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首页> 外文期刊>ACS applied materials & interfaces >Direct 3D Printing of Highly Anisotropic, Flexible, Constriction-Resistive Sensors for Multidirectional Proprioception in Soft Robots
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Direct 3D Printing of Highly Anisotropic, Flexible, Constriction-Resistive Sensors for Multidirectional Proprioception in Soft Robots

机译:直接3D印刷高度各向异性,柔性,收缩电阻传感器,用于软机器中的多向预防型

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摘要

A key missing technology for the emerging field of soft robotics is the provision of highly selective multidirectional tactile sensing that can be easily integrated into a robot using simple fabrication techniques. Conventional strain sensors, such as strain gauges, are typically designed to respond to strain in a single direction and are mounted on the external surface of a structure. Herein, we present a technique for three-dimensional (3D) printing of multidirectional, anisotropic, and constriction-resistive strain sensors, which can be directly integrated into the interior of soft robots. Using a carbon-nanotube-reinforced polylactic acid (PLACNT), both the sensing element and the conductive interconnect of the sensor system are 3D-printed. The sensor's sensitivity and anisotropy can be adjusted by controlling the air gap between printed adjacent tracks, infill density, and build orientation relative to the main loading direction. In particular, sensors printed with a near-zero air gap, i.e., adjacent tracks forming a kissing bond, can achieve a gauge factor of similar to 1342 perpendicular to the raster orientation and a gauge factor of similar to 1 parallel to the raster orientation. The maximum directional selectivity of this ultrasensitive sensor is 31.4, which is approximately 9 times greater than the highest value reported for multidirectional sensors so far. The high sensitivity stems from the progressive opening and closing of the kissing bond between adjacent tracks. The potential of this type of sensors and the simple manufacturing process are demonstrated by integrating the sensor with a soft robotic actuator. The sensors are able to identify and quantify the bending deformation and angle in different directions. The ability to fabricate sensors with tailored footprints and directional selectivity during 3D printing of soft robotic systems paves the way toward highly customizable, highly integrated multifunctional soft robots that are better able to sense both themselves and their environments.
机译:软机器人新兴领域的关键缺失技术是提供高度选择性的多向触觉感测,可以使用简单的制造技术轻松集成到机器人中。常规应变传感器(例如应变计)通常设计成在单个方向上响应应变并且安装在结构的外表面上。这里,我们介绍了一种用于多向(三维)印刷的三维(​​3D)印刷,可以直接集成到软机器人的内部。使用碳纳米管增强的聚乳酸(PARENT),传感器系统的传感元件和传感器系统的导电互连都是3D打印的。通过控制相对于主装载方向的印刷相邻轨道,填充密度和构建方向之间的气隙,可以调节传感器的灵敏度和各向异性。特别地,印刷具有近零气隙的传感器,即形成接吻键的相邻轨道,可以实现类似于1342的尺寸因子,其垂直于光栅方向和类似于与光栅方向平行的尺寸因子。到目前为止,该超敏传感器的最大方向选择性是31.4,这比对于多向传感器报告的最高值大约为9倍。高灵敏度源于相邻轨道之间的接吻结合的渐进开口和关闭。通过将传感器与软机器人执行器集成来证明这种类型传感器和简单制造工艺的潜力。传感器能够在不同方向上识别和量化弯曲变形和角度。在软机器人系统的3D印刷期间制造具有定制占地面积和定向选择性的传感器的能力为高度可定制的高度集成的多功能软机器提供了更好的方式,可以更好地感知自己和环境。

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