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In-situ strain measurements in the plastic deformation regime inside casted parts using fibre-optical strain sensors A contribution to the production of intelligent parts

机译:使用纤维 - 光学应变传感器对铸件件内的塑性变形制度中的原位应变测量对智能部件的生产贡献

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摘要

Fibre Bragg Gratings (FBGs) were employed as internal strain sensors within tensile specimens that were machined out of a casted aluminium alloy. Embedded FBGs have the potential to directly measure strains within a casted part for a better understanding of load cases for the part design process. In addition, if the FBGs remain in the part, strains can be measured under real-life conditions and return valuable evidence for health monitoring. The proof of application is provided by the presented tests by comparison of external and internal strain measurements. The step-wise calibration test gives evidence for a linear transition between external straining and internal response by the FBGs and thus a constant conversion factor was obtained. The application in a common tensile test proves a precise strain measurement by the FBGs and their durability until a short time before the specimens failed. These findings form the basis for an application of FBGs within real structural parts and thus the production of intelligent parts in future work. As a conclusion, internal strain measurements using FBGs have the potential to provide additional strain data compared to common methods and hence to improve the design process as well as to monitor casted parts under operating conditions.
机译:纤维布拉格光栅(FBG)用作抗拉型试样内的内部应变传感器,其由铸造铝合金加工。嵌入式FBG有可能直接测量铸件部分内的应变,以便更好地理解零件设计过程的负载箱。此外,如果FBG仍然存在,则可以在现实条件下测量菌株并返回有价值的健康监测证据。通过对外部和内部应变测量的比较来提供申请证明。逐步校准测试提供了FBG的外部紧张和内部响应之间的线性过渡的证据,因此获得了恒定的转化因子。在共同拉伸试验中的应用证明了通过FBG的精确应变测量及其耐久性,直到样品失效前的短时间。这些调查结果构成了真实结构部件内使用FBG的基础,从而在未来的工作中生产智能部件。作为结论,使用FBG的内部应变测量具有与常用方法相比提供额外的应变数据,从而改善设计过程以及在操作条件下监测浇铸部件。

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