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Design and test of a novel cost-effective piezo driven actuator with a two-stage flexure amplifier for chopping mirrors

机译:一种新型经济高效的压电驱动执行器的设计和测试,该驱动器具有用于斩波镜的两级挠曲放大器

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A fast chopping secondary mirror is the critical functioning assembly in an astronomical telescope for infraredobservation. Normally, a chopping mirror is driven by precision high-load and high-stiffness linear actuators which areexpected to be lightweight, compact and further cost-effective. The stroke of the actuator is typically required to up toseveral hundred microns with typical load capacity up to several hundred Newtons. We developed a novel piezo-basedprototype linear actuator with a two-stage rhombic flexure amplifier. In this paper, first we present the detail designscheme of the actuator by analytical calculations with comprehensive Finite Element Analysis (FEA) verification.Afterwards, we also present the procedures and results of tests of linearity, load capacity, eigenfrequency, stability andrepeatability. The selected piezoelectric drive unit is a block of 35x10x10 mmsup3/sup with output force up to 4000 N. Thetwo-stage displacement amplifier is simply integrated by two identical singular rhombic flexures orthogonally mountedtogether. Each stage, one rhombic flexure with a longer axis of 76 mm long, is designed with an ideal amplification ratioof 3, which leads to a final theoretical compound amplification ration of 9. In order to realize the basictriangular-amplification principle in a rhombic flexure, we introduced flexure joints at all the eight ends of its four edgebars. The singular rhombic flexures can be efficiently manufactured by electrical discharge wire-cutting process at a timein batch by being overlapped in layers. Afterwards we carried out related measurements to test its performance.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:快速切碎的辅助反射镜是天文望远镜中用于红外观测的关键功能组件。通常,斩波镜由精密的高负载和高刚度线性致动器驱动,这些致动器预计将变得轻巧,紧凑并且具有更高的成本效益。致动器的行程通常需要达到几百微米,典型的负载能力则要达到几百牛顿。我们开发了一种新颖的基于压电的原型线性执行器,带有两级菱形弯曲放大器。本文首先通过分析计算和全面的有限元分析(FEA)验证,介绍了执行器的详细设计方案,然后介绍了线性,负载能力,本征频率,稳定性和重复性的测试程序和结果。所选的压电驱动单元是一个35x10x10 mm 3 的块,其输出力高达4000N。两级位移放大器由正交安装的两个相同的奇异菱形弯曲件简单地集成在一起。每个阶段的长轴长度为76 mm的菱形挠曲的理想放大比为3,最终理论复合放大比为9。为了实现菱形挠曲的基本三角放大原理,我们在其四个边缘杆的所有八个端部引入了挠性接头。通过层状地重叠,可以一次通过放电线切割工艺有效地制造奇异的菱形挠曲。之后,我们进行了相关的测量以测试其性能。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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