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Strength of self-organized TiO_2 nanotube arrays

机译:自组织TiO_2纳米管阵列的强度

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摘要

Self-organized titanium oxide (TiO_2) nanotube arrays were formed by an anodic oxidization technique. Nanoindentation experiments were conducted using three different indenters (i.e. flat punch, cone and triangular pyramid) to explore the mechanics governing thestrength of the TiO_2 nanotubes. The force—displacement responses were strongly dependent on the tip geometry and size of the nano-tubes. A stress-based fracture model considering graded, porous and discrete structures of the nanotube arrays is proposed, and fracturestress was estimated based on the model. The experimental fracture stresses obtained using different indenters were almost the same,regardless of the indenter shape, which indicates the validity of the model. The evaluated compressive strength of the TiO_2 ligament was approximately 3 GPa, and no clear size effects were observed for the 55-110 nm diameter nanotubes.
机译:通过阳极氧化技术形成了自组织的氧化钛(TiO_2)纳米管阵列。使用三种不同的压头(即扁平冲头、锥形和三角形金字塔)进行纳米压痕实验,以探索控制TiO_2纳米管强度的力学。力-位移响应很大程度上取决于尖端的几何形状和纳米管的尺寸。提出了一种考虑纳米管阵列梯度、多孔和离散结构的基于应力的断裂模型,并基于该模型估计了断裂应力。无论压头形状如何,使用不同压头得到的实验断裂应力几乎相同,这表明了模型的有效性。评估的TiO_2韧带的抗压强度约为3 GPa,直径为55-110 nm的纳米管没有观察到明显的尺寸效应。

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