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Calibration of effective spring constants of colloidal probes using reference cantilever method

机译:使用参考悬臂法校准胶体探针的有效弹簧常数

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The precise measurement of the effective spring constant of a colloidal probe's cantilever is very important for the accurate application of a desired contact load to a sample surface since the contact load is determined by multiplying the effective spring constant of the cantilever and its deflection. This paper presents a method of directly measuring the effective spring constant of a colloidal probe by the reference cantilever method. The distinctive feature of the reference cantilever method in this study is that the reference cantilever has a tip. The tip determines the location of the loading point on the reference cantilever and enables detecting the loading point on the colloidal probe's cantilever by monitoring the change in a force distance curve depending on the contact point between a spherical particle and the tip. The effective spring constants of the colloidal probes measured by the proposed method are compared to those determined by finite element analysis (FEA). The importance of calibrating the effective spring constant of the colloidal probe in applied forces and mechanical tests is investigated by comparing force distance curves and nanometer-scale wear test results obtained at two different spring constant settings. (C) 2015 Elsevier B.V. All rights reserved.
机译:胶体探针悬臂的有效弹簧常数的精确测量对于将所需的接触载荷准确地施加到样品表面非常重要,因为接触载荷是通过将悬臂的有效弹簧常数与其挠度相乘来确定的。本文提出了一种通过参考悬臂法直接测量胶体探针的有效弹簧常数的方法。本研究中参考悬臂法的显着特征是参考悬臂具有尖端。尖端确定参考悬臂上加载点的位置,并通过监控力距离曲线的变化来检测胶体探针悬臂上的加载点,该力距离曲线的变化取决于球形粒子与尖端之间的接触点。将通过所提出的方法测量的胶体探针的有效弹簧常数与通过有限元分析(FEA)确定的有效弹簧常数进行比较。通过比较力距离曲线和在两种不同弹簧常数设置下获得的纳米级磨损测试结果,研究了在施加的力和机械测试中校准胶体探针的有效弹簧常数的重要性。 (C)2015 Elsevier B.V.保留所有权利。

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