(中南大學(xué) 冶金科學(xué)與工程學(xué)院, 長沙 410083)
摘 要: 以高溫固相合成法合成的NiFe2O4陶瓷粉體和金屬Cu粉為原料, 采用冷壓-燒結(jié)法制備了Cu含量在5%~20%之間的NiFe2O4-Cu金屬陶瓷惰性陽極,研究了燒結(jié)氣氛和燒結(jié)溫度對其物相組成、 微觀形貌和基本物理性能的影響。 結(jié)果表明: 通過控制燒結(jié)氣氛中氧分壓在NiO和Cu2O的離解反應(yīng)平衡氧分壓之間, 可以制備出具有目標(biāo)物相組成的NiFe2O4-Cu金屬陶瓷; 燒結(jié)溫度和保溫時(shí)間對所得NiFe2O4-Cu金屬陶瓷的相對密度有較大影響; NiFe2O4和Cu之間的不潤濕性限制了NiFe2O4-Cu金屬陶瓷燒結(jié)溫度的提高和保溫時(shí)間的延長, 在保證金屬相分布均勻且不溢出的前提下, 所制備的NiFe2O4-Cu金屬陶瓷的相對密度較小; 金屬相Cu含量越高, NiFe2O4-Cu金屬陶瓷最高燒結(jié)溫度越低、 最長保溫時(shí)間越短, 從而相對密度越低、 孔隙率越高; 除了盡量降低金屬相含量外, 還可向NiFe2O4-Cu金屬陶瓷中添加其他金屬如Ni和Co等, 以改善陶瓷相與金屬相之間的潤濕性, 以提高燒結(jié)溫度, 進(jìn)而提高其相對密度和耐腐蝕性能。
關(guān)鍵字: NiFe2O4-Cu金屬陶瓷; 惰性陽極; 制備工藝; 鋁電解
WANG Jian-feng, LI Jie, LIU Ye-xiang
(School of Metallurgy Science and Engineering,
Central South University,Changsha 410083, China)
Abstract:NiFe2O4-Cu cermet inert anodes containing 5%-20% Cu were prepared by cold pressing-sintering NiFe2O4 ceramic powder synthesized by solid state reaction and Cu metal powder. The effects of sintering atmosphere and temperature on the phase compositions, microstructure and morphology, physical properties of the cermet products were studied. The results show that the NiFe2O4-Cu cermet with the desired phase composition can be obtained by controlling the partial oxygen pressure between the decomposition oxygen pressures of NiO and Cu2O; sintering temperature and holding time are vital for the relative density of the NiFe2O4-Cu cermets; the improvement of sintering temperature and prolonging of holding time are limited due to the low melting point and poor wetting characteristics of copper towards the NiFe2O4 phases, thus the relative density of NiFe2O4-Cu cermets obtained is less to assure its compositions uniformity and without metallic protrusion on the surface; the more the metal content of NiFe2O4-Cu cermet, the lower the maximum sintering temperature and the shorter the longest holding time, so its relative density is lower and its apparent porosity is higher. Besides decreasing the metal content, other metals with better wetting characteristics and higher melting point, such as nickel and cobalt, may be added to the NiFe2O4-Cu cermets to increase its sintering temperature, relative density and resistance.
Key words: NiFe2O4-Cu cermet; inert anode; preparation technics; aluminium electrolysis


