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Research Article

Banana-Glass Fiber Composite for Acoustic Insulation and Prediction of Its Properties by Fuzzy Logic System

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References

  • Abimbola Helen, A., O. A. Bolanle, and F. O. Samuel. 2016. Comparative analysis of rainfall prediction models using neural network and fuzzy logic. International Journal of Soft Computing and Engineering (IJSCE) 6:2231–17.
  • Adesina, O. T., T. Jamiru, E. R. Sadiku, O. F. Ogunbiyi, and L. W. Beneke. 2019. Mechanical evaluation of hybrid natural fibre–reinforced polymeric composites for automotive bumper beam: A review. International Journal of Advanced Manufacturing Technology 103 (5–8):1781–97. doi:10.1007/s00170-019-03638-w.
  • Amir, S. M. M., M. T. H. Sultan, M. Jawaid, A. H. Ariffin, S. Mohd, K. A. M. Salleh, M. R. Ishak, and A. U. Md Shah. 2018. Nondestructive testing method for Kevlar and natural fiber and their hybrid composites. Durability and Life Prediction in Biocomposites, Fibre-Reinforced Composites and Hybrid Composites 367–88. doi:10.1016/B978-0-08-102290-0.00016-7.
  • Bhat, G., and M. E. Messiry. 2020. Effect of microfiber layers on acoustical absorptive properties of nonwoven fabrics. Journal of Industrial Textiles 50 (3):312–32. doi:10.1177/1528083719830146.
  • Cao, L., Q. Fu, Y. Si, B. Ding, and J. Yu. 2018. Porous materials for sound absorption. Composites Communications 10 (May):25–35. doi:10.1016/j.coco.2018.05.001.
  • Castillo, O., P. Melin, J. Kacprzyk, and W. Pedrycz (2008). Type-2 fuzzy logic: Theory and applications 145. 10.1109/grc.2007.118
  • Cenna, A. A., J. Doyle, N. W. Page, A. Beehag, and P. Dastoor. 2000. Wear mechanisms in polymer matrix composites abraded by bulk solids. Wear 240 (1–2):207–14. doi:10.1016/S0043-1648(00)00365-3.
  • Faruk, O., A. K. Bledzki, H. P. Fink, and M. Sain. 2014. Progress report on natural fiber reinforced composites. Macromolecular Materials and Engineering 299 (1):9–26. doi:10.1002/mame.201300008.
  • Feng, A., Z. Jia, Q. Yu, H. Zhang, and G. Wu. 2018. Preparation and characterization of carbon nanotubes/carbon fiber/phenolic composites on mechanical and thermal conductivity properties. Nano 13 (4):1–10. doi:10.1142/S1793292018500376.
  • Flores Medina, N., D. Flores-Medina, and F. Hernández-Olivares. 2016. Influence of fibers partially coated with rubber from tire recycling as aggregate on the acoustical properties of rubberized concrete. Construction and Building Materials 129:25–36. doi:10.1016/j.conbuildmat.2016.11.007.
  • Gupta, M. M. 2011. Forty-five years of fuzzy sets and fuzzy logic-A tribute to professor Lotfi A. Zadeh (the father of fuzzy logic). Scientia Iranica 18 (3 D):685–90. doi:10.1016/j.scient.2011.04.023.
  • Gupta, C., A. Jain, and N. Joshi. 2018. Fuzzy logic in natural language processing - a closer view. Procedia computer science 132:1375–84. doi:10.1016/j.procs.2018.05.052.
  • Hodgson, A. A. 1993. Industrial fibres: A technical and commercial review. The Annals of Occupational Hygiene 37 (2):203–10. doi:10.1093/annhyg/37.2.203.
  • Hussain, S., M. A. Ahmed, and Y. C. Kim. 2019. Efficient power management algorithm based on fuzzy logic inference for electric vehicles parking lot. IEEE Access 7:65467–85. doi:10.1109/ACCESS.2019.2917297.
