Densification and grain growth of microwave-sintered yttrium iron garnet
The presences of unwanted phases such as yttrium iron perovskite (YIP) in yttrium iron garnet (YIG) ceramics have limiting the utilization of YIG in the wireless communication domain. The densification and grain growth of yttrium iron garnet (YIG) were systematically studied to produce highly densif...
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my.utm.891442021-01-26T08:48:02Z http://eprints.utm.my/id/eprint/89144/ Densification and grain growth of microwave-sintered yttrium iron garnet Ashri, M. F. Rejab, N. A. Ahmad, Z. A. Abdullah, N. S. Badarulzaman, N. A. Mat, R. A. A. R. Ali, W. F. F. W. T Technology (General) The presences of unwanted phases such as yttrium iron perovskite (YIP) in yttrium iron garnet (YIG) ceramics have limiting the utilization of YIG in the wireless communication domain. The densification and grain growth of yttrium iron garnet (YIG) were systematically studied to produce highly densified YIG via microwave sintering. The phase present in the sample (to determine the purity) was characterized by using XRD meanwhile VPSEM was used to observe the increment of average grain size either by varying temperature or time. The highest grain size obtained when the sample was being sintered at 1450 °C for 2 hours which is 15.7μm. The highest material density obtained using Archimedes principle was 97.9% of that of theoretical density (ρ theory ). Therefore, the results suggested that a highly densified YIG (ρ theory of ∼98%) could be successfully obtained by sintering the sample for 8 hours at 1420 °C. 2019 Conference or Workshop Item PeerReviewed Ashri, M. F. and Rejab, N. A. and Ahmad, Z. A. and Abdullah, N. S. and Badarulzaman, N. A. and Mat, R. A. A. R. and Ali, W. F. F. W. (2019) Densification and grain growth of microwave-sintered yttrium iron garnet. In: International Conference on X-Rays and Related Techniques in Research and Industry 2018, ICXRI 2018, 18-19 Aug 2018, Grand Riverview Hotel Kota Bharu, Kelantan, Malaysia. https://dx.doi.org/10.1063/1.5089406 |
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T Technology (General) Ashri, M. F. Rejab, N. A. Ahmad, Z. A. Abdullah, N. S. Badarulzaman, N. A. Mat, R. A. A. R. Ali, W. F. F. W. Densification and grain growth of microwave-sintered yttrium iron garnet |
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The presences of unwanted phases such as yttrium iron perovskite (YIP) in yttrium iron garnet (YIG) ceramics have limiting the utilization of YIG in the wireless communication domain. The densification and grain growth of yttrium iron garnet (YIG) were systematically studied to produce highly densified YIG via microwave sintering. The phase present in the sample (to determine the purity) was characterized by using XRD meanwhile VPSEM was used to observe the increment of average grain size either by varying temperature or time. The highest grain size obtained when the sample was being sintered at 1450 °C for 2 hours which is 15.7μm. The highest material density obtained using Archimedes principle was 97.9% of that of theoretical density (ρ theory ). Therefore, the results suggested that a highly densified YIG (ρ theory of ∼98%) could be successfully obtained by sintering the sample for 8 hours at 1420 °C. |
format |
Conference or Workshop Item |
author |
Ashri, M. F. Rejab, N. A. Ahmad, Z. A. Abdullah, N. S. Badarulzaman, N. A. Mat, R. A. A. R. Ali, W. F. F. W. |
author_facet |
Ashri, M. F. Rejab, N. A. Ahmad, Z. A. Abdullah, N. S. Badarulzaman, N. A. Mat, R. A. A. R. Ali, W. F. F. W. |
author_sort |
Ashri, M. F. |
title |
Densification and grain growth of microwave-sintered yttrium iron garnet |
title_short |
Densification and grain growth of microwave-sintered yttrium iron garnet |
title_full |
Densification and grain growth of microwave-sintered yttrium iron garnet |
title_fullStr |
Densification and grain growth of microwave-sintered yttrium iron garnet |
title_full_unstemmed |
Densification and grain growth of microwave-sintered yttrium iron garnet |
title_sort |
densification and grain growth of microwave-sintered yttrium iron garnet |
publishDate |
2019 |
url |
http://eprints.utm.my/id/eprint/89144/ https://dx.doi.org/10.1063/1.5089406 |
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1690370976828620800 |
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13.251813 |