纳米压痕
材料科学
位错
晶界
陶瓷
晶界强化
透射电子显微镜
氧化物
粒度
冶金
复合材料
微观结构
纳米技术
作者
Ryo Nakamura,Hiroshi Masuda,Hidehiro Yoshida
摘要
Abstract Local mechanical responses near single grain boundaries (GBs) of 9.8 mol% Y 2 O 3 ‐stabilized ZrO 2 bicrystals, SrTiO 3 bicrystal, and Al 2 O 3 polycrystal were investigated by nanoindentation at room temperature to reveal single GB contributions to the mechanical properties. Contrary to the concept of the Hall–Petch strengthening, the hardness showed negligible variations among grain interiors, GB vicinities, and just on GBs in the samples. Importantly, the hardness may be underestimated owing to GB grooving in thermally etched samples. Despite the negligible change in intrinsic hardness, the transmission electron microscopy observation of the ZrO 2 specimen under impressions revealed dislocation pileups at GBs. These results suggest that single GBs of oxide ceramics prevented dislocation movement but with limited strengthening contributions. This should correspond to the macroscopic Hall–Petch behaviors in oxide ceramics, where the Hall–Petch coefficients normalized by friction stress are significantly smaller than those in metals.
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