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Printability of the Screen-Printed Strain Sensor with Carbon Black/Silver Paste for Sensitive Wearable Electronics

机译:用炭黑/银膏进行丝网印刷应变传感器的可打印性,用于敏感的可穿戴电子产品

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摘要

Printing technology enables not only high-volume, multipurpose, low-impact, low-cost manufacturing, but also the introduction of flexible electronic devices, such as displays, actuators, and sensors, to a wide range of consumer markets. Consequently, in the past few decades, printed electronic products have attracted considerable interest. Although flexible printed electronic products are attracting increasing attention from the scientific and industrial communities, a systematic study on their sensing performance based on printability has not been reported so far. In this study, carbon black/Ag nanocomposites were utilized as pastes for a flexible wearable strain sensor. The effects of the rheological property of the pastes and the pattern dimensions of the printed electrodes on the sensor’s performance were investigated. Consequently, the printed sensor demonstrated a high gauge factor of 444.5 for an applied strain of 0.6% to 1.4% with a durability of 1000 cycles and a linearity of R 2 = 0.9974. The sensor was also stable under tough environmental conditions.
机译:印刷技术不仅能够高批量,多用途,低冲击,低成本制造,还可以引入灵活的电子设备,例如显示器,执行器和传感器,以广泛的消费市场。因此,在过去的几十年里,印刷电子产品吸引了相当大的兴趣。虽然柔性印刷电子产品正在吸引科学和工业社区的越来越长,但到目前为止还没有报告基于可印刷性的传感性能的系统研究。在该研究中,将炭黑/ Ag纳米复合材料用作柔性可佩戴应变传感器的浆料。研究了浆料的流变性和印刷电极的图案尺寸对传感器性能的影响。因此,印刷传感器的施加应变为0.6%至1.4%,耐久性为1000次循环和r 2 = 0.9974的线性,所示的高表率为444.5。在艰难的环境条件下,传感器也稳定。

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