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Fibre Bragg grating sensors for monitoring the metal inert gas and friction stir welding processes

机译:光纤布拉格光栅传感器,用于监测金属惰性气体和搅拌摩擦焊接过程

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摘要

Fibre Bragg grating (FBG) sensors are finding increased usage in experimental mechanics for monitoring service conditions in structures and other equipment and are currently being tested for process monitoring. In FBG sensors, strain and temperature cause a shift in the Bragg wavelength reflected by the grating contained in these fibres. In situ monitoring of strain and temperature during welding processes increases knowledge of the welded material and the welding process itself. In the present work, two welding processes are monitored using FBG sensors and the complete measurement approach including sensor selection, calibration, instrumentation, welding monitoring and result interpretation is presented. Calibration for strain measurements at constant temperature was performed using a four-point bending test, and temperature calibration was carried out using an oven. Results for a sensor length of 5 mm are presented. Both transient and residual strains were recorded during experiments on metal inert gas and friction stir welding and the possible impact of this monitoring technology is discussed in the light of process optimization and subsequent structural health monitoring.
机译:越来越多的光纤布拉格光栅(FBG)传感器在实验力学中用于监视结构和其他设备的服务状况,目前正在测试过程监视。在FBG传感器中,应变和温度会导致布拉格光纤中包含的光栅反射的布拉格波长发生偏移。在焊接过程中对应变和温度进行原位监测可以增加对焊接材料和焊接过程本身的了解。在目前的工作中,使用FBG传感器监控了两个焊接过程,并提出了包括传感器选择,校准,仪器,焊接监控和结果解释在内的完整测量方法。使用四点弯曲试验进行在恒定温度下的应变测量的校准,并且使用烤箱进行温度校准。给出了传感器长度为5 mm的结果。在金属惰性气体和搅拌摩擦焊的实验过程中,记录了瞬时应变和残余应变,并根据工艺优化和随后的结构健康监测对这种监测技术的可能影响进行了讨论。

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