Rafiq, Hafidz Ainnur (2026) Analisis Pengaruh Penambahan MgO Dan Suhu Sintering Terhadap Perubahan Fasa Dan Mikrostruktur Pada Castable Alumina Komersial. Other thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Castable alumina komersial merupakan material refraktori yang dapat dimodifikasi dengan penambahan MgO untuk mendorong pembentukan magnesium aluminate spinel (MgAl₂O₄). Penelitian ini bertujuan menganalisis pengaruh penambahan MgO dan suhu sintering terhadap perkembangan fasa dan mikrostruktur castable alumina komersial sebelum dan sesudah karbonasi. MgO ditambahkan sebesar 2%, 4%, dan 6% terhadap massa castable. Sampel menjalani curing selama 24 jam, pengeringan pada 110°C selama 24 jam, serta sintering pada 700°C dan 1200°C selama 2 jam. Karbonasi dilakukan pada 350°C selama 2 jam dengan laju alir CO₂ sebesar 50–70 mL/menit. Karakterisasi dilakukan menggunakan XRF, XRD, SEM–EDS, dan TGA. Hasil XRF menunjukkan bahwa material didominasi oleh Al₂O₃ sebesar 61,84%, disertai SiO₂ sebesar 15,40%, MgO sebesar 13,94%, dan CaO sebesar 4,69%. Hasil XRD menunjukkan bahwa α-Al₂O₃ tetap menjadi fasa dominan, sedangkan MgO dan MgAl₂O₄ teridentifikasi pada seluruh variasi. Kecocokan puncak MgAl₂O₄ terlihat lebih jelas pada suhu 1200°C. Setelah karbonasi, terdapat indikasi MgCO₃ terutama pada 2θ sekitar 32,5° dan 53,6°–53,8°. Mikrograf SEM sampel MgO 4% menunjukkan morfologi yang lebih partikulat pada 700°C dan matriks yang lebih terhubung pada beberapa area pada 1200°C. EDS mendeteksi Mg dan C secara lokal pada kedua sampel. Pada rentang TGA 336–500°C, sampel 700°C menunjukkan kehilangan massa semu sebesar 0,2139% atau 2,139 mg/g, sedangkan sampel 1200°C sebesar 0,00683% atau 0,0683 mg/g. Hasil penelitian menunjukkan bahwa peningkatan suhu sintering mendorong perkembangan MgAl₂O₄, tetapi menurunkan respons termal pascakarbonasi dari komponen magnesium yang tersisa.
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Commercial alumina castable is a refractory material that can be modified by MgO addition to promote the formation of magnesium aluminate spinel (MgAl₂O₄). This study investigated the effects of MgO addition and sintering temperature on the phase evolution and microstructure of commercial alumina castable before and after carbonation. MgO was added at 2%, 4%, and 6% of the castable mass. The specimens were cured for 24 h, dried at 110°C for 24 h, and sintered at 700°C and 1200°C for 2 h. Carbonation was conducted at 350°C for 2 h under a continuous CO₂ flow rate of 50–70 mL/min. The samples were characterized using XRF, XRD, SEM–EDS, and TGA. XRF analysis showed that the material mainly contained 61.84% Al₂O₃, 15.40% SiO₂, 13.94% MgO, and 4.69% CaO. XRD results indicated that α-Al₂O₃ remained the dominant phase, while MgO and MgAl₂O₄ were identified in all sample variations. MgAl₂O₄ peak matching was more pronounced at 1200°C. After carbonation, MgCO₃ was indicated mainly by peak matching at approximately 2θ = 32.5° and 53.6°–53.8°. SEM micrographs of the 4% MgO samples showed a more particulate morphology at 700°C and a more interconnected matrix in several regions at 1200°C. EDS locally detected Mg and C in both samples. Within the TGA range of 336–500°C, the 700°C sample exhibited an apparent mass loss of 0.2139%, equivalent to 2.139 mg/g, whereas the 1200°C sample showed 0.00683%, equivalent to 0.0683 mg/g. The results indicate that increasing the sintering temperature promoted MgAl₂O₄ development but reduced the post-carbonation thermal response of the remaining magnesium-containing components.
| Item Type: | Thesis (Other) |
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| Uncontrolled Keywords: | castable alumina, magnesium oksida, MgAl₂O₄, karbonasi, mikrostruktur, TGA, alumina castable, magnesium oxide, carbonation, microstructure |
| Subjects: | T Technology > TS Manufactures T Technology > TS Manufactures > TS161 Materials management. |
| Divisions: | Faculty of Industrial Technology and Systems Engineering (INDSYS) > Material & Metallurgical Engineering > 28201-(S1) Undergraduate Thesis |
| Depositing User: | Hafidz Ainnur Rafiq |
| Date Deposited: | 24 Jul 2026 15:41 |
| Last Modified: | 24 Jul 2026 15:41 |
| URI: | http://repository.its.ac.id/id/eprint/137469 |
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