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An Optical Fiber Viscometer Based on Long-Period Fiber Grating Technology and Capillary Tube Mechanism

机译:基于长周期光纤光栅技术和毛细管机理的光纤粘度计

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摘要

This work addresses the development and assessment of a fiber optical viscometer using a simple and low-cost long-period fiber grating (LPFG) level sensor and a capillary tube mechanism. Previous studies of optical viscosity sensors were conducted by using different optical sensing methods. The proposed optical viscometer consists of an LPFG sensor, a temperature-controlled chamber, and a cone-shaped reservoir where gravitational force could cause fluid to flow through the capillary tube. We focused on the use of LPFGs as level sensors and the wavelength shifts were not used to quantify the viscosity values of asphalt binders. When the LPFG sensor was immersed in the constant volume (100 mL) AC-20 asphalt binder, a wavelength shift was observed and acquired using LabVIEW software and GPIB controller. The time spent between empty and 100 mL was calculated to determine the discharge time. We simultaneously measured the LPFG-induced discharge time and the transmission spectra both in hot air and AC-20 asphalt binder at five different temperatures, 60, 80, 100, 135, and 170 Celsius. An electromechanical rotational viscometer was also used to measure the viscosities, 0.15–213.80 Pa·s, of the same asphalt binder at the above five temperatures. A non-linear regression analysis was performed to convert LPFG-induced discharge time into viscosities. Comparative analysis shows that the LPFG-induced discharge time agreed well with the viscosities obtained from the rotational viscometer.
机译:这项工作致力于使用简单且低成本的长周期光纤光栅(LPFG)液位传感器和毛细管机制开发和评估光纤粘度计。光学粘度传感器的先前研究是通过使用不同的光学传感方法进行的。拟议的光学粘度计包括一个LPFG传感器,一个温度控制室和一个锥形容器,在该容器中,重力可能导致流体流过毛细管。我们专注于将LPFG用作液位传感器,并且未使用波长偏移来量化沥青粘合剂的粘度值。将LPFG传感器浸入恒定体积(100 mL)的AC-20沥青粘合剂中后,观察到的波长偏移并使用LabVIEW软件和GPIB控制器获取。计算在空到100毫升之间花费的时间,以确定排放时间。我们同时在60、80、100、135和170摄氏度这五个不同温度下,测量了LPFG诱导的放电时间和热空气和AC-20沥青粘合剂中的透射光谱。机电旋转粘度计还用于在上述五个温度下测量相同沥青粘合剂的粘度0.15–213.80 Pa·s。进行了非线性回归分析,将LPFG诱导的放电时间转换为粘度。对比分析表明,LPFG引起的放电时间与从旋转粘度计获得的粘度非常吻合。

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  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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