  • Improta, G., V. Mazzella, D. Vecchione, S. Santini, and M. Triassi. 2020. Fuzzy logic–based clinical decision support system for the evaluation of renal function in post-transplant patients. Journal of Evaluation in Clinical Practice 26 (4):1224–34. doi:10.1111/jep.13302.
  • Jain, V., and S. Raheja. 2015. Improving the prediction rate of diabetes using fuzzy expert system. International Journal of Information Technology and Computer Science 7 (10):84–91. doi:10.5815/ijitcs.2015.10.10.
  • Jawaid, M., H. P. S. Abdul Khalil, and A. Abu Bakar. 2011. Woven hybrid composites: Tensile and flexural properties of oil palm-woven jute fibres based epoxy composites. Materials Science and Engineering: A 528 (15):5190–95. doi:10.1016/j.msea.2011.03.047.
  • Khalid, M. Y., A. Al Rashid, Z. U. Arif, W. Ahmed, H. Arshad, and A. A. Zaidi. 2021. Natural fiber reinforced composites: Sustainable materials for emerging applications. Results in Engineering 11 (April):100263. doi:10.1016/j.rineng.2021.100263.
  • Khalid, M. Y., A. Al Rashid, Z. U. Arif, M. F. Sheikh, H. Arshad, and M. A. Nasir. 2021. Tensile strength evaluation of glass/jute fibers reinforced composites: An experimental and numerical approach. Results in Engineering 10 (May):100232. doi:10.1016/j.rineng.2021.100232.
  • Khalid, M. Y., Z. U. Arif, M. F. Sheikh, and M. A. Nasir. 2021. Mechanical characterization of glass and jute fiber-based hybrid composites fabricated through compression molding technique. International Journal of Material Forming 14 (5):1085–95. doi:10.1007/s12289-021-01624-w.
  • Khalid, M. Y., R. Imran, Z. U. Arif, N. Akram, H. Arshad, A. A. Rashid, and F. P. G. Márquez. 2021. Developments in chemical treatments, manufacturing techniques and potential applications of natural-fibers-based biodegradable composites. Coatings 11 (3):1–18. doi:10.3390/coatings11030293.
  • Khalid, M. Y., A. A. Rashid, Z. U. Arif, N. Akram, H. Arshad, and F. P. G. Márquez. 2021. Characterization of failure strain in fiber reinforced composites: Under on-axis and off-axis loading. Crystals 11 (2):1–11. doi:10.3390/cryst11020216.
  • Konings, A., L. Van Laer, and G. Van Camp. 2009. Genetic studies on noise-induced hearing loss: A review. Ear and Hearing 30 (2):151–59. doi:10.1097/AUD.0b013e3181987080.
  • Larsen, H. L. 1997. Fundamentals of fuzzy sets and fuzzy logic. AAUE Computer Science 1:1–8. http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.94.3978&rep=rep1&type=pdf.
  • Lipworth, L., C. La Vecchia, C. Bosetti, and J. K. McLaughlin. 2009. Occupational exposure to rock wool and glass wool and risk of cancers of the lung and the head and neck: A systematic review and meta-analysis. Journal of Occupational and Environmental Medicine 51 (9):1075–87. doi:10.1097/JOM.0b013e3181b35125.
  • Magill, J. D., K. Midden, J. Groninger, and M. Therrell (2011). A history and definition of green roof technology with recommendations for future research. Department of Plant, Soil, and Agricultural Systems in the Graduate School, Master of, 62. http://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1132&context=gs_rp&sei-redir=1&referer=http://www.google.com.my/url?sa=t&rct=j&q=A+HISTORY+AND+DEFINITION+OF+GREEN+ROOF+TECHNOLOGY+WITH+RECOMMENDATIONS+FOR+FUTURE+RESEARCH&source=web&cd=1&ved=0CB4QFj
  • Mohd Adnan, M. R. H., A. Sarkheyli, A. Mohd Zain, and H. Haron. 2015. Fuzzy logic for modeling machining process: A review. Artificial Intelligence Review 43 (3):345–79. doi:10.1007/s10462-012-9381-8.
