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Synthesis of fine Ca-doped BaTiO3 powders by solid-state reaction method—Part II: Rheological study on milling

机译:固相反应法合成Ca掺杂BaTiO3 微粉—第二部分:研磨的流变学研究

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The observations and explanations for the rheological behavior associated with the slurry processing for Ca-doped BaTiO3 synthesis are included in this second part of our report. The optimum slurry conditions containing three ceramic constituents were decided by using a mixture rule after the determination of each constituent’s optimum condition. This approach was quite applicable based on the reproducibility test in determining the parameters such as water to ceramic ratio and dispersant content. In addition, a small amount of NH4OH addition without any further addition of liquid medium or dispersant was very effective in lowering the slurry viscosity when it was too high to operate the mill in our system. The optimum slurry pH range of 8.5–10.0 was suggested for high energy milling based on the experimental results. Possible models to explain this rheological behavior are also presented in terms of electrosteric mechanism and ionic exchange of dispersant molecule.
机译:我们在报告的第二部分中包含了与浆料掺杂有关的Ca掺杂BaTiO3 合成相关的流变行为的观察和解释。确定每种成分的最佳条件后,使用混合规则确定包含三种陶瓷成分的最佳浆料条件。基于可重复性测试,该方法非常适用于确定诸如水与陶瓷之比和分散剂含量之类的参数。另外,当在我们的系统中操作太高时,少量的NH 4 OH的添加而无需进一步添加液体介质或分散剂在降低浆料粘度方面非常有效。根据实验结果,建议高能研磨的最佳浆料pH范围为8.5-10.0。还根据电立体机理和分散剂分子的离子交换,提供了解释这种流变行为的可能模型。

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