Einbergs Ernests, Zolotarjovs Aleksejs
Institute of Solid State Physics, University of Latvia, Riga LV-1063, Latvia.
HardwareX. 2022 Aug 24;12:e00349. doi: 10.1016/j.ohx.2022.e00349. eCollection 2022 Oct.
Mechanoluminescent materials transform mechanical energy into visible light. Phenomena could prove to be advantageous to various next-generation monitoring systems employed in the fields of security and healthcare if the intrinsic mechanisms are fully understood. Scientific efforts are mainly hindered by the lack of equipment capable of controlled mechanical deformation and simultaneous collection of light emitted by the sample. This article describes an easily constructible material testing device (508 €) with an interchangeable test fixture and an integrated load cell made from readily available mechanical components and 3D printed parts. A commercial low-cost alternative to spectroscopic apparatus (200 €) has recently become available alongside a highly capable 16-bit CMOS camera intended for low light conditions (520 €). A highly modular prototype system with an overall cost much lower than commercial alternatives that provide less functionality could enable a larger portion of scientific personnel to contribute to a novel field of research.
机械发光材料将机械能转化为可见光。如果能充分理解其内在机制,这一现象可能会对安全和医疗领域中使用的各种下一代监测系统有利。科学研究主要受到缺乏能够控制机械变形并同时收集样品发出的光的设备的阻碍。本文介绍了一种易于构建的材料测试装置(508欧元),它具有可互换的测试夹具和由现成的机械部件及3D打印部件制成的集成称重传感器。最近出现了一种商业低成本的光谱仪器替代品(200欧元),以及一款适用于低光照条件的高性能16位CMOS相机(520欧元)。一个高度模块化的原型系统,其总成本远低于功能较少的商业替代品,这可能会使更多科研人员能够为一个新的研究领域做出贡献。