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Fabrication of aluminum nitride coatings by electrophoretic deposition: Effect of particle size on deposition and drying behavior

机译:通过电泳沉积制备氮化铝涂层:粒径对沉积和干燥行为的影响

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摘要

Electrophoretic technique was used to deposit micro- and nano-sized aluminum nitride coatings on stainless steel surfaces by using a well-dispersed stable suspension produced by addition of AlN powder plus a small amount of iodine to ethanol. Parabolic regime governed the deposition. Electrophoretic deposition for 240 s at 100 V resulted in formation of a uniformly dense film on the top, but a porous inhomogeneous layer at the bottom. This was attributed to fast deposition of coarse particles and/or agglomerates at large electric fields. After drying, micro-sized particles led to a uniform crack-free interface while nano-particles resulted in fragmented non-cohesive layers. Weight loss measurements revealed higher drying rates for micro-layer as compared to nano-cover. This seemed owing to the larger pore sizes and lower specific surfaces of the former. Stress inducement by lateral drying of small capillaries led to crack initiation from the edges and its propagation across the surfaces. This resulted in fragmentation of the samples due to their delamination. Effect of deposition rate on particles packability was also investigated.
机译:通过使用分散良好的稳定悬浮液(通过向乙醇中添加AlN粉末和少量碘而产生),使用电泳技术在不锈钢表面上沉积了微米级和纳米级的氮化铝涂层。抛物线控制了沉积。在100 V下电泳沉积240 s导致在顶部形成均匀致密的膜,而在底部形成多孔的不均匀层。这归因于在大电场下粗颗粒和/或附聚物的快速沉积。干燥后,微米级颗粒导致均匀的无裂纹界面,而纳米级颗粒导致破碎的非粘性层。重量损失测量表明,与纳米覆盖层相比,微层的干燥速率更高。这似乎是由于前者较大的孔径和较低的比表面积。小毛细血管横向干燥引起的应力导致从边缘开始产生裂纹,并在整个表面上扩展。由于分层,导致样品碎裂。还研究了沉积速率对颗粒堆积性的影响。

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