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NanoLAB Triboprobe: Characterizing Dynamic Wear, Friction and Fatigue at the Nanoscale

机译:NanoLAB Triboprobe:表征纳米级的动态磨损,摩擦和疲劳

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摘要

In-situ transmission electron microscopy (TEM) has developed rapidly over the last decade. In particular, with the inclusion of scanning probes in TEM holders, allows both mechanical and electrical testing to be performed whilst simultaneously imaging the microstructure at high resolution. In-situ TEM nanoindentation and tensile experiments require only an axial displacement perpendicular to the test surface. However, here, through the development of a novel in-situ TEM triboprobe, other surface characterisation experiments are now possible, with the introduction of a fully programmable 3D positioning system. Programmable lateral displacement control allows scratch tests to be performed at high resolution with simultaneous imaging of the changing microstructure. With the addition of repeated cyclic movements, both nanoscale fatigue and friction experiments can also now be performed. We demonstrate a range of movement profiles for a variety of applications, in particular, lateral sliding wear. The developed NanoLAB TEM triboprobe also includes a new closed loop vision control system for intuitive control during positioning and alignment. It includes an automated online calibration to ensure that the fine piezotube is controlled accurately throughout any type of test. Both the 3D programmability and the closed loop vision feedback system are demonstrated here.
机译:在过去的十年中,原位透射电子显微镜(TEM)迅速发展。特别是,在TEM支架中包含扫描探针后,既可以进行机械测试也可以进行电气测试,同时可以高分辨率对微结构进行成像。原位TEM纳米压痕和拉伸实验仅需要垂直于测试表面的轴向位移。但是,在这里,通过开发新颖的原位TEM摩擦探针,通过引入完全可编程的3D定位系统,现在可以进行其他表面表征实验。可编程的横向位移控制允许在高分辨率下执行划痕测试,同时对变化的微结构进行成像。除了重复的循环运动,现在还可以进行纳米级疲劳和摩擦实验。我们展示了针对各种应用的一系列运动曲线,特别是横向滑动磨损。研发的NanoLAB TEM摩擦探针还包括新的闭环视觉控制系统,可在定位和对准过程中进行直观控制。它包括一个自动的在线校准,以确保在任何类型的测试中都能精确控制细压电管。这里展示了3D可编程性和闭环视觉反馈系统。

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