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Nanolubrication of sliding components in adaptive optics used in microprojectors

机译:微型投影仪中使用的自适应光学器件中滑动部件的纳米润滑

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摘要

Integrated microprojectors are being developed to project a large image on any surface chosen by the users. For a laser-based microprojector, a piezo-electric based adaptive optics unit is adopted in the green laser architecture. The operation of this unit depends on stick-slip motion between the sliding components. Nanolubrication of adaptive optics sliding components is needed to reduce wear and for smooth operation. In this study, a methodology to measure lubricant thickness distribution with a nanoscale resolution is developed. Friction, adhesion, and wear mechanisms of lubricant on the sliding components are studied. Effect of actual composite components, scan direction, scale effect, temperature, and humidity to correlate AFM data with the microscale device performance is studied.
机译:集成的微型投影仪正在开发中,可以在用户选择的任何表面上投影大图像。对于基于激光的微型投影仪,绿色激光体系结构中采用了基于压电的自适应光学单元。本机的操作取决于滑动部件之间的粘滑运动。需要对自适应光学器件滑动组件进行纳米润滑,以减少磨损并实现平稳运行。在这项研究中,开发了一种以纳米级分辨率测量润滑剂厚度分布的方法。研究了润滑剂在滑动部件上的摩擦,粘附和磨损机理。研究了实际复合组件,扫描方向,缩放效果,温度和湿度对将AFM数据与微型器件性能相关联的影响。

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