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Investigation of absorptance and emissivity of thermal control coatings on Mg–Li alloys and OES analysis during PEO process

机译:PEO过程中Mg-Li合金热控制涂层吸收和发射率的研究

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Thermal control ceramic coatings on Mg-Li alloys have been successfully prepared in silicate electrolyte system by plasma electrolytic oxidation (PEO) method. The PEO coatings are mainly composed of crystallized Mg2SiO4 and MgO, which have typical porous structure with some bulges on the surface; OES analysis shows that the plasma temperature, which is influenced by the technique parameters, determines the formation of the coatings with different crystalline phases and morphologies, combined with "quick cooling effect" by the electrolyte; and the electron concentration is constant, which is related to the electric spark breakdown, determined by the nature of the coating and the interface of coating/electrolyte. Technique parameters influence the coating thickness, roughness and surface morphology, but do not change the coating composition in the specific PEO regime, and therefore the absorptance (αS) and emissivity (ε) of the coatings can be adjusted by the technique parameters through changing thickness and roughness in a certain degree. The coating prepared at 10?A/dm(2), 50?Hz, 30?min and 14?g/L Na2SiO3 has the minimum value of αS (0.35) and the maximum value of ε (0.82), with the balance temperature of 320?K.
机译:通过等离子体电解氧化(PEO)法在硅酸盐电解质系统中成功地制备了Mg-Li合金的热控制陶瓷涂层。 PEO涂层主要由结晶Mg2siO4和MgO组成,具有典型的多孔结构,表面上有一些凸起; OES分析表明,受技术参数影响的等离子体温度决定了具有不同晶相和形态的涂层的形成,与电解质相结合“快速冷却效应”;并且电子浓度是恒定的,其与电火花击穿有关,由涂层的性质和涂布/电解质的界面确定。技术参数影响涂层厚度,粗糙度和表面形态,但不改变特定PEO方案中的涂料组合物,因此可以通过改变厚度通过技术参数调节涂层的吸收率(αs)和发射率(ε)在一定程度上粗糙。在10℃下制备的涂层(2),50μl,30≤min和14?g / L Na 2 SiO 3具有αs(0.35)的最小值和ε(0.82)的最大值,平衡温度320?k。

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