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Study on the Mechanism of Static Comparison between Vibrating String Strain Gauge and Fiber Grating Strain Gauge for Bridge Structure Monitoring

机译:振动串应变计与光纤光栅应变计的静态比较机理研究桥梁结构监测

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The key component commonly used in strain monitoring is the strain sensor(strain gauge),which is usually embedded inside the measured object or installed on its surface to monitor the changes of corresponding variables for a long time.Therefore,the reliability,accuracy,consistency and stability of the strain sensor are important guarantees for the accurate measurement of strain.In order to monitor bridge changes more accurately,two strain sensors with a wide range of applications(i.e.vibration string strain sensor and fiber grating strain sensor)were selected for comparative analysis of the calibration model in the laboratory.We'll use national standard of 6061 aluminum alloy cylindrical bar and fix two strain sensors separately in the symmetric position.In order to eliminate the detection error caused by the current sensor detection when the metering clamping device and the strain sensor are under stress,0-100kn compression test was conducted on the bar by using the superposition force standard machine.The device collects data of the two sensors,conducts data regression analysis,obtains the new model and hence conducts data analysis and comparison.The results show that the accuracy of the model is much higher than that of the strain sensor.The results of this study provide technical support for the development of real-time bridge detection technology and the realization of rapid calibration and detection of strain monitoring sensors used in the transportation industry before installation.
机译:应变监测通常用于应变传感器(应变仪),其通常嵌入测量物体内或安装在其表面上,以监测很长一段时间的相应变量的变化。因此,可靠性,准确性,一致性应变传感器的稳定性是精确测量菌株的重要保证。按照监测桥的顺序更准确地,选择具有各种应用(IEvistration String Cranture Sensor和Fiber Gloting Transuct Sensor)的两个应变传感器进行比较实验室校准模型分析.WE将使用6061铝合金圆柱杆的国家标准,并在对称位置分别固定两个应变传感器。在计量夹紧装置时消除电流传感器检测引起的检测误差并且应变传感器处于应力下,通过使用叠加Forc在杆上进行0-100kN压缩试验e标准机器。设备收集两个传感器的数据,进行数据回归分析,获得新模型,因此进行数据分析和比较。结果表明该模型的准确性远高于应变传感器的准确性。该研究的结果为实时桥梁检测技术的开发提供了技术支持,并实现了在安装前运输行业使用的应变监测传感器的快速校准和检测。

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