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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A six-DOF prismatic-spherical-spherical parallel compliant nanopositioner
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A six-DOF prismatic-spherical-spherical parallel compliant nanopositioner

机译:六自由度棱柱-球形-球形平行顺应纳米定位器

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摘要

A nanopositioner using a 6-prismatic-spherical-spherical parallel (PSS) linked compliant mechanism driven by 6 multilayered piezoelectric actuators (PZT) is presented. Compared with a traditional Gough-Stewart platform in which each actuator was installed between the end effector and the base, this nanopositioner installed the PZT directly on the base to achieve much smaller mechanical loop, higher stiffness, faster response, and compactness. This nanopositioner consists of one fixed plate; three 2-PSS compliant mechanisms; and one end effector. The kinematics characteristics of the nanopositioner were analyzed through the pseudo-rigid-body model. The behavior of the compliant mechanism was intensively simulated by the finite element method (FEM). Tracking a 5 nm radius circle of the 15 times 15 times 5 cm3 prototype was experimentally demonstrated. The measurement results showed the nanopositioner achieved 8 mum travel with 5 nm resolutions and 200 murad rotation with 0.7 murad resolutions. The nanopositioner can be used to manipulate nano scale devices, fabricate nano components, or operate nano machines.
机译:提出了一种纳米定位器,该纳米定位器使用由6个多层压电致动器(PZT)驱动的6棱镜-球形-球形平行(PSS)链接顺应机构。与传统的Gough-Stewart平台(每个执行器都安装在末端执行器和底座之间)相比,该纳米定位器将PZT直接安装在底座上,以实现更小的机械环,更高的刚度,更快的响应和紧凑性。此纳米定位器由一个固定板组成;三种符合2 PSS的机制;和一个末端执行器。通过准刚体模型分析了纳米定位器的运动学特性。柔顺机构的行为通过有限元方法(FEM)进行了深入模拟。实验证明了跟踪15倍5厘米3 cm3原型的5 nm半径圆。测量结果表明,纳米定位器以5 nm的分辨率实现了8毫米的行程,以0.7 murad的分辨率实现了200 murad的旋转。纳米定位器可用于操纵纳米级设备,制造纳米组件或操作纳米机器。

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