Wiranata Ardi, Premiaji Witnadi Dardjat, Kartika Widya, Febrinawarta Burhan, Mao Zebing, Ariyadi Hifni Mukhtar, Aisyah Nyayu, Putra Ryan Anugrah, Mangunkusumo Kevin G H, Muflikhun Muhammad Akhsin
Department of Mechanical and Industrial Engineering, Universitas Gadjah Mada, Jalan Grafika No. 2, Yogyakarta 55281, Indonesia.
Faculty of Engineering, Yamaguchi University, Yamaguchi 755-8611, Japan.
HardwareX. 2024 Jun 21;19:e00546. doi: 10.1016/j.ohx.2024.e00546. eCollection 2024 Sep.
The growing interest in soft robotics increases the demand for stretchable sensors. The high performance of stretchable sensors depends much on the linearity, reliability and hysteresis of the stretchable conductive materials. In the applications of conductive materials such as in dielectric elastomer actuators, a stretchable conductive material should maintain the conductivity while sustaining large and multiple cycles of stretch and release tests. To understand the stretchable electrode quality, researchers should perform an electromechanical test. However, researchers require a high investment cost to use a professional type of electromechanical tensile test. In this research, we proposed an economically viable version of the Do-it-yourself (DIY) electromechanical tensile test (EMTT) to resolve the high investment cost problems. The DIY-EMTT is based on the Arduino-nano module. We integrate the load cell, displacement sensor, motor linear stage and DIY resistance meter. We can use the DIY mechanism to suppress the instrumental cost from thousands to hundreds of dollars. Furthermore, we provide a step-by-step guide to build the DIY-EMTT. We expect our DIY-EMTT to boost stretchable sensor development in soft robotics.
对软体机器人技术日益增长的兴趣增加了对可拉伸传感器的需求。可拉伸传感器的高性能很大程度上取决于可拉伸导电材料的线性度、可靠性和滞后性。在诸如介电弹性体致动器等导电材料的应用中,一种可拉伸导电材料在承受大的和多次拉伸与释放测试循环时应保持导电性。为了了解可拉伸电极的质量,研究人员应进行机电测试。然而,研究人员使用专业类型的机电拉伸测试需要高昂的投资成本。在本研究中,我们提出了一种经济可行的自制机电拉伸测试(EMTT)版本,以解决高投资成本问题。自制EMTT基于Arduino - nano模块。我们集成了称重传感器、位移传感器、电机线性平台和自制电阻计。我们可以使用自制装置将仪器成本从数千美元降低到数百美元。此外,我们提供了构建自制EMTT的分步指南。我们期望我们的自制EMTT能推动软体机器人技术中可拉伸传感器的发展。