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Technology of Iron Carbide Synthesis 被引量:8
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作者 m.bahgat 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第3期423-432,共10页
铁碳化物是很有希望的冶金产品和罐头是使用的 forsteelmaking 过程,在它作为一种选择玩的地方,有重要经济的原料有利。另外,它有许多另外的应用,例如催化剂,磁铁,传感器。现在的评论调查铁碳化物的不同性质和使用。为铁碳化物合... 铁碳化物是很有希望的冶金产品和罐头是使用的 forsteelmaking 过程,在它作为一种选择玩的地方,有重要经济的原料有利。另外,它有许多另外的应用,例如催化剂,磁铁,传感器。现在的评论调查铁碳化物的不同性质和使用。为铁碳化物合成(气体的渗碳(作用) , mechanochemical 合成,激光热分解,血浆热分解,化学蒸汽免职和离子培植) 的商业生产和不同变化被考察。另外,象煤气的作文,原料,温度,反应时间,催化剂存在和硫增加一样的渗碳(作用) 过程上的不同因素的效果被显示。 展开更多
关键词 碳化铁 渗碳体 冶金技术 炼钢法
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Influence of Zn^(2+)or Cu^(2+) on Reduction and Recalcination Behavior of Fe_2TiO_5 被引量:1
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作者 m.bahgat M.H.Khedr H.S.Abdelmaksoud 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第5期697-702,共6页
Fe2O3, TiO2, CuO and ZnO powders were mixed according to the formula of (1-x)TiO2 xCuO-Fe2O3 or (1-x)TiO2 xZnO-Fe2O3 (x=0, 0.2 0.4, 0.6, 0.8, 1), and well ball-milled with H2O for 3 h to ensure homogeneity of th... Fe2O3, TiO2, CuO and ZnO powders were mixed according to the formula of (1-x)TiO2 xCuO-Fe2O3 or (1-x)TiO2 xZnO-Fe2O3 (x=0, 0.2 0.4, 0.6, 0.8, 1), and well ball-milled with H2O for 3 h to ensure homogeneity of the powdered solids, then fired at 1200℃ for 4 h. The fired samples were reduced at 500℃ with hydrogen gas. The reduced samples were subjected to recalcination at 500℃ in CO2 atmosphere. Both of fired, reduced and calcined samples were characterized by X-ray diffraction, vibrating sample magnetometry, reflected light microscopy and scanning electron microscopy. Different phases were formed after firing of Cu^+2 or Zn^2+ substituted Fe2TiO5. Magnetization (Bs) of the formed phases after firing are very low corresponding to diluted magnetic semiconductors (DMS) and increases with increasing the substituted cations (Cu^+2 or Zn^2+). The reduction of the fired samples enhanced the Bs values whereas the reducibility increases with increasing the Cu^+2 or Zn^2+ content. Samples show different tendency toward CO2 decomposition which is very important for environmental minimization for CO2. 展开更多
关键词 Nanosized ferrite TITANATE REDUCTION Magnetic properties Reduction-recalcin-ation CO2 decomposition
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Formation of AlN from Secondary Al Resources 被引量:1
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作者 m.bahgat M.Radwan F.E.Farghaly 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第5期621-624,共4页
Synthesis of AlN by NH4Cl-assisted direct nitridation of secondary Al resources was studied. Aluminum alloy scrap contained Mg and Zn element was used. Milled Al scrap (-1 mm) was mixed with NH4Cl and heated at 1000... Synthesis of AlN by NH4Cl-assisted direct nitridation of secondary Al resources was studied. Aluminum alloy scrap contained Mg and Zn element was used. Milled Al scrap (-1 mm) was mixed with NH4Cl and heated at 1000℃ for 1 h in presence of 1 L/min N2 flow gas. The nitrided product was evaluated by X-ray diffraction semi-quantitative analysis and scanning electron microscopy (SEM). Aluminium nitride of 90.5% concentration was obtained with a hexagonal crystalline form. AlN is mostly formed in nano-whisker morphology (50~150 nm) which is homogenously distributed. 展开更多
关键词 ALN Direct nitridation NANOWHISKER Secondary resources
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