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首页> 外文期刊>Journal of the European Ceramic Society >Improvement of TiN nanoparticles EPD inducing steric stabilization in non-aqueous suspensions
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Improvement of TiN nanoparticles EPD inducing steric stabilization in non-aqueous suspensions

机译:TiN纳米粒子EPD的改进在非水悬浮液中诱导空间稳定

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In this work, the process parameters involved in the electrophoretic deposition (EPD) to obtain thin TiN films was studied and optimised. The stability of commercial TiN nanopowder in isopropyl alcohol adding a cationic polymer (polyethylenimine) as dispersant, with different molecular weights, was investigated to determine the kinetics of the deposition and to reach the most efficient EPD process. Cathodic EPD was performed over electro-polished stainless steel substrates. It was found that the provided dispersion when the PEI with the highest molecular weight was added to the suspension, leads to the best deposition behaviour for short times. New flocculation phenomena were described which affect to the sticking factor, and thus to the evolution of the EPD kinetics. As a result of the designed stabilization system, a reliable and versatile EPD method to produce well consolidated nano-TiN coatings at 1200 degrees C in vacuum atmosphere was described. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究并优化了电泳沉积(EPD)以获得TiN薄膜的工艺参数。研究了商业化的TiN纳米粉在异丙醇中添加不同分子量的阳离子聚合物(聚乙烯亚胺)作为分散剂的稳定性,以确定沉积动力学并实现了最有效的EPD工艺。在电抛光的不锈钢基材上进行阴极EPD。已经发现,当将具有最高分子量的PEI添加到悬浮液中时,所提供的分散体导致短时间的最佳沉积行为。描述了新的絮凝现象,该现象会影响粘附因子,进而影响EPD动力学的演变。由于设计了稳定系统,因此描述了一种可靠且用途广泛的EPD方法,该方法可在真空环境中于1200摄氏度下生产牢固固结的纳米TiN涂层。 (C)2015 Elsevier Ltd.保留所有权利。

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