首页> 外文期刊>Applied Physics Letters >Domain rearrangement during nanoindentation in single-crystalline barium titanate measured by atomic force microscopy and piezoresponse force microscopy
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Domain rearrangement during nanoindentation in single-crystalline barium titanate measured by atomic force microscopy and piezoresponse force microscopy

机译:用原子力显微镜和压电响应力显微镜测量单晶钛酸钡纳米压痕过程中的域重排

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Nanoindentation tests in an aa-in-plane domain area of an {001} oriented barium titanate single crystal were performed using a conical indenter with a tip radius of 800 nm. The topography and the polarization vectors of the area after indentation were imaged afterwards by both atomic force and piezoresponse force microscopy (PFM), respectively. Two perpendicular oriented cracks in the {110} planes were identified in the topographic image. An unexpected considerable uplift occurs inside the residual impression, which was correlated with a sharp pop-out-like behavior observed in the force-displacement curve just prior to unloading. Furthermore, PFM revealed an almost a twofold symmetric arrangement of the domains around the indent, which can be explained by residual circumferential tensile stresses around a residual impression and was unambiguously correlated to the crystal orientation.
机译:使用尖端半径为800 nm的锥形压头在{001}取向钛酸钡单晶的aa平面畴区域中进行纳米压痕测试。然后分别通过原子力和压电响应力显微镜(PFM)对压痕后区域的形貌和极化矢量进行成像。在{110}平面中发现了两个垂直取向的裂纹。残余压痕内部发生意外的明显隆起,这与卸荷前在力-位移曲线中观察到的类似突然弹出的现象有关。此外,PFM显示出围绕压痕的畴几乎是对称的双重排列,这可以用残留压痕周围的残余圆周拉伸应力来解释,并且与晶体取向明确相关。

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