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A Hybrid Two-Axis Force Sensor for the Mesoscopic Structural Superlubricity Studies

机译:用于介相结构超润滑性研究的混合式双轴力传感器

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Structural superlubricity (SSL) is a state of nearly zero friction and zero wear between two directly contacted solid surfaces. Recently, SSL was achieved in mesoscale and thus opened the SSL technology which promises great applications in Micro-electromechanical Systems (MEMS), sensors, storage technologies, etc. However, load issues in current mesoscale SSL studies are still not clear. The great challenge is to simultaneously measure both the ultralow shear forces and the much larger normal forces, although the widely used frictional force microscopes (FFM) and micro tribometers can satisfy the shear forces and normal forces requirements, respectively. Here we propose a hybrid two-axis force sensor that can well fill the blank between the capabilities of FFM and micro tribometers for the mesoscopic SSL studies. The proposed sensor can afford 1mN normal load with 10 nN lateral resolution. Moreover, the probe of the sensor is designed at the edge of the structure for the convenience of real-time optical observation. Calibrations and preliminary experiments are conducted to validate the performance of the design.
机译:结构超级润滑性(SSL)是两个直接接触的固体表面之间几乎零摩擦和零磨损的状态。最近,SSL在Mesoscale中实现,因此开启了在微机电系统(MEMS),传感器,存储技术等中的巨大应用的SSL技术。然而,当前Messcale SSL研究中的负载问题仍未清楚。巨大的挑战是同时测量超级剪切力和较大的正常力,尽管广泛使用的摩擦力显微镜(FFM)和微型曲线计分别可以分别满足剪切力和正常力要求。在这里,我们提出了一种混合的双轴力传感器,可以很好地填充FFM和微型曲线仪的能力之间的坯料,用于介观SSL研究。所提出的传感器可以提供1Mn的正常负载,具有10 nn横向分辨率。此外,为了方便实时光学观察,传感器的探针设计在结构的边缘处。进行校准和初步实验以验证设计的性能。

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