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首页> 外文期刊>Nanotechnology, IEEE Transactions on >Direct Tip Shape Determination of a Berkovich Indenter: Effect on Nanomechanical Property Measurement and Description of a Worn Indenter
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Direct Tip Shape Determination of a Berkovich Indenter: Effect on Nanomechanical Property Measurement and Description of a Worn Indenter

机译:Berkovich压头的直接尖端形状确定:对纳米机械性能测量的影响和破损压头的描述

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摘要

The minimization of sources of uncertainty in nanoindentation experiments is crucial for accurate determination of nanomechanical properties. A common source of uncertainty in these measurements is the estimation of tip shape and size. Besides the experimental determination of the indenter''s real geometry, determination of the instrument''s compliance is also necessary. We use an atomic-force-microscope-based procedure for the determination of nanoindentation tip parameters needed to account for errors induced by tip shape nonideality and to permit the evaluation of the relative contributions of the instrumental errors associated with the experimentally determined values of hardness and modulus. We compare the definitions of the currently used tip shape area function based on physically relevant parameters with the scan and propose a hyperbolic definition that meets all physically relevant criteria while being simple enough to yield good results with numerical nonlinear fitting routines.
机译:纳米压痕实验中不确定性源的最小化对于精确确定纳米机械性能至关重要。这些测量中常见的不确定性来源是尖端形状和尺寸的估计。除了实验确定压头的真实几何形状外,还需要确定仪器的柔度。我们使用基于原子力显微镜的程序来确定纳米压痕尖端参数,以解决由尖端形状不理想引起的误差,并允许评估与实验确定的硬度值相关的仪器误差的相对贡献。模量。我们将基于物理相关参数的当前使用的尖端形状区域函数的定义与扫描进行比较,并提出了一种双曲线定义,该定义可以满足所有物理相关标准,同时又足够简单,可以通过数值非线性拟合程序产生良好的结果。

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