Department of Physics and Electronics, Osaka Prefecture University , Sakai, Osaka 599-8531, Japan.
ACS Nano. 2014 Dec 23;8(12):12851-7. doi: 10.1021/nn506293y. Epub 2014 Dec 5.
A three-axis tactile force sensor that determines the touch and slip/friction force may advance artificial skin and robotic applications by fully imitating human skin. The ability to detect slip/friction and tactile forces simultaneously allows unknown objects to be held in robotic applications. However, the functionalities of flexible devices have been limited to a tactile force in one direction due to difficulties fabricating devices on flexible substrates. Here we demonstrate a fully printed fingerprint-like three-axis tactile force and temperature sensor for artificial skin applications. To achieve economic macroscale devices, these sensors are fabricated and integrated using only printing methods. Strain engineering enables the strain distribution to be detected upon applying a slip/friction force. By reading the strain difference at four integrated force sensors for a pixel, both the tactile and slip/friction forces can be analyzed simultaneously. As a proof of concept, the high sensitivity and selectivity for both force and temperature are demonstrated using a 3×3 array artificial skin that senses tactile, slip/friction, and temperature. Multifunctional sensing components for a flexible device are important advances for both practical applications and basic research in flexible electronics.
一种能够确定触摸和滑动/摩擦力的三轴触觉力传感器,可以通过完全模拟人体皮肤来推动人工皮肤和机器人应用的发展。同时检测滑动/摩擦力和触觉力的能力允许在机器人应用中握持未知物体。然而,由于在柔性基板上制造设备存在困难,柔性设备的功能仅限于一个方向的触觉力。在这里,我们展示了一种用于人工皮肤应用的全印刷指纹状三轴触觉力和温度传感器。为了实现经济的宏观器件,这些传感器仅使用打印方法制造和集成。应变工程使在施加滑动/摩擦力时能够检测到应变分布。通过读取一个像素的四个集成力传感器的应变差,可以同时分析触觉和滑动/摩擦力。作为概念验证,使用 3×3 阵列人工皮肤演示了对力和温度的高灵敏度和选择性,该人工皮肤可以感知触觉、滑动/摩擦力和温度。用于柔性器件的多功能传感组件是柔性电子学在实际应用和基础研究方面的重要进展。