Eggshell nanoparticle reinforced recycled low-density polyethylene: A new material for automobile application

被引:14
作者
Bello S.A. [1 ]
Raji N.K. [2 ]
Kolawole M.Y. [3 ]
Adebayo M.K. [3 ]
Adebisi J.A. [4 ]
Okunola K.A. [1 ]
AbdulSalaam M.O. [1 ]
机构
[1] Department of Materials Science and Engineering, Kwara State University, Malete
[2] Department of Metallurgical Engineering, Yaba College of Technology, Lagos
[3] Department of Mechanical Engineering, Kwara State University, Malete
[4] Department of Materials and Metallurgical Engineering, University of Ilorin, Ilorin
关键词
Bumper fascia; Eggshell; Properties; RLDPE;
D O I
10.1016/j.jksues.2021.04.008
中图分类号
学科分类号
摘要
Waste from low-density polyethylene products after lifespan accounts for 70% of solid waste in most dumpsites, contributing to environmental impacts. Eggshell foul smells are a threat to human and animal health. Before this study, there was no research documentation on transforming both wastes into green composites for engineering applications. This work developed composites using recycled low-density polyethylene (RLDPE) and eggshell Nanoparticles. They were evaluated structurally and mechanically. Straining, which affirms an improvement in the load-bearing capacity of the RLDPE due to the incorporation of eggshell Nanoparticles, was established by the composite XRD peak broadness. Structural integrities of the composites were confirmed with SEM. Maximum tensile strength was noted at 10% eggshell Nanoparticle additions to the RLDPE, equal to a 68% increase. About 52 and 19% enhancements in respective flexural strength and hardness value with a 0.85% reduction in impact energy were noted at 12% eggshell Nanoparticle additions. The probability value, 0.0481 <0.05 established the significance of the mono-variate regression model to estimate the tensile strength of RLDPE/eggshell Nanoparticle composites, and the model has 92.7% confidence. A bumper fascia prototype was fabricated from RLDPE/10% eggshell Nanoparticle composite possessing 10.64 Nmm−2 tensile strength, 21.964 Nmm−2 flexural strength, 21.69 J impact energy, and 59 VHN hardness value using sheet forming technique. Therefore, future usage of the developed RLDPE/10% eggshell Nanoparticle composite is established. © 2021 The Authors
引用
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页码:406 / 414
页数:8
相关论文
共 31 条
  • [1] Abdulrahman A.S., Haruna V.N., Characterization of recycled low density polyethylene and eggshell particulate composite (Rldpe/Esp), Int. J. Curr. Res., 7, 4, pp. 15010-15015, (2015)
  • [2] Agunsoye J.O., Aigbodion V.S., Bagasse filled recycled polyethylene bio-composites: Morphological and mechanical properties study, Results Phys., 3, pp. 187-194, (2013)
  • [3] Agunsoye J.O., Bello S.A., Adetola L.O., Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites, J. King Saud Univ. – Eng. Sci., 31, 1, pp. 70-77, (2019)
  • [4] ASTM D256-10(2018), Standard Test Methods for Determining the Izod Pendulum Impact Resistance of Plastics, (2018)
  • [5] ASTM D638-14, Standard Test Method for Tensile Properties of Plastics, (2014)
  • [6] ASTM D7264/D7264M-15, Standard Test Method for Flexural Properties of Polymer Matrix Composite Materials, (2015)
  • [7] Atuanya C.U., Ibhadode A.O.A., Igboanugo A.C., Potential of using recycled low-density polyethylene in wood composites board, Afr. J. Environ. Sci. Technol., 5, 5, pp. 389-396, (2011)
  • [8] Atuanya C.U., Aigbodion V.S., Nwigbo S.C., Experimental study of the thermal and wear properties of recycled polyethylene/breadfruit seed hull ash particulate composites, Mater. Des., 53, pp. 65-73, (2014)
  • [9] Atuanya C.U., Edokpia R.O., Aigbodion V.S., The physio-mechanical properties of recycled low density polyethylene (RLDPE)/bean pod ash particulate composites, Results Phys., 4, pp. 88-95, (2014)
  • [10] Belingardi G., Beyene A.T., Koricho E.G., Martorana B., 12 - Lightweight solutions for vehicle frontal bumper: Crash design and manufacturing issues, Dynamic Response and Failure of Composite Materials and Structures, pp. 365-393, (2017)