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Cylindrical Free-Standing Mode Triboelectric Generator for Suspension System in Vehicle

机译:车辆悬架系统圆柱形自由站立式摩擦发电机

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摘要

The triboelectric generator (TEG) is a strong candidate for low-power sensors utilized in the Internet of Things (IoT) technology. Within IoT technologies, advanced driver assistance system (ADAS) technology is included within autonomous driving technology. Development of an energy source for sensors necessary for operation becomes an important issue, since a lot of sensors are embedded in vehicles and require more electrical energy. Although saving energy and enhancing energy efficiency is one of the most important issues, the application approach to harvesting wasted energy without compromising the reliability of existing mechanical systems is still in very early stages. Here, we report of a new type of TEG, a suspension-type free-standing mode TEG (STEG) inspired from a shock absorber in a suspension system. We discovered that the optimum width of electrode output voltage was 131.9 V and current was 0.060 µA/cm2 in root mean square (RMS) value while the optimized output power was 4.90 μW/cm2 at 66 MΩ. In addition, output power was found to be proportional to frictional force due to the contact area between two frictional surfaces. It was found that the STEG was made of perfluoroalkoxy film and showed good mechanical durability with no degradation of output performance after sliding 11,000 times. In addition, we successfully demonstrated charging a capacitor of 330 μF in 6 min.
机译:摩擦发电机(TEG)是物联网(IoT)技术中使用的低功率传感器的强大候选者。在物联网技术中,自动驾驶技术中包括高级驾驶员辅助系统(ADAS)技术。开发用于操作所需的传感器的能源成为重要的问题,因为许多传感器嵌入在车辆中并且需要更多的电能。尽管节约能源和提高能源效率是最重要的问题之一,但在不损害现有机械系统可靠性的情况下收集浪费能源的应用方法仍处于早期阶段。在这里,我们报告了一种新型的TEG,一种悬挂式自立式TEG(STEG),其灵感来自悬挂系统中的减震器。我们发现,电极的最佳输出电压宽度为131.9 V,电流的均方根(RMS)值为0.060 µA / cm 2 ,而优化的输出功率为4.90μW/ cm 2 在66MΩ。另外,由于两个摩擦表面之间的接触面积,发现输出功率与摩擦力成正比。发现STEG由全氟烷氧基膜制成并且显示出良好的机械耐久性,并且在滑动11,000次之后没有输出性能的降低。此外,我们成功地演示了在6分钟内为330μF的电容器充电的过程。

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