  • Mondal, M. S., J. Sarkar, N. Hasan, H. A. Mehedi, and P. Dutta. 2022. Development of Recycled Natural Fiber Based Composite Material by Hand Lay-Up Process and Analysis of Its Acoustic & Physical Properties. Journal of Natural Fibers 19 (16):14898–908. doi:10.1080/15440478.2022.2069193.
  • Motaleb, K. Z. M. A., R. A. Mizan, and R. Milašius. 2020. Development and characterization of eco-sustainable banana fiber nonwoven material: Surface treatment, water absorbency and mechanical properties. Cellulose 27 (14):7889–900. doi:10.1007/s10570-020-03343-y.
  • Muralikrishna, M. V. V., T. S. A. Surya Kumari, R. Gopi, and G. B. Loganathan. 2020. Development of mechanical properties in banana fiber composite. Materials Today: Proceedings 22 (xxxx):541–45. doi:10.1016/j.matpr.2019.08.189.
  • Na, Y., T. Agnhage, and G. Cho. 2012. Sound absorption of multiple layers of nanofiber webs and the comparison of measuring methods for sound absorption coefficients. Fibers and Polymers 13 (10):1348–52. doi:10.1007/s12221-012-1348-5.
  • Nan, C. W., Y. Shen, and J. Ma. 2010. Physical properties of composites near percolation. Annual Review of Materials Research 40 (August 2015):131–51. doi:10.1146/annurev-matsci-070909-104529.
  • Ramesh, M., T. Sri Ananda Atreya, U. S. Aswin, H. Eashwar, and C. Deepa. 2014. Processing and mechanical property evaluation of banana fiber reinforced polymer composites. Procedia Engineering 97:563–72. doi:10.1016/j.proeng.2014.12.284.
  • Sarkar, J., M. A. Al Faruque, and M. S. Mondal. 2021. Modeling the seam strength of denim garments by using fuzzy expert system. Journal of Engineered Fibers and Fabrics 16. doi:10.1177/1558925021988976.
  • Sela, S. K., A. K. M. Nayab-Ul-Hossain, N. Hasan, S. Z. Hussain, and S. Sadman. 2020. Surface modification and qualitative natural coloring of raw jute to reduce electrical resistance and induce anti-microbial properties. Applied Surface Science Advances 1 (April):100018. doi:10.1016/j.apsadv.2020.100018.
  • Singh, V. K., and S. Mukhopadhyay. 2022. Banana fibre-based structures for acoustic insulation and absorption. Journal of Industrial Textiles 51 (9):1355–75. doi:10.1177/1528083720901823.
  • Smith, P., and E. H. Twizell. 1980. A finite element model of temperature distribution in the human torso. Applied Mathematical Modelling 4 (3). doi: 10.1016/0307-904X(80)90124-9.
  • Sun, Y., Y. Chu, W. Wu, and H. Xiao. 2021. Nanocellulose-based lightweight porous materials: A review. Carbohydrate Polymers 255:117489. doi:10.1016/j.carbpol.2020.117489.
  • Thaker, S., and V. Nagori. 2018. Analysis of fuzzification process in fuzzy expert system. Procedia computer science 132:1308–16. doi:10.1016/j.procs.2018.05.047.
  • Turkdogan-Aydinol, F. I., and K. Yetilmezsoy. 2010. A fuzzy-logic-based model to predict biogas and methane production rates in a pilot-scale mesophilic UASB reactor treating molasses wastewater. Journal of Hazardous Materials 182 (1–3):460–71. doi:10.1016/j.jhazmat.2010.06.054.
  • Umano, M., I. Hatono, and H. Tamura (2002). Fuzzy expert system shells 219–25. 10.1109/tai.1994.346492
  • van Kamp, I., and H. Davies (2008). Environmental noise and mental health: Five year review and future directions. Noise as a Public Health Problem. Proceedings of 9th Congress of the International Commission on the Biological Effects of Noise (ICBEN), Foxwoods, CT, USA, 295–301.
  • Yemam, D. M., B. J. Kim, J. Y. Moon, and C. Yi. 2017. Mechanical properties of epoxy resin mortar with sand washing waste as filler. Materials 10 (3):246. doi:10.3390/ma10030246.