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Analysis of Residual Stress in Electrical Penetration Assembly Based on a Fiber Bragg Grating Sensor

机译:基于光纤布拉格光栅传感器的电侵彻组件残余应力分析

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摘要

An important factor for maintaining hermeticity of a metal-to-glass sealed electrical penetration assembly (EPA) is the residual stress in the sealing glass, which is generated during the EPA sealing process. A novel method to investigate and optimize the sealing process of EPAs, based on a fiber Bragg grating (FBG) sensor, is proposed in this research. An FBG was well bonded with sealing glass to measure the parameters of the glass during the sealing process. The temperature change during the heating process was able to be measured by Bragg wavelength shift. After the sealing glass solidified and dropped to room temperature, the residual stress was determined and the effect of temperature was minimized because the temperature before and after the sealing process was the same as room temperature. The curing temperature of the sealing glass was evaluated to specifically investigate the solidification process of the EPA. This study provides a basis for online stress and temperature monitoring of EPAs under external loads in nuclear power plants.
机译:保持金属玻璃密封电穿透组件(EPA)气密性的重要因素是密封玻璃中的残余应力,该残余应力是在EPA密封过程中产生的。本文提出了一种基于光纤布拉格光栅(FBG)传感器的研究和优化EPA密封过程的新方法。 FBG与密封玻璃良好粘合,以测量密封过程中玻璃的参数。加热过程中的温度变化可以通过布拉格波长偏移来测量。密封玻璃固化并降至室温后,由于密封过程前后的温度与室温相同,因此可以确定残余应力并最小化温度的影响。评估密封玻璃的固化温度以专门研究EPA的固化过程。这项研究为核电厂在外部负荷下在线监测EPA的压力和温度提供了基础。

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