Zhang Zhongwei, Zhang Xiyan, Ma Bohui, Ding Mengyao, Zhu Bowen, Tong Dezheng
Department of Optical Engineering, College of Optical, Mechanical and Electrical, Zhejiang A & F University, Hangzhou 311300, China.
Sensors (Basel). 2022 Aug 5;22(15):5878. doi: 10.3390/s22155878.
We designed an ultrasonic testing instrument that consisted of a single-chip microcomputer module, a digital display module, and an ultrasonic sensor module, which conveniently eliminated the troubles faced by the traditional Jolly's scale. For comparison purpose, three linear springs' stiffness factors were measured by Jolly's scale and by our ultrasonic testing instrument. We found that our instrument could more conveniently and in real time display the distance values between the ultrasonic ranging module and the horizontal bottom plate when loading different weights. By processing these distance data, we found that our instrument was more convenient for obtaining the linear springs' stiffness factors and that the results were more accurate than those of Jolly's scale. This study verified that our instrument can accurately realize the performance of Jolly's scale under diverse temperatures and humidity levels with high data reliability and perfect stability.
我们设计了一种超声波测试仪器,它由单片机模块、数字显示模块和超声波传感器模块组成,方便地消除了传统乔利天平所面临的麻烦。为了进行比较,用乔利天平以及我们的超声波测试仪器测量了三个线性弹簧的刚度系数。我们发现,我们的仪器在加载不同重量时,能够更方便、实时地显示超声波测距模块与水平底板之间的距离值。通过处理这些距离数据,我们发现我们的仪器更便于获取线性弹簧的刚度系数,并且结果比乔利天平更准确。本研究验证了我们的仪器能够在不同温度和湿度水平下准确实现乔利天平的性能,具有高数据可靠性和完美的稳定性。