首页> 外文会议>Conference on sensors and smart structures technologies for civil, mechanical, and aerospace systems >Non-Contact Torque Measurement Using Rolled Single Crystal-Like Galfenol Patches
【24h】

Non-Contact Torque Measurement Using Rolled Single Crystal-Like Galfenol Patches

机译:使用轧制单晶Galfenol贴片进行非接触扭矩测量

获取原文

摘要

Galfenol is an iron-gallium alloy that exhibits magnetostrictive behavior up to approximately 350 ppm. It has been shown that Galfenol exhibits a linear response in strain that follows commercially available strain gauges when a magnetic bias field is placed near the Galfenol patch in a bending test, In this study we extend these results to use of a Galfenol patch for measuring torque. The benefits of Galfenol-based torque sensors over existing strain sensors for measuring torque are (1) the potential for use of stray magnetic fields for non-contact torque measurement; (2) ease of integration and/or retrofit of the proposed torque measuring capability into existing hardware; and (3) an inexpensive yet mechanically robust alternative to torque sensors that require slip rings or wireless signal transmission.This research will show that when placed on a circular shaft at ±45° relative to the shaft axis, Galfenol will exhibit a linear response to shear strain produced when a torque is applied to the shaft. By showing that measurement of shear strain is possible it is evident that the torque on the shaft can also be determined. A Hall Effect sensor will be rigidly attached to a non-rotating component of the measurement frame supporting the shaft, and used to determine the change in the magnetic field above the patch. While the shaft is rotating the response from the Hall Effect sensor is monitored to determine the torque load on the shaft.
机译:Galfenol是一种铁镓合金,在高达约350 ppm的范围内表现出磁致伸缩行为。研究表明,当在弯曲试验中将磁偏场置于Galfenol贴片附近时,Galfenol在应变上呈线性响应,该应变遵循市售应变仪。在这项研究中,我们将这些结果扩展为使用Galfenol贴片来测量扭矩。与现有的应变传感器相比,基于Galfenol的扭矩传感器的优势在于:(1)使用杂散磁场进行非接触式扭矩测量的潜力; (2)易于将建议的扭矩测量功能集成和/或改装到现有硬件中; (3)廉价但机械坚固的替代品,可替代需要滑环或无线信号传输的扭矩传感器。 这项研究将表明,当将Galfenol放置在相对于轴轴线成±45°的圆形轴上时,它将对扭矩施加到轴上时产生的剪切应变表现出线性响应。通过显示可以测量剪切应变,很明显,也可以确定轴上的扭矩。霍尔效应传感器将牢固地连接到支撑轴的测量框架的非旋转组件上,并用于确定贴片上方的磁场变化。在轴旋转时,将监视霍尔效应传感器的响应,以确定轴上的扭矩负载。

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