首页> 外文会议>ASME international manufacturing science and engineering conference;MSEC2008;JSME/ASME international conference of material and processing;ICMP2008 >A COMPARABILITY STUDY OF A WIRELESS ELECTRET ACCELEROMETER TO A TRADITIONAL PIEZOELECTRIC ACCELEROMETER
【24h】

A COMPARABILITY STUDY OF A WIRELESS ELECTRET ACCELEROMETER TO A TRADITIONAL PIEZOELECTRIC ACCELEROMETER

机译:无线压电式加速度计与传统压电式加速度计的比较研究

获取原文

摘要

Traditional piezoelectric accelerometers used for machine condition monitoring are expensive and represent a capital risk when placed in the harsh environment of a cutting process. Additionally, these components require signal conditioning hardware and are sampled on a PC via an independent data acquisition interface (DAQ card). The goal of the research discussed herein is to test an industrial-friendly electret-based accelerometer that can perform tasks similar to a traditional piezoelectric accelerometer. The sensor will be adapted to utilize Bluetooth wireless data capabilities, further enhancing the sensors industrial practicality. The output of this electret-based sensor will be compared to the output of a traditional piezoelectric accelerometer and accompanying DAQ. More specifically, the study will focus on the effects of elevated temperature on the sensor. To achieve this, a comparison of both the electret and piezoelectric accelerometer response spectra will be observed over a range of 21°C to 77°C. To further validate the sensor, turning data is collected wirelessly from the sensor and compared to the output of the traditional piezoelectric sensor. Finally, the performance of the sensor for monitoring a tool's condition during turning is evaluated and presented. The generated trend is contrasted to the comparable trend developed from the piezoelectric-based accelerometer.
机译:用于机器状态监测的传统压电加速度计价格昂贵,当置于切割过程的恶劣环境中时,存在资本风险。此外,这些组件需要信号调理硬件,并通过独立的数据采集接口(DAQ卡)在PC上进行采样。本文讨论的研究目标是测试一种工业友好的基于驻极体的加速度计,该加速度计可以执行类似于传统压电加速度计的任务。该传感器将适用于利用蓝牙无线数据功能,从而进一步增强传感器的工业实用性。这种基于驻极体的传感器的输出将与传统的压电加速度计和随附的DAQ的输出进行比较。更具体地说,该研究将集中于高温对传感器的影响。为此,将在21°C至77°C的范围内观察驻极体和压电加速度计响应谱的比较。为了进一步验证传感器,可以从传感器无线收集转向数据,并将其与传统压电传感器的输出进行比较。最后,评估并介绍了用于监控车削过程中刀具状态的传感器性能。生成的趋势与基于压电的加速度计开发的可比趋势形成对比。

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