首页 | 本学科首页   官方微博 | 高级检索  
     检索      

超声光栅实验仪的改进
引用本文:孔祥明,刘斌,段雪松,安莉,邢红玉.超声光栅实验仪的改进[J].中国现代教育装备,2022(3):19-21.
作者姓名:孔祥明  刘斌  段雪松  安莉  邢红玉
作者单位:河北工业大学理学院;河北工业大学人工智能学院
基金项目:河北省高等教育教学改革研究与实践项目“基于课题研究型学习的大学生创新与科研能力培养模式研究”(编号:2017GJJG018);河北工业大学本科教育教学改革研究项目“提升大学物理实验教学效果,打造实践类‘金课’”(编号:201904005);河北工业大学本科教育教学改革研究项目“以创新与科研训练为基础的本科生毕业论文过程研究与实践”(编号:201802003);河北工业大学本科教育教学改革研究项目“新工科背景下构建科教融合创新实践平台的探索与研究”(编号:201902032)。
摘    要:超声光栅是测量液体中声波传播速度的一种有效方法,是大学物理实验的重要内容之一.原有超声腔由于其结构设计存在缺陷导致现象微弱、难找且不稳定,同时压电陶瓷片极易出现电极腐蚀现象.为此改进了超声腔,摒弃其悬架结构,利用腔体自身平行度保证了衍射效果及稳定性,采用外压盖结构安装压电陶瓷片避免了电极腐蚀.经大量实验验证,新型结构超...

关 键 词:超声光栅  超声腔  压电陶瓷片  声速

Improvement of Ultrasonic Grating Instrument
Kong Xiangming,Liu Bin,Duan Xuesong,An Li,Xing Hongyu.Improvement of Ultrasonic Grating Instrument[J].China Modern Education Equipment,2022(3):19-21.
Authors:Kong Xiangming  Liu Bin  Duan Xuesong  An Li  Xing Hongyu
Institution:(School of Sciences,Hebei University of Technology,Tianjin,300401,China;School of Artificial Intelligence,Hebei University of Technology,Tianjin,300401,China)
Abstract:Ultrasonic grating is an effective method to measure the propagation velocity of sound waves in liquid,which is one of the important contents of college physics experiments.The traditional ultrasonic cavity is weak,difficult to find and unstable due to its structural design defects,and the piezoelectric ceramic plate is prone to electrode corrosion phenomenon.In order to solve these problems,a new type of ultrasonic cavity is proposed in this paper.The suspension structure is abandoned,and the parallelism of the cavity itself is used to ensure the obvious and stability of the phenomenon.The piezoelectric ceramic plate is installed in the external cover structure to avoid the electrode corrosion phenomenon.Through a lot of practical experiments,it has been proved that the new ultrasonic cavity has the characteristics of high reliability and strong usability.
Keywords:ultrasonic grating  ultrasonic cavity  piezoelectric ceramic plate  sound velocity
本文献已被 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号