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The influence of pH on particle packing in YSZ coatings electrophoretically deposited from a non-aqueous suspension

机译:pH对非水悬浮液电泳沉积的YSZ涂层中颗粒堆积的影响

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摘要

Yttria stabilized zirconia (YSZ) coatings were produced from a YSZ suspension in acetylacetone (ACAC) using electrophoretic deposition (EPD) and then sintered with substrate constraint at 1200 and 1300 °C. Before EPD, the operational pH of the suspension was adjusted by addition of acetic acid or triethanolamine (TEA) base. The effect of suspension pH on the deposition of EPD coatings was studied with respect to the suspension stability, coating density and microstructure. Results showed that the zeta potential had a high positive value on both sides of the iso-electric point (PEP). This probably resulted from the adsorption of TEA, detected by Fourier transform infrared spectroscopy. Three alkalies with different molecular structures were compared and the effect of their molecule length on the interparticle repulsion was discussed. Based on this, particle interactions were estimated for different pH suspensions. The reduced particle coagulation increased the packing density of the EPD coatings from 38% at pH 7.4 to 53% at pH 8.4. Therefore, subsequent sintering of coatings was promoted. The sinterability was evaluated by micro-hardness and microstructure. After sintering at 1200 °C, coatings made in pH 8.4 suspensions obtained a hardness of 786 MPa and had fewer big pores than coatings fabricated in pH 7.4 suspensions that had a hardness of 457 MPa.
机译:使用电泳沉积(EPD)由YSZ在乙酰丙酮(ACAC)中的YSZ悬浮液生产氧化钇稳定的氧化锆(YSZ)涂层,然后在1200和1300°C的条件下烧结。在EPD之前,通过添加乙酸或三乙醇胺(TEA)碱来调节悬浮液的工作pH。从悬浮液的稳定性,涂层密度和微观结构方面研究了悬浮液pH值对EPD涂层沉积的影响。结果表明,ζ电势在等电点(PEP)的两侧均具有较高的正值。这可能是由于傅立叶变换红外光谱法检测到的TEA吸附所致。比较了三种具有不同分子结构的碱,并讨论了它们的分子长度对粒子间排斥的影响。基于此,估计了不同pH悬浮液的颗粒相互作用。减少的颗粒凝结将EPD涂层的堆积密度从pH 7.4的38%增加到pH 8.4的53%。因此,促进了涂层的后续烧结。通过显微硬度和显微组织评价可烧结性。在1200°C下烧结后,与在pH 7.4悬浮液中制成的硬度为457 MPa的涂层相比,在pH 8.4悬浮液中制成的涂层的硬度为786 MPa,并具有较少的大孔。

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