Institute of Systems Engineering, China Academy of Engineering Physics, Mianyang 621999, China.
Institute of Smart City and Intelligent Transportation, Southwest Jiaotong University, Chengdu 610031, China.
Sensors (Basel). 2022 Sep 29;22(19):7422. doi: 10.3390/s22197422.
In this paper, a new type of ring-shaped interdigital electrode is proposed to improve the accuracy and repeatability of quartz crystal microbalance. The influence of different types of single finger, dot finger, dot double-finger electrodes on mass sensitivity distribution as well as the optimal proportion of finger and gap width are obtained through multi-physical coupling simulation. The results show that the design criteria of interdigital electrodes will not change with the increase in the number of fingers. The gap width should obey the decrease order from central to edge and be about twice the width of finger. The width of the outermost finger and the radius of the middle dot electrode should be maintained at about 0.4 and 0.2 times of the total electrode radius. An experiment was carried out to verify that the quartz wafer with a dot double-finger electrode has high quality factors and less modal coupling, which can satisfy the engineering application well. As a conclusion, this study provides a design idea for the electrode to maintain a uniform distribution of quartz crystal microbalance mass sensitivity.
本文提出了一种新型环形叉指电极,以提高石英晶体微天平的精度和重复性。通过多物理耦合模拟,获得了不同类型的单指、点指、点双指电极对质量灵敏度分布的影响以及指和间隙宽度的最佳比例。结果表明,叉指电极的设计准则不会随着指的数量的增加而改变。间隙宽度应遵循从中心到边缘逐渐减小的顺序,并且大约为指宽度的两倍。最外侧指的宽度和中间点电极的半径应保持在总电极半径的约 0.4 和 0.2 倍。实验验证了具有点双指电极的石英片具有较高的品质因数和较少的模态耦合,能够很好地满足工程应用的要求。总之,本研究为保持石英晶体微天平质量灵敏度均匀分布的电极设计提供了思路。