Investigation on DMA, Fatigue and Creep Behaviour of Rice Husk Ash Biosilica-Prickly Pear Short Fibre-Reinforced Epoxy Resin Composite

被引:0
作者
N. Balaji
J. V. Sai Prasanna Kumar
G. Ramesh
V. Dhinakaran
N. Gobu
T. Maridurai
机构
[1] Saveetha Engineering College,Department of Mechanical Engineering
[2] Vel Tech Rangarajan Dr,Department of Aeronautical Engineering
[3] Sagunthala R&D Institute of Science and Technology,Department of Mechanical Engineering
[4] MEA Engineering College,Department of Mechanical Engineering
[5] Chennai Institute of Technology,Department of Mechanical Engineering
[6] Sri Ganesh College of Engineering and Technology,Department of Mechanical Engineering
[7] Saveetha University,undefined
[8] SIMATS,undefined
来源
Silicon | 2022年 / 14卷
关键词
PMC; Fibre; Particle; DMA; Creep; Fatigue;
D O I
暂无
中图分类号
学科分类号
摘要
High toughness epoxy bio-composites are prepared using prickly pear short fiber and rice husk ash (RHA) biosilica particles for low cost and light weighted engineering applications. The prime objective of this work was to study the effect of RHA biosilica particles addition into the resin at different concentrations on dynamic mechanical, fatigue and creep behaviour of epoxy composites. The biosilica particles were prepared from the rice husk ash source followed by thermo-chemical method. Hand layup method was used to fabricate the composites and subjected to post cure at 120 °C for 12 h. According to the results the composite prepared with 5 vol% RHA biosilica particles showed a highest storage modulus and minimum loss factor, which indicated the positive effect of prickly pear fiber addition with RHA biosilica particle as a reinforcement material. Also, this composite had the lowest stain value of 0.28% for 100 min and over the time it shows upward trend in creep behaviour. Hence, composite shows greater elastic deformation and less viscous deformation. Moreover, the composite fabricated with 3 vol. % biosilica showed better fatigue behaviour with highest life counts of 42,847. These improved dynamic mechanical property and better creep and fatigue behaviour of composite could be useful in various engineering applications that require high load bearing capacity and biodegradability.
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页码:12773 / 12779
页数:6
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共 94 条
  • [11] Arun Prakash VR(2019)An experimental study for different types of natural fiber reinforced composite material Period Eng Nat Sci 7 1698-368
  • [12] Syduzzaman M(2020)Potential of alkali treated cornhusk film as reinforcement for epoxy laminate composites Cellulose 27 2555-356
  • [13] Al Faruque MA(2021)Opuntia Fiber and Its Potential to Obtain Sustainable Materials in the Composites Field: A Review J Nat Fibers 00 1-502
  • [14] Bilisik K(2021)Hand-made paper obtained by green procedure of cladode waste of Opuntia ficus indica (L.) Mill. from Sicily Nat Prod Res 35 359-326
  • [15] Naebe M(2018)Green process for fibrous networks extraction from Opuntia (Cactaceae): Morphological design, thermal and mechanical studies Ind Crops Prod 126 347-217
  • [16] Olhan S(2022)Mechanical, dielectric, and hydrophobicity behavior of coconut shell biochar toughened Caryota urens natural fiber reinforced epoxy composite Polym Compos 43 493-4430
  • [17] Khatkar V(2019)Fabrication and characterization of echinoidea spike particles and kenaf natural fibre-reinforced Azadirachta-Indica blended epoxy multi-hybrid bio composite Compos Part A Appl Sci Manuf 118 317-2012
  • [18] Behera BK(2019)Fabrication and characterization of silanized echinoidea fillers and kenaf fibre-reinforced Azadirachta-indica blended epoxy multi-hybrid biocomposite Int J Plast Technol 23 207-349
  • [19] Antony Vincent V(2021)Effect of Silane-Treated Rice Husk Derived Biosilica on Visco-Elastic, Thermal Conductivity and Hydrophobicity Behavior of Epoxy Biocomposite Coating for Air-Duct Application SILICON 13 4421-624
  • [20] Kailasanathan C(2020)Effect of silica fume and rice husk silica in bio-epoxy composites Mater Today Proc 33 2008-138