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Processing-Structure-Tribological Property Interrelationships of Zinc Titanate Coatings Grown by Atomic Layer Deposition

机译:原子层沉积生长钛酸锌涂层的加工-结构-摩擦学性能相互关系

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The growth defect structure and properties of the zinc titanate (Zn_xTi_yO_z) coatings have been tailored via the selective variation of atomic layer deposition (ALD) parameters to obtain different crystallographic zinc titanate phases, namely hexagonal ilmenite ZnTiO_3 and cubic spinel Zn_2TiO_4. Amongst the phases with textured or random grain orientations, the (104) textured ZnTiO_3 coatings with a defective (low stacking fault energy) structure exhibited excellent tribological behavior for an oxide coating. Steady-state sliding friction coefficients of ~0.12 and ~0.2 were measured in humid air and dry nitrogen, respectively, even after ex situ annealing at 550°C. High resolution TEM with selected area electron diffraction revealed the (104) planes have extensive stacking faults bordered by partial dislocations, which serves as a pathway for dislocations to glide parallel to the sliding direction and hence achieve low interfacial shear/friction, i.e. "deck-of-cards" shear. These ternary coatings with low crystallographic shear strength exhibit ductile behavior during sliding contact and thereby generate smoother wear surfaces compared to brittle microcrystalline oxide coatings, and thus are apotential candidate for high temperature solid lubrication.
机译:通过选择性改变原子层沉积(ALD)参数来调整钛酸锌(Zn_xTi_yO_z)涂层的生长缺陷结构和性能,以获得不同的晶体学钛酸锌相,即六方钛铁矿ZnTiO_3和立方尖晶石Zn_2TiO_4。在具有织构或无规晶粒取向的相中,具有缺陷(低堆垛层错能)结构的(104)织构ZnTiO_3涂层对于氧化物涂层表现出出色的摩擦学行为。即使在550°C非原位退火后,在潮湿空气和干燥氮气中也测得的稳态滑动摩擦系数分别为〜0.12和〜0.2。具有选定区域电子衍射的高分辨率TEM显示,(104)平面具有以部分位错为边界的大量堆垛层错,这是位错平行于滑动方向滑动并因此实现低界面剪切/摩擦的途径,即“甲板-卡”剪切。这些具有低晶体学剪切强度的三元涂层在滑动接触过程中表现出延展性,因此与脆性微晶氧化物涂层相比产生更光滑的磨损表面,因此是高温固体润滑的潜在候选者。

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