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含石灰石油灰发电

Power Generation by a Limestone-Contained Putty.

作者信息

Jang Moon-Hyung, Rabbitte Sean P, Lei Yu, Chung Simon, Wang Gang

机构信息

Department of Mechanical and Aerospace Engineering, The University of Alabama in Huntsville, Huntsville, Alabama 35899, United States.

Department of Chemical and Materials Engineering, The University of Alabama in Huntsville, Huntsville, Alabama 35899, United States.

出版信息

ACS Omega. 2023 Mar 2;8(10):9326-9333. doi: 10.1021/acsomega.2c07688. eCollection 2023 Mar 14.

Abstract

A novel contact-separation triboelectric generator concept is proposed in this paper, which consists of a limestone-based mounting putty and a metallized polyester (PET/Al) sheet. This is an attempt to explore tacky materials for power generation and extend the operational frequency bandwidth compared to existing TriboElectric NanoGenerators (TENGs). Moreover, the proposed design is very cost-effective and easy to build. Unlike traditional TENGs, which generate power solely due to a charge developing on the surface, the putty also replies on charge developed inside the material. Parametric study was conducted to determine the optimal putty thickness in a shaker test at 40 Hz. It was found that a putty layer at 0.6 mm thick yielded maximum power generation. During the separation phase, the electrical breakdown between triboelectric layers allows most existing electrons to flow back from the ground due to rapid charge removal at the interface. We are able to achieve a peak power of 16 mW in a shaker test at 40 Hz with an electrical load of 8 MΩ, which corresponds to a power density of 25.6 W/m. A peak power of 120 mW in a manual prototype generator is achieved, which operates at approximately 2 Hz. Since putty material has less tackiness than double-sided tape, we are able to expand the frequency bandwidth up to 80 Hz, which is significantly higher than a TENG (typically <10 Hz). The mounting putty material contains limestone with approximate 31 nm of mean grain size mixed with synthetic rubber materials. Elasticity from rubber and the nanohardness of calcite crystallites allow us to operate a putty generator repeatedly without the concern of grain fracture. Also, a durability test was conducted with up to 250,000 contact-separation cycles. In summary, comparable performance is achieved in the proposed putty generator to benefit energy harvesting and sensor applications.

摘要

本文提出了一种新型的接触-分离摩擦电发电机概念,它由一种基于石灰石的安装腻子和一个金属化聚酯(PET/Al)片组成。这是一次探索用于发电的粘性材料并与现有的摩擦电纳米发电机(TENG)相比扩展工作频率带宽的尝试。此外,所提出的设计极具成本效益且易于构建。与传统的仅因表面电荷产生而发电的TENG不同,这种腻子还依赖于材料内部产生的电荷。通过参数研究来确定在40Hz振动试验中腻子的最佳厚度。结果发现,0.6mm厚的腻子层产生的发电量最大。在分离阶段,摩擦电层之间的电击穿使得由于界面处电荷的快速去除,大多数现有的电子能够从地面回流。在40Hz振动试验中,当电负载为8MΩ时,我们能够实现16mW的峰值功率,这对应于25.6W/m的功率密度。在手动原型发电机中实现了120mW的峰值功率,其工作频率约为2Hz。由于腻子材料的粘性比双面胶带小,我们能够将频率带宽扩展到80Hz,这显著高于TENG(通常<10Hz)。安装腻子材料包含平均粒径约为31nm的石灰石与合成橡胶材料混合而成。橡胶的弹性和方解石微晶的纳米硬度使我们能够反复操作腻子发电机而无需担心颗粒破裂。此外,还进行了高达250,000次接触-分离循环的耐久性测试。总之,所提出的腻子发电机实现了可比的性能,有利于能量收集和传感器应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74ab/10018498/fe105cc95248/ao2c07688_0002.jpg

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