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Temperature and Strain Measurements With Fiber Bragg Gratings Embedded in Stainless Steel 316

机译:光纤布拉格光栅嵌入不锈钢316中的温度和应变测量

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Single-mode optical fibers with thin nickel coatings (outer diameter 350 μm) are successfully embedded into stainless steel (SS) 316 components using bespoke laser-based additive manufacturing technology. In our approach, we manufacture SS 316 components using selective laser melting, incorporating U-shaped grooves with dimensions suitable to hold nickel-coated optical fibers. Coated optical fibers containing fiber Bragg gratings for strain monitoring and temperature sensing are placed in the groove. The embedding is completed by melting subsequent powder layers on top of the fibers. Cross-sectional microscopy analysis of the fabricated components, together with analysis of the Bragg gratings behavior during fabrication indicates a strong substance-to-substance bond between coated fiber and added SS 316 material. Temperature and strain cycling of the embedded sensors demonstrates the ability of gratings to survive the embedding process, and act as sensing elements in harsh environments. strain and temperature measurements from within the component are demonstrated for high dynamic stress levels and elevated temperatures (<400 °C).
机译:使用定制的基于激光的增材制造技术,将具有薄镍涂层(外径350μm)的单模光纤成功嵌入到不锈钢(SS)316组件中。在我们的方法中,我们使用选择性激光熔化技术制造SS 316组件,并结合了适合固定镀镍光纤的U形凹槽。将包含用于应变监测和温度感测的光纤布拉格光栅的涂层光纤放置在凹槽中。通过将随后的粉末层熔化在纤维的顶部,完成包埋。所制造组件的横截面显微镜分析以及制造过程中的布拉格光栅性能分析表明,涂层纤维与添加的SS 316材料之间具有牢固的物质对物质的结合。嵌入式传感器的温度和应变循环证明了光栅能够经受住嵌入过程,并在恶劣环境中充当传感元件。在高动态应力水平和升高的温度(<400°C)下证明了从组件内部进行的应变和温度测量。

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