首页> 外文期刊>Journal of Thermal Spray Technology >Three-Dimensional Simulation of Porosity in Plasma-Sprayed Alumina Using Microtomography and Electrochemical Impedance Spectrometry for Finite Element Modeling of Properties
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Three-Dimensional Simulation of Porosity in Plasma-Sprayed Alumina Using Microtomography and Electrochemical Impedance Spectrometry for Finite Element Modeling of Properties

机译:用显微断层照相术和电化学阻抗谱三维模拟等离子喷涂氧化铝中的孔隙度,以进行特性有限元建模

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摘要

Moving from a 2-dimensional to a 3-dimensional (3D) approach to microstructure and properties has been expected eagerly for a long while to result in a dramatic increase in the knowledge of thermally sprayed coatings. To meet these expectations, in the present study, microtomography and electrochemical impedance spectroscopy (EIS) were carried out to simulate the microstructure of plasma-sprayed alumina. As-sprayed and excimer laser-processed deposits were studied. Some unexpected but relevant results, e.g., regarding pore orientation in the coatings, could be obtained. EIS led to the establishment of an equivalent electrical circuit representation of the microstructure which enabled modeling of the insulating properties as a function of interfaces and pore interconnection. The pore interconnection was studied by microtomography. From this 3D simulation, a finite element analysis of Young's modulus properties was developed and compared to experiments. Using this approach, excimer laser surface processing was shown to be an innovative process to modify insulating characteristics of plasma-sprayed alumina.
机译:长期以来,人们一直期待着从二维(3D)到三维(3D)方法转变为微观结构和性能,从而大大提高了热喷涂涂层的知识。为了满足这些期望,在本研究中,进行了显微断层照相术和电化学阻抗谱(EIS)以模拟等离子体喷涂氧化铝的微观结构。研究了喷镀和准分子激光处理的沉积物。可以获得一些出乎意料但相关的结果,例如关于涂层中的孔取向。 EIS导致建立了微结构的等效电路表示形式,从而可以根据接口和孔隙互连对绝缘特性进行建模。通过显微断层照相术研究了孔的互连。通过此3D模拟,开发了杨氏模量特性的有限元分析,并将其与实验进行了比较。使用这种方法,准分子激光表面处理被证明是一种创新的工艺,可以改变等离子喷涂氧化铝的绝缘特性。

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