المصدر: | المجلة الجامعة |
---|---|
الناشر: | جامعة الزاوية - مركز البحوث والدراسات العليا |
المؤلف الرئيسي: | Hassine, Nabile (Author) |
مؤلفين آخرين: | Zindah, E. M. (Co-Author) , Jamhour, Hana Abdul Al-Wahhab Ali (Co-Author) |
المجلد/العدد: | مج21, ع3 |
محكمة: | نعم |
الدولة: |
ليبيا |
التاريخ الميلادي: |
2019
|
الشهر: | مايو |
الصفحات: | 31 - 48 |
رقم MD: | 1264385 |
نوع المحتوى: | بحوث ومقالات |
اللغة: | الإنجليزية |
قواعد المعلومات: | EduSearch, EcoLink, IslamicInfo, AraBase, HumanIndex |
مواضيع: | |
رابط المحتوى: |
الناشر لهذه المادة لم يسمح بإتاحتها. |
LEADER | 02676nam a22002777a 4500 | ||
---|---|---|---|
001 | 2017032 | ||
041 | |a eng | ||
044 | |b ليبيا | ||
100 | |9 407686 |a Hassine, Nabile |e Author | ||
245 | |a Measurement of Mechanical Properties of Re-Cycled Waste Refractory Brick | ||
260 | |b جامعة الزاوية - مركز البحوث والدراسات العليا |c 2019 |g مايو | ||
300 | |a 31 - 48 | ||
336 | |a بحوث ومقالات |b Article | ||
520 | |b Misrata Iron and Steel Complex waste brick used in this study was subjected to cleaning and crushing to granules of 30 mm size. The resultant granules were hammer milled to powder particles of an average size of 1 mm and then sieved to give coarse + 0.355 mm waste powder. A high energy ball mill was used to convert this waste powder to nano-crystalline powder with a crystallite size in the range from 45 to 51 mm. The present work involved the preparation of three powder batches with each batch composed of nano–crystalline powder, +0.355 mm waste brick powder, and Sebha Kaolin clay powder of 75 microns particle size. These batches were pressed, dried at a temperature of 110°C, and finally sintered at 1000, 1300, and 1500°C. X – Ray Diffraction (XRD) analysis was used to characterize the refractory waste bricks, waste coarse powder, kaolin clay, and waste nano–powder. The research also involved the measurement of mechanical properties of waste bricks and sintered final products. The obtained results revealed the presence of a molten glassy phase at the sintering temperature of 1500 °C. This had a weakening effect on the mechanical properties and hence limited the maximum working temperature of the produced bricks to 1300°C. The optimum amount of nano-powder component in the powder batches was found to be 30 % as it led to the achievement of the best crushing and flexure strength values for the bricks sintered at 1300°C. | ||
653 | |a الطوب المقاوم للحرارة |a الخواص الميكانيكية |a طحن الحبيبات |a مخلفات الطوب | ||
700 | |9 674075 |a Zindah, E. M. |e Co-Author | ||
700 | |9 551612 |a Jamhour, Hana Abdul Al-Wahhab Ali |e Co-Author | ||
773 | |4 العلوم الإنسانية ، متعددة التخصصات |4 العلوم الاجتماعية ، متعددة التخصصات |6 Humanities, Multidisciplinary |6 Social Sciences, Interdisciplinary |c 009 |e University Bulletin |l 003 |m مج21, ع3 |o 0928 |s المجلة الجامعة |v 021 | ||
856 | |u 0928-021-003-009.pdf | ||
930 | |d n |p y |q n | ||
995 | |a EduSearch | ||
995 | |a EcoLink | ||
995 | |a IslamicInfo | ||
995 | |a AraBase | ||
995 | |a HumanIndex | ||
999 | |c 1264385 |d 1264385 |