Journal of Minerals and Materials Characterization and Engineering

Volume 9, Issue 2 (March 2021)

ISSN Print: 2327-4077   ISSN Online: 2327-4085

Google-based Impact Factor: 1.55  Citations  

Implementation and Evaluation of Certain Properties of a Polymer Matrix Composite Material Reinforced by Fibrous Residues of Saccharum officinarum in View of an Applicability Orientation

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DOI: 10.4236/jmmce.2021.92015    767 Downloads   1,656 Views  Citations

ABSTRACT

This study examines the implementation and characterization of a polymer matrix composite material reinforced by sugarcane residues. The aim of the study is to enhance the abundantly produced sugarcane bagasse in the form of residues in the processing plants of said sugar cane. The composite material developed takes into account the size parameters and mass load rate of the reinforcement, the variations of which are between 2.5 mm and 4 mm respectively for the first parameter and 10% to 25% for the second. The load on the test tube during the test has a random orientation. The composite is polyester matrix. The cold compression moulding technique was used in the production of the various samples. Physical properties such as the rate of water absorption and the density of the composite are assessed. The three-point bending tests are carried out with the aim of inducing Young’s modulus from the elaborate samples. Analysis of physical properties shows that water absorption increases with the rate of residue load. The average water absorption rate of bagasse fibres is estimated at 8% for the 2.5 mm fiber size and 12% for the 4 mm fiber size for all composites. Mechanical characterization by bending tests reveals a fragile behavior of the samples tested. Young’s modulus decreases when the load rate of fibrous residues increases regardless of the size of the fibers.

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Ndengue, M. , Ayissi, M. , Noah, P. , Ebanda, F. and Ateba, A. (2021) Implementation and Evaluation of Certain Properties of a Polymer Matrix Composite Material Reinforced by Fibrous Residues of Saccharum officinarum in View of an Applicability Orientation. Journal of Minerals and Materials Characterization and Engineering, 9, 206-225. doi: 10.4236/jmmce.2021.92015.

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