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首页> 外文期刊>Journal of intelligent material systems and structures >Development of a flame spraying coating-based fiber composite structure: A thermo-mechanical finite element study
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Development of a flame spraying coating-based fiber composite structure: A thermo-mechanical finite element study

机译:基于火焰喷涂的纤维复合结构的研制:热机械有限元研究

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摘要

The optical fiber smart composite structures have been widely applied for the structural health monitoring, and the packaging technique of integrating optical fiber sensor with host structure is one of the key issues. The flame spraying coating provides strong adhesive strength with good heat resistance, which is particularly suitable for the packaging applications in harsh environments. However, the elaboration process of flame spraying coating-based fiber composite structure faces great challenges due to the flame spraying mechanisms. This study evaluates numerically an overall effect of flame spraying coating formation process on the structural and the optical properties of the embedded fiber optic based on a three-dimensional finite element model. First, the lumped capacitance method is used; both the average heat flux density in the whole spraying process and the specific heat flux density of each torch sweep are estimated to initialize the thermo-mechanical modeling. Then, the stress distributions in both radial and axial directions of the embedded fiber are discussed separately. Next, the variation of refractive index of the embedded fiber optic due to the residual strain is also investigated. Finally, the elaboration parameters including torch displacement and velocity are evaluated and optimized. The simulation results show that the embedded fiber optic maintains good structural and optical properties with the presented elaboration conditions, and therefore its transmission and sensing performance can be ensured.
机译:光纤智能复合结构已广泛应用于结构性健康监测,并将光纤传感器与主机结构集成的包装技术是关键问题之一。火焰喷涂涂层提供具有良好耐热性的强粘合强度,这特别适用于恶劣环境中的包装应用。然而,由于火焰喷涂机构,火焰喷涂涂料的纤维复合结构的阐述过程面临着巨大的挑战。本研究评估了火焰喷涂涂层形成过程对基于三维有限元模型的嵌入式光纤的结构和光学性质的总体效果。首先,使用块状电容法;估计整个喷涂过程中的平均热通量密度和每个焊炬扫描的特定热通量密度均估计初始化热机械建模。然后,分别讨论嵌入式光纤的径向和轴向方向上的应力分布。接下来,还研究了由于残留菌株引起的嵌入光纤的折射率的变化。最后,评估和优化包括割炬位移和速度的精制参数。仿真结果表明,嵌入式光纤与所呈现的熔化条件保持良好的结构和光学性能,因此可以确保其传输和感测性能。

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