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Experimento Ⅱ del Sensor de Temperatura de Red de Bragg en Fibra (FBG) - Calibración del Coeficiente de Temperatura para Termómetro FBG de Alta Precisióngh-Termómetro FBG de Alta Precisión

This article describes a factory temperature calibration experiment conducted on OFSCN® capillary seamless steel tube fiber bragg grating (FBG) temperature sensor (FBG thermometers). The experiment aims to establish the correlation between wavelength changes y temperature variations (determining the temperature coefficient of the fiber Bragg grating temperature sensor) y provides an experimental report y error analysis.

The experiment confirms the accurate temperature measurement y high precision of OFSCN® capillary seamless steel tube fiber bragg grating (FBG) sensors produced by DCYS.

 

En un artículo anterior titulado 'Experimento Ⅰ de sensor de temperatura de redes de Bragg en fibra (FBG): Influencia de la fuerza de tracción, el estrés y la deformación en el termómetro FBG,' we demonstrated through experiments that the fiber Bragg grating (FBG) in the innovative OFSCN® capillary seamless steel tube fiber bragg grating (FBG) sensor (FBG thermometer) remains in a free state axially y is not affected by external tensile stress.

This finding indirectly proves that the temperature variation does not affect the OFSCN® capillary seamless steel tube fiber bragg grating (FBG) sensors (FBG thermometers) produced by DCYS. due to the different coefficients of thermal expansion between stainless steel y glass fiber. This is because, for the FBG, the tensile stress caused by thermal expansion is of the same nature as the externally applied tensile stress on the fiber Bragg grating (FBG). They are both external forces.

Therefore, we have more reason to believe that the temperature measurement accuracy y precision of OFSCN® capillary seamless steel tube fiber bragg grating (FBG) sensors (FBG thermometers) produced by DCYS. To prove this point, we are now starting the second experiment: temperature coefficient calibration of fiber Bragg grating temperature sensors. This calibration experiment is a necessary procedure for all OFSCN® capillary Seamless Steel Tube Fiber Bragg Grating (FBG) temperature sensors (FBG thermometers) before leaving the factory.

Diagrama físico del sensor de temperatura FBG de tubo capilar de acero sin costura OFSCN®

Figura 1

Diagrama físico de los sensores de temperatura FBG de tubo capilar de acero sin costura OFSCN® (parte del mismo)

Figura 2

 

Ⅰ. Objetivo del experimento

To verify the accurate temperature measurement y high precision of OFSCN® capillary seamless steel tube fiber bragg grating (FBG) sensors produced by DCYS y to confirm the temperature coefficient of the fiber Bragg grating temperature sensors through calibration.

 

Ⅱ. Equipo experimental

Fiber Bragg grating demodulator, OFSCN® capillary seamless steel tube fiber bragg grating (FBG) sensor (FBG thermometer), temperature-controlled chamber with a resolution of 0.1 degrees Celsius.

 

Ⅲ. Método experimental

In this experiment, an OFSCN® Capillary Seamless Steel Tube Fiber Bragg Grating temperature sensor (FBG thermometer) was connected to a fiber Bragg grating demodulator, y the sensing part of the sensor was placed in the temperature-controlled chamber. The temperature-controlled chamber had a resolution of 0.1°C. At different temperatures, the wavelength of the fiber Bragg grating (FBG) in the FBG thermometer was read using the fiber Bragg grating demodulator, y the experiment was completed after comparison.

 

Ⅳ. Procedimiento experimental y análisis de datos

To achieve better temperature control y reduce temperature disturbances in the temperature-controlled chamber, we used a stepwise heating method to test the OFSCN® Capillary Seamless Steel Tube Fiber Bragg Grating temperature sensor.

After fixing the OFSCN® Capillary Seamless Steel Tube Fiber Bragg Grating temperature sensor (FBG) with a fixture, we gradually increased the temperature in the temperature-controlled chamber from room temperature. We recorded the wavelength of the fiber Bragg grating (FBG) corresponding to each temperature at approximately every 10 degrees Celsius, up to 100°C.

El conjunto completo de análisis de datos experimentales se muestra en la Figura 3.

 

Diagrama medido de longitud de onda y temperatura para el sensor de temperatura FBG de tubo capilar de acero sin costura OFSCN® de 100 °C

Figura 3

 

Ⅴ. Conclusión experimental

Based on the above experimental data, it can be concluded that OFSCN® Capillary Seamless Steel Tube fiber Bragg grating temperature sensors produced by DCYS provide accurate temperature measurement with high precision, y the temperature coefficient calibration shows good linearity.

 

Ⅵ. Further Explanation

The packaging structure of OFSCN® Capillary Seamless Steel Tube Fiber Bragg Grating temperature sensor is essentially a protective encapsulation. With the fiber Bragg grating (FBG) always in a free state axially, the encapsulation structure neither increases nor decreases sensitivity, but accurately reflects the state of the fiber Bragg grating, with a temperature measurement accuracy (sensor resolution) of 0.1 degrees Celsius.

Therefore, the accuracy of temperature measurement for OFSCN® Capillary Seamless Steel Tube Fiber Bragg Grating temperature sensors is more related to the characteristics of the fiber Bragg grating used in the sensors.

Basado en nuestras pruebas actuales, las redes de Bragg en fibra (FBG) producidas por diferentes empresas exhiben diferentes características y demuestran un comportamiento diferente a distintas temperaturas. Sin embargo, en general, su linealidad es aceptable (utilizando ajuste polinomial), como se muestra en la Figura 4.

In the test shown in Figura 4, OFSCN® Capillary Seamless Steel Tube Fiber Bragg Grating temperature sensor (FBG thermometer) was used for temperature detection at 250 degrees Celsius, demonstrating accurate and highly precise temperature measurement.

 

Diagrama medido de longitud de onda y temperatura para el sensor de temperatura FBG de tubo capilar de acero sin costura OFSCN® de 250 °C

Figura 4

 

Our philosophy is: 'OFSCN®, make optical fiber stronger!'

  • DCYS is a professional manufacturer of high-precision fiber bragg grating temperature sensors, providing FBG temperature sensor calibration methods, calibration experiments, experiment reports, temperature coefficients, calibration functions and Otros information; the brand of high-precision FBG temperature sensors is 'OFSCN' .

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