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Effect of Additives on Stability of Alumina—Waste Alumina Suspension for Slip Casting: Optimization Using Box-Behnken Design

机译:添加剂对滑模铸造用氧化铝-废氧化铝悬浮液稳定性的影响:采用Box-Behnken设计的优化

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摘要

The green machining of alumina (Al2O3) green bodies generates a certain amount of waste alumina powder. Waste alumina ceramic powder should be disposed of as non-hazardous waste in a legally compliant manner. The influence of additives on the stability of 70 wt.% (≈40 vol.%) alumina—waste alumina water-based suspension was investigated in the presented research. A Box-Behnken three-factor response surface design was used for the preparation of stable highly-concentrated suspensions with the addition of three additives. The optimal amount of each additive was selected according to the obtained results of minimal apparent viscosity: 0.05 wt.% Tiron as dispersant, 0.1 wt.% poly (vinyl alcohol) as binder and 0.2 wt.% magnesium aluminate spinel as abnormal grain growth inhibitor. The analysis of variance was used to identify the contribution of each additive. The zeta potential and sedimentations tests were performed to confirm the suspension stability measurements at different pH values. Alumina particles were optimally dispersed at pH values between 8 and 11. According to the results, the investigated composition of 20 wt.% waste alumina powder (weight content, dry alumina powder), with the addition of optimal amounts of additives, shows a possible application in the production of ceramics by slip casting.
机译:氧化铝(Al2O3)生坯的生坯加工会产生一定量的废氧化铝粉。废弃的氧化铝陶瓷粉末应作为非危险废物以合法方式处置。在本研究中,研究了添加剂对70 wt。%(≈40 vol。%)氧化铝(废氧化铝水基悬浮液)稳定性的影响。 Box-Behnken三因素响应表面设计用于添加三种添加剂来制备稳定的高浓度悬浮液。根据获得的最小表观粘度的结果选择每种添加剂的最佳量:0.05重量%的Tiron作为分散剂,0.1重量%的聚乙烯醇作为粘合剂和0.2重量%的铝酸镁尖晶石作为异常晶粒长大抑制剂。方差分析用于确定每种添加剂的作用。进行ζ电势和沉降测试以确认在不同pH值下的悬浮液稳定性测量。氧化铝颗粒在8到11的pH值下最佳分散。根据结果,所研究的20重量%废氧化铝粉(重量含量,干氧化铝粉)的组成,加上最佳量的添加剂,表明可能应用在通过压铸生产陶瓷中。

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