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首页> 外文期刊>Journal of the European Ceramic Society >Preventing hydrolysis of BaTiO3 powders during aqueous processing and of bulk ceramics after sintering
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Preventing hydrolysis of BaTiO3 powders during aqueous processing and of bulk ceramics after sintering

机译:防止在水处理过程中BaTiO3粉末和烧结后大块陶瓷的水解

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摘要

This present article addresses the reactive behaviour of barium titanate (BaTiO3, hereafter referred to as BT) with water either in powder form or as bulk ceramics. Chemisorbing a suitable phosphate-based protective agent at the surface of BT particles prevented hydrolysis reactions and made aqueous processing of BT a safe and viable route. Highly concentrated (50 vol.%) fluid and long term stable suspensions could be easily prepared from surface treated BT particles, contrasting with the poor stability and high viscosity of slurries derived from the as received powders. For aqueous suspensions, the course of hydrolysis reactions was monitored through changes in pH and concentrations of leached ionic species along ageing time. For bulk ceramics, the extent of hydrolysis reactions was assessed through the microstructural changes occurred at polished surfaces without and with surface treatment, which have been kept in contact with water for a certain time period. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文讨论了钛酸钡(BaTiO3,以下称为BT)与水的粉末或块状陶瓷的反应行为。在BT颗粒表面化学吸附合适的磷酸酯基保护剂可防止水解反应,并使BT的水性加工成为安全可行的途径。用经表面处理的BT颗粒可以很容易地制备出高浓度(50%(体积))的液体和长期稳定的悬浮液,这与原粉中的浆料稳定性差和粘度高相反。对于水性悬浮液,通过老化过程中pH值和浸出离子种类的浓度变化来监测水解反应的过程。对于块状陶瓷,水解反应的程度是通过在未经和经过表面处理的抛光表面上发生的微观结构变化来评估的,这些表面已与水保持一定的接触时间。 (C)2015 Elsevier Ltd.保留所有权利。

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