2019
DOI: 10.4236/msa.2019.101008
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The Application of a Representative Volume Element (RVE) Model for the Prediction of Rice Husk Particulate-Filled Polymer Composite Properties

Abstract: In this study, a numerical representative volume element (RVE) model was used to predict the mechanical properties of a Rice Husk Particulate (RHP)-Epoxy composite for use as an alternative material in non-critical applications. Seven different analytical models Counto, Ishai-Cohen, Halpin-Tsai, Nielsen, Nicolais, Modified Nicolais and Pukanszky were used as comparison tools for the numerical model. RHP-Epoxy biocomposite samples were fabricated with 0%, 10% and 30% RHP volume percentage and the experimental r… Show more

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Cited by 5 publications
(4 citation statements)
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References 46 publications
(52 reference statements)
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“…For spherical filler with no adhesion to polymer matrix, the value of first constant has been found equal to 1.21. The second constant is equal to 1 if the material fails by planar fracture and 2/3 if the failure is by random fracture [23]. Moreover, the tensile modulus (GPa) can also be theoretically calculated using Ahmed and Jones equation [18].…”
Section: Mechanical Propertiesmentioning
confidence: 99%
“…For spherical filler with no adhesion to polymer matrix, the value of first constant has been found equal to 1.21. The second constant is equal to 1 if the material fails by planar fracture and 2/3 if the failure is by random fracture [23]. Moreover, the tensile modulus (GPa) can also be theoretically calculated using Ahmed and Jones equation [18].…”
Section: Mechanical Propertiesmentioning
confidence: 99%
“…It comprises a unit cell that repeats and captures the complex shape as well as the interfacial bonding between the two nanofiber mats. The RVE model was used to forecast the elastic modulus, an important mechanical parameter that influences the stiffness of the material [30].…”
Section: Introductionmentioning
confidence: 99%
“…They are also renewable, possess acceptable specific properties, have relatively high stiffness and strength, and are known not to cause skin irritations when it comes in contact with the human body. The versatility of polymer composites and the constant rise of their usage has changed the course of research toward the development of alternative materials capable of addressing the environmental concern associated with them [3]. Adequate knowledge of the physical and thermo-mechanical behaviour of these natural fibres reinforced polymer composites will enable engineers to come up with the best designs for different engineering structures, and at a considerable cost.…”
Section: Introductionmentioning
confidence: 99%