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    Thermoelectric properties of nickel zinc ferrite–polyester

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    Abstract,Acknowledgement.pdf (367.3Kb)
    Introduction.pdf (344.3Kb)
    Literature Review.pdf (360.5Kb)
    Methodology.pdf (1.015Mb)
    Results and Discussion.pdf (495.1Kb)
    Conclusion and Recommendation.pdf (332.3Kb)
    Refference and Appendics.pdf (794.3Kb)
    Date
    2016-05
    Author
    Muhammad Asnawi, Kamaruddin
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    Abstract
    An experiment was done on the nickel zinc ferrite (NiZnFe₂O₄) sample with an addition of polyester at different amount (x=0.0, 0.2, 0.4, 0.6, 0.8 and 1.0) to determine the thermoelectric properties of the respective mixed samples. Usually, ferrite materials have been used as magnetic materials but the NixZnO1-xFe₂O₄ thermoelectric properties is not well discussed and discovered. Seebeck coefficient was used to develop a new device that could have good and efficient thermoelectric characteristic. The results of this experiment is to measure the impact values by using different ratio (x=0.0, 0.2, 0.4, 0.6,0.8 and 1.0) on the properties of NixZnO1-xFe₂O₄ and the mixture ratio with polyester toinvestigate the effect of varies sintering temperature and different sintering atmosphere on the sample's characteristic. NixZnO1-xFe₂O₄ samples were prepared by using conventional solid-state method. A suitable amount of Ni, ZnO and Fe2O₄ powder was mixed and formed into a pellet. Then, they were sintered at 1000C and 1100C. Samples were then characterized by using pcynometer for the density measurement, X-ray diffraction for the phase analysis, and the mechanical properties of the materials were measured by using Vickers microhardness. Then, all the samples were crushed with mortar and mixed with polyester and poured into a mold to get a pellet form samples. Next, the samples were characterized as the previous testing methods. Finally, both of the two types tested sample's results were taken and it’s showed that as the temperature increases, the density also increased. The tested samples also showed the presence of the NixZnO1-xFe₂O₄ phase. So, from the research done, the optimal outcome for the thermoelectric properties were taken out as the best result.
    URI
    http://dspace.unimap.edu.my:80/xmlui/handle/123456789/48082
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