Effect of MgO and NiO on the sintering of slip cast alumina

N.A. Haroun
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引用次数: 1

Abstract

Similar to pressed compacts, slip cast alumina can be sintered to near theoretical density if minor additions of MgO or NiO are made. Sintering kinetics of alumina were analyzed in terms of the Wong and Pask model which was shown to give the more realistic representation of powder compacts. The rate controlling step with and without additions is the migration from the neck along the pore surface rather than diffusion along the grain boundaries to the neck. Both MgO and NiO retard mass transport probably due to changes in surface energy. However, they allow sintering to near complete densification. Although grain growth limitation via second phase inclusions or solute segregation is expected, the final density improvement was shown to result from modifying pore kinetics such that the pores remain attached to the grain boundaries during grain growth until complete densification.

MgO和NiO对滑铸氧化铝烧结的影响
与压坯类似,如果少量添加氧化镁或NiO,滑铸氧化铝可以烧结到接近理论密度。根据Wong和Pask模型分析了氧化铝的烧结动力学,该模型显示出粉末压实的更真实的表示。有和没有添加物的速率控制步骤是从孔颈沿孔隙表面迁移,而不是沿晶界扩散到孔颈。MgO和NiO延缓质量输运可能是由于表面能的变化。然而,它们允许烧结到接近完全致密化。虽然第二相夹杂物或溶质偏析会限制晶粒的生长,但最终的密度提高是通过改变孔隙动力学来实现的,这样在晶粒生长过程中,孔隙仍然附着在晶界上,直到完全致密化。
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