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Three-dimensional active microcatheter combining shape memory alloy actuators and direct-drive tubular electrostatic micromotors

机译:三维主动微导管,结合了形状记忆合金致动器和直驱式管状静电微电机

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Abstract: This paper investigates 3D active microcatheters having millimeter size outer diameters. The proposed architectures combine mechanical cells which involve new direct-drive tubular electrostatic micromotors and conventional shape memory alloy actuators. The tubular electrostatic motors are actuated by silicon surface micromachined flexible stators. The polysilicon stators integrate up to several thousands of direct-drive electrostatic microactuators. However, they have been designed in order to provide a gap compensation at the rotor/motor frame interface. Multiple stator/rotor contact interactions involve a significant speed reduction that allow a large torque amplification, as a consequence of the torque/speed duality. These mechanical interactions allow the rotor to be moved with respect to the motor frame through direct-drive contact mechanisms, therefore allowing high torque/low speed characteristics to be performed. In such a way to get a 3D behavior, the microcatheter combines tubular electrostatic motors having flexible rotors. The rotors integrate Ti-Ni shape memory alloy wires which actuate a 2D bending motion on each mechanical cell. The 3D global behavior of the catheter is provided by the relative rotation of each cell, with respect to the other ones. The proposed architecture is particularly convenient with respect to the electric power supply which is, usually, the major problem in designing active microcatheters. A $Phi@1 mm 3D active catheter is given as an example, but external diameters less than one millimeter can be easily expected, opening therefore numerous applications in the near future.!11
机译:摘要:本文研究了具有毫米尺寸外径的3D有源微导管。所提出的体系结构结合了机械单元,其中包括新型的直接驱动管状静电微电机和常规的形状记忆合金致动器。管状静电电动机由硅表面微机械加工的柔性定子驱动。多晶硅定子集成了多达数千个直接驱动式静电微执行器。但是,它们的设计是为了在转子/电机框架接口处提供间隙补偿。多个定子/转子接触相互作用会导致转速显着降低,这是转矩/转速双重性的结果,可允许大的转矩放大。这些机械相互作用使转子可以通过直接驱动接触机构相对于电机框架移动,因此可以实现高扭矩/低速特性。以这种获得3D行为的方式,微导管结合了具有挠性转子的管状静电马达。转子集成了Ti-Ni形状记忆合金线,可在每个机械单元上启动2D弯曲运动。导管的3D整体行为是由每个单元相对于其他单元的相对旋转提供的。所提出的架构相对于电源特别方便,该电源通常是设计有源微导管的主要问题。以一个直径为1毫米的3D有源导管为例,但是很容易想到外径小于1毫米,因此在不久的将来将有许多应用。11

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