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首页> 外文期刊>Tribology letters >AFM at the Macroscale: Methods to Fabricate and Calibrate Probes for Millinewton Force Measurements
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AFM at the Macroscale: Methods to Fabricate and Calibrate Probes for Millinewton Force Measurements

机译:AFM在Macroscale:用于制造和校准Millinewton Force测量的方法

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The difficulty in detecting and controlling forces in the gap between the nanoscale and macroscale tribometry regimes has so far limited the application of fundamental atomic-scale insights to practical friction and wear control. This paper describes methods to achieve and quantify millinewton forces measured by atomic force microscopy (AFM) using existing experimental tools. We mounted colloidal microspheres at different points along the span of commercial AFM cantilevers to reduce their effective flexural length from 125 mu m to between 21 and 107 mu m. The resulting spring constants, based on direct calibration, varied from 100 to 10,000N/m. Within a commercial AFM (Dimension 3100), these cantilevers produced normal force calibration constants between 0.006 and 0.430 mN/V; i.e., increasing the spring constant by 100xcaused a corresponding increase in the calibration constant but only a negligible increase in V/m sensitivity. We demonstrate these new capabilities by measuring friction between the colloids and single-crystal MoS2 at applied normal forces up to 3.4mN, which is in the range of existing tribometers and well above the forces typically used in AFM-based measurements. These methods, which make use of well-established procedures and only require a modified AFM cantilever, are intended for use by other researchers as a platform for bridging the gap between nanoscale and macroscale tribometry.
机译:纳米级和宏观摩泽斯族跨越体系之间的间隙中的检测和控制力的困难仅限于应用基本原子尺洞察对实际摩擦和磨损控制的应用。本文介绍了使用现有实验工具实现通过原子力显微镜(AFM)测量的Millinewton力的方法。我们沿着商业AFM悬臂的跨度安装在不同点的胶体微球,以将其有效的弯曲长度从125米m〜21至107 mu m。基于直接校准的所得到的弹簧常数从100到10,000n / m变化。在商用AFM(尺寸3100)中,这些悬臂产生正常力校准常数0.006和0.430mn / v;即,将弹簧常数增加100xcaused校准常数的相应增加,但v / m灵敏度只有可忽略的增加。我们通过测量胶体和单晶MOS2在施加的正常力之间的摩擦高达34mn的摩擦力的摩擦力来证明这些新能力,这在现有曲线仪的范围内,并且高于通常用于基于AFM的测量的力。这些方法利用良好的程序和仅需要改进的AFM悬臂,旨在用于其他研究人员作为桥接纳米级和宏观摩擦谱之间的间隙的平台。

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