jute Fiber Reinforced Polyvinyl Chloride/Polypropylene Hybrid Composites. Int. J. Mater. Sci. Appl. 2013, 2(5), 162-167. doi: 10.11648/j.ijmsa.20130205.13
AMA Style
Shovon Bhattacharjee, Muhammad Hasnan Sazzad, Muhammed Ariful Islam, M. M. Ahtashom, Asaduzzaman, et al. Effects of Fire Retardants on Jute Fiber Reinforced Polyvinyl Chloride/Polypropylene Hybrid Composites. Int J Mater Sci Appl. 2013;2(5):162-167. doi: 10.11648/j.ijmsa.20130205.13
@article{10.11648/j.ijmsa.20130205.13, author = {Shovon Bhattacharjee and Muhammad Hasnan Sazzad and Muhammed Ariful Islam and M. M. Ahtashom and Asaduzzaman and Muhammed Yusuf Miah}, title = {Effects of Fire Retardants on Jute Fiber Reinforced Polyvinyl Chloride/Polypropylene Hybrid Composites}, journal = {International Journal of Materials Science and Applications}, volume = {2}, number = {5}, pages = {162-167}, doi = {10.11648/j.ijmsa.20130205.13}, url = {https://doi.org/10.11648/j.ijmsa.20130205.13}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijmsa.20130205.13}, abstract = {Jute fiber (50 %) reinforced PVC+PP hybrid composites were prepared by injection molding and heat pressing. Mechanical properties (tensile strength, TS; bending strength, BS; tensile modulus, TM; bending modulus, BM; and impact strength, IS) and burning speed of composites were studied. Hybrid composite of 55 % PP and 45 % PVC showed the best results and was selected as desired specimen. TS, BS, TM, BM, IS and burning speed of the selected desired specimen (SDS) was found as 63.6 MPa, 68.7 MPa, 1.38 GPa, 1.76 GPa, 24 KJ/m2 and 3.2 cm/min respectively. Finer particle size Aluminium trihydrate (ATH) and Zinc borate with Antimony Trioxide (ZB-AT) was used as fire retardants. TS and IS decreased; on the contrary, TM and BM increased with increasing both AT and ZB-AT. But BS decreased with increasing ATH and increased with increasing ZB-AT. Burning speed of SDS reduced to 2.8 cm/min and 2.2 cm/min after using 10 % ATH and 10 % ZB-AT (ZB, 7.5%; AT, 2.5%) respectively.}, year = {2013} }
TY - JOUR T1 - Effects of Fire Retardants on Jute Fiber Reinforced Polyvinyl Chloride/Polypropylene Hybrid Composites AU - Shovon Bhattacharjee AU - Muhammad Hasnan Sazzad AU - Muhammed Ariful Islam AU - M. M. Ahtashom AU - Asaduzzaman AU - Muhammed Yusuf Miah Y1 - 2013/09/20 PY - 2013 N1 - https://doi.org/10.11648/j.ijmsa.20130205.13 DO - 10.11648/j.ijmsa.20130205.13 T2 - International Journal of Materials Science and Applications JF - International Journal of Materials Science and Applications JO - International Journal of Materials Science and Applications SP - 162 EP - 167 PB - Science Publishing Group SN - 2327-2643 UR - https://doi.org/10.11648/j.ijmsa.20130205.13 AB - Jute fiber (50 %) reinforced PVC+PP hybrid composites were prepared by injection molding and heat pressing. Mechanical properties (tensile strength, TS; bending strength, BS; tensile modulus, TM; bending modulus, BM; and impact strength, IS) and burning speed of composites were studied. Hybrid composite of 55 % PP and 45 % PVC showed the best results and was selected as desired specimen. TS, BS, TM, BM, IS and burning speed of the selected desired specimen (SDS) was found as 63.6 MPa, 68.7 MPa, 1.38 GPa, 1.76 GPa, 24 KJ/m2 and 3.2 cm/min respectively. Finer particle size Aluminium trihydrate (ATH) and Zinc borate with Antimony Trioxide (ZB-AT) was used as fire retardants. TS and IS decreased; on the contrary, TM and BM increased with increasing both AT and ZB-AT. But BS decreased with increasing ATH and increased with increasing ZB-AT. Burning speed of SDS reduced to 2.8 cm/min and 2.2 cm/min after using 10 % ATH and 10 % ZB-AT (ZB, 7.5%; AT, 2.5%) respectively. VL - 2 IS - 5 ER -