首页> 外文会议>National conference on sensors >A Sensor for the Measurement of Liquids Density
【24h】

A Sensor for the Measurement of Liquids Density

机译:液体密度测量传感器

获取原文

摘要

Density is one of the characteristic properties of a substance, that can be used to understand other physical and chemical properties. On-line density sensors are of interest in many applications: the radioactive monitoring in waste storage tanks, in pipelines for process control in the petrochemical industry, in the production of chemical reagents, in food processing, in the production of paper and textiles and so on. In this paper, a piezoelectric density sensor is proposed and analyzed with FE methods. The idea at the base of the present work relies in the well-known property of piezoelectric structures to vary their resonant behavior depending on load conditions. The active element of the proposed density sensor is a cheap piezoceramic bimorph, widely used in buzzers and telephone receivers. The bimorph is clamped all around by tightening its border to the edge of a rigid open chamber in which the liquid is poured; the flexural resonance frequency of the membrane is modified by the liquid mass. The liquid volume is the volume of the chamber and therefore the membrane resonance frequency can be related to the liquid mass density. We analyze the proposed sensor by a FEM commercial code (ANSYS®) to test the device capability and to design the chamber in which the liquid is poured, in order to maximize the device sensitivity; we computed the sensor resonance frequency by varying the chamber height and for three different values of the chamber radius. The obtained results demonstrate that best sensitivity is obtained with smaller values of both height and radius.
机译:密度是物质的特性之一,可用于了解其他物理和化学特性。在线密度传感器在许多应用中令人关注:废物监测罐中的放射性监测,石化行业中用于过程控制的管道,化学试剂的生产,食品加工,造纸和纺织品的生产等中的放射性监测。在。本文提出了一种压电密度传感器,并进行了有限元分析。本工作基础的思想依赖于压电结构的众所周知的特性,以根据负载条件改变其谐振行为。提出的密度传感器的有源元件是一种廉价的压电陶瓷双压电晶片,广泛用于蜂鸣器和电话接收器中。通过将双压电晶片的边界拧紧到倒入液体的刚性开放腔室的边缘,将双压电晶片完全夹紧。膜的挠曲共振频率由液体质量改变。液体体积是腔室的体积,因此膜共振频率可以与液体质量密度相关。我们通过FEM商业代码(ANSYS®)对建议的传感器进行分析,以测试设备的功能并设计注入液体的腔室,以最大程度地提高设备的灵敏度。我们通过改变腔室高度和三个不同的腔室半径值来计算传感器共振频率。获得的结果表明,以较小的高度和半径值可以获得最佳的灵敏度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号