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Nitinol living hinges for millimeter-sized robots and medical devices

机译:镍钛合金活动铰链,用于毫米大小的机器人和医疗设备

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A hybrid manufacturing process combining abrasive jet and laser micromaching enables the creation of living hinges in nitinol that retain the superelastic properties of the bulk material. The former selectively etches through the thickness of a workpiece and the latter defines the part's final geometry. Because the majority of the material removal is done with the room-temperature mechanical etching procedure, thermal damage to the part is minimized. Processing parameters to achieve desired geometries are described, a bending stiffness model for the living hinges is provided, and validation experiments are presented. Lastly, to demonstrate the usefulness of these components to millimeter-sized robotic systems and medical devices, we show their integration in two prototype devices: an endoscopic camera wrist and a simple laser beam steering system.
机译:结合了磨料射流和激光微加工的混合制造工艺,可以在镍钛合金中创建活动铰链,从而保留散装材料的超弹性。前者选择性地腐蚀工件的厚度,而后者定义零件的最终几何形状。由于大部分材料去除是通过室温机械蚀刻程序完成的,因此对零件的热损伤最小。描述了实现所需几何形状的加工参数,提供了活动铰链的弯曲刚度模型,并提供了验证实验。最后,为了展示这些组件对毫米大小的机器人系统和医疗设备的有用性,我们展示了它们在两个原型设备中的集成:内窥镜摄像手腕和简单的激光束转向系统。

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