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Structure and low-temperature tribology of lubricious nanocrystalline zinc oxide/aluminium oxide nanolaminates and zirconium dioxide monofilms grown by atomic layer deposition.

机译:通过原子层沉积法生长的润滑性纳米晶状氧化锌/氧化铝纳米层压板和二氧化锆单膜的结构和低温摩擦学。

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摘要

Currently available solid lubricants only perform well under a limited range of environmental conditions. Unlike them, oxides are thermodynamically stable and relatively inert over a broad range of temperatures and environments. However, conventional oxides are brittle at normal temperatures; exhibiting significant plasticity only at high temperatures (>0.5Tmelting). This prevents oxides’ use in tribological applications at low temperatures. If oxides can be made lubricious at low temperatures, they would be excellent solid lubricants for a wide range of conditions. Atomic layer deposition (ALD) is a growth technique capable of depositing highly uniform and conformal films in challenging applications that have buried surfaces and high-aspect-ratio features such as microelectromechanical (MEMS) devices where the need for robust solid lubricants is sometimes necessary. This dissertation investigates the surface and subsurface characteristics of ALD-grown ZnO/Al2O 3 nanolaminates and ZrO2 monofilms before and after sliding at room temperature. Significant enhancement in friction and wear performance was observed for some films. HRSEM/FIB, HRTEM and ancillary techniques (i.e. SAED, EELS) were used to determine the mechanisms responsible for this enhancement. Contributory characteristics and energy dissipation modes were identified that promote low-temperature lubricity in both material systems.
机译:当前可用的固体润滑剂仅在有限范围的环境条件下表现良好。与它们不同的是,氧化物在广泛的温度和环境下具有热力学稳定性和相对惰性。然而,常规的氧化物在常温下易碎。仅在高温下(> 0.5熔融)才显示出显着的可塑性。这样可以防止氧化物在低温下的摩擦学应用中使用。如果氧化物可以在低温下润滑,那么它们将在各种条件下成为出色的固体润滑剂。原子层沉积(ALD)是一种生长技术,能够在具有掩埋表面和高长径比特征的具有挑战性的应用(例如微机电(MEMS)设备)中沉积高度均匀和共形的膜,而有时需要使用坚固的固体润滑剂。本文研究了室温下滑动前后ALD生长的ZnO / Al2O 3纳米层合物和ZrO2单膜的表面和亚表面特性。对于某些膜,观察到摩擦和磨损性能的显着提高。 HRSEM / FIB,HRTEM和辅助技术(即SAED,EELS)被用来确定引起这种增强的机制。确定了促进两种材料系统中低温润滑性的贡献特性和能量耗散模式。

著录项

  • 作者

    Romanes, Maia Castillo.;

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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