首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EMBEDDED 3D PRINTING OF HIGHLY FLEXIBLE NANOCOMPOSITES WITH PIEZORESISTIVE SENSING CAPABILITIES
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EMBEDDED 3D PRINTING OF HIGHLY FLEXIBLE NANOCOMPOSITES WITH PIEZORESISTIVE SENSING CAPABILITIES

机译:具有压阻式传感功能的高度柔性纳米复合材料的嵌入式3D印刷

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In recent years, highly flexible nanocomposite sensors have been developed for the detection of a variety of human body movements. To precisely detect the bending motions of human joints, the sensors must be able to conform well with the human skin and produce signals that effectively describe the amount of deformation applied to the material during bending. In this paper, a carbon nanotube-based piezoresistive strain sensor is developed via the direct ink writing based embedded 3D printing method. The optimum weight concentration range of carbon nanotubes in the nanocomposite inks, appropriate for embedded 3D printing, is identified. Samples with complex 2D and 3D geometries are printed to demonstrate the manufacturing capabilities of the embedded printing process. The sensitivity of the piezoresistive strain sensor is optimized by determining the ideal nanofdler concentration, curing temperature, and nozzle size to produce the highest gauge factor in a wide strain range. The piezoresistive and mechanical properties of the optimized sensors are fully characterized to verify the suitability for skin-attachable strain sensing applications. The developed sensors have a wide sensing range, high sensitivity, and minimal strain rate dependence. In addition, their low elasticity and high biocompatibility allow them to be comfortably bonded on the human skin.
机译:近年来,已经开发出高度灵活的纳米复合体传感器用于检测各种人体运动。为了精确地检测人关节的弯曲运动,传感器必须能够与人体皮肤吻合,并产生有效描述弯曲期间施加到材料的变形量的信号。本文通过基于墨水写入的嵌入式3D印刷方法开发了一种基于碳纳米管的压阻式应变传感器。鉴定了适用于嵌入式3D印刷的纳米复合墨水中的最佳重量浓度范围,纳米复合墨水中的碳纳米管。打印具有复杂2D和3D几何形状的样品以展示嵌入式印刷过程的制造能力。通过确定理想的纳米液浓度,固化温度和喷嘴尺寸来优化压阻应变传感器的灵敏度,以在宽应变范围内产生最高规格因子。优化传感器的压阻和机械性能完全是为了验证皮肤连接应变感应应用的适用性。开发的传感器具有宽的感测范围,高灵敏度和最小的应变率依赖性。此外,它们的低弹性和高生物相容性允许它们舒适地粘合在人体皮肤上。

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