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Design of a low-cost meso-scale, detachable fixturing system for probe-based nanomanufacturing equipment and instruments

机译:设计用于探针式纳米制造设备和仪器的低成本中型可拆卸夹具系统

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摘要

This paper introduces a low-cost, meso-scale, detachable kinematic fixturing system for use in alignment in probe-based nanomanufacturing. The fixturing system will be applied specifically to a nanopositioning system developed for the functionalization of DNA via dip pen nanolithography. A ball and groove kinematic coupling design was modified by the addition of flexural hinges to reduce the offset of friction on the coupling interface, thereby improving repeatability. A prototype fixturing assembly was fabricated and tested for repeatability in six degrees of freedom. The test results concluded that the kinematic fixturing system has a 1-[sigma] repeatability of approximately 50 nanometers and 3.5 microradians. This optimized kinematic coupling system will enable suitably repeatable, quick, and elegant assembly, thus advancing the manufacturing capabilities of dip pen nanolithography.
机译:本文介绍了一种低成本,中尺度,可拆卸的运动夹具系统,用于基于探针的纳米制造中的对准。固定系统将专门应用于通过浸笔纳米光刻技术实现DNA功能化的纳米定位系统。通过增加挠性铰链来修改球槽运动学耦合设计,以减少耦合界面上的摩擦偏移,从而提高可重复性。制造了原型夹具组件,并测试了六个自由度的可重复性。测试结果得出结论,运动夹具系统具有约50纳米和3.5微弧度的1-σ重复性。这种优化的运动耦合系统将能够适当地重复,快速且优雅地进行组装,从而提高浸笔纳米光刻的制造能力。

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    Watral Adrienne;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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