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Detailed Study on the Failure of the Wedge Calibration Method at Nanonewton Setpoints for Friction Force Microscopy

机译:关于纳尼瓦顿设定点摩擦力显微镜的楔形校准方法失效的详细研究

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摘要

The wedge calibration method is the most popular calibration technique in friction force microscopy for converting raw lateral laser deflection signals (in volt) into forces (in newton). Recent trends in nanotribology demand the use of the method at nanonewton (nN) force ranges; however, this method fails at these small forces. The objective of the present work is to identify the reason why the conventional wedge calibration method fails at nN force ranges. We found that the equation used in the model in this method amplifies experimental errors by orders of magnitude only at small setpoints purely due to its mathematical expression. This low tolerance against experimental errors in nanonewton force ranges is the reason for the failure. We identified that the condition, under which the method operates accurately, is adhesion setpoint. Discovery of this operation range (adhesion setpoint) is important because performing the calibration under other conditions can wrongly calibrate the system by orders of magnitude.
机译:楔形校准方法是摩擦力显微镜中最流行的校准技术,用于将原始的横向激光偏转信号(伏特)转换为力(在牛顿)中。纳米型近期趋势要求在纳尼瓦顿(NN)力范围内使用该方法;然而,这种方法失败了这些小力。本工作的目的是确定传统楔形校准方法在NN力范围内失效的原因。我们发现,该方法中模型中使用的等式仅通过其数学表达纯粹在小设定点处仅在小型设定点上放大了实验误差。这种低纳尼瓦顿力范围的实验误差的耐受性是失败的原因。我们确定了该方法精确运行的条件是粘附性&设定点。发现该操作范围(粘合性&设定值)是重要的,因为在其他条件下执行校准可能会错误地校准系统按数量级。

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