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Correlations between High-Temperature Oxidation Kinetics and Thermal Radiation Characteristics of Micro-Structured Nickel Surfaces Oxidized at 1173 K

机译:在1173 k下氧化微结构镍表面的高温氧化动力学与热辐射特性的相关性

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摘要

Micro-structured surface functional materials were widely used in electronics, batteries, solar cells, and many other products. However, oxidation at high temperatures greatly affects the material service life and performance. This study focuses on the oxide layer characteristics after high-temperature oxidation and the thermal emissivity of metal materials with micro-structured surfaces. Micro-structured surfaces with various groove morphologies were prepared on 99.9% purity nickel samples. The high-temperature oxidation characteristics of the nickel samples with the microstructure surfaces and the total hemispherical emissivities were measured after various oxidation times in high-temperature (1173 K) air to characterize the correlations between the micro-structure surface oxidization and the emissivity at elevated temperatures. The initial surface roughness greatly affects the surface roughness after oxidation with the oxidation increasing the surface roughness on smooth or less rough surfaces but making the surface smoother for very rough surfaces. The oxidation results show that rougher initial surfaces have larger oxide grain sizes with longer oxidation times leading to smaller grain sizes. The measured total hemispherical emissivity increased with the temperature (500–1400 K) and the oxide layer thickness. The experiments further illustrates that, for the same oxide layer thickness, the measured emissivities become larger for oxides with larger grain sizes caused by the rougher original surfaces. This analysis provides an understanding of the oxidation kinetics of microstructured surfaces and how the oxidized microstructure surfaces affect the thermal radiation properties.
机译:微结构化表面的功能材料被广泛应用于电子,电池,太阳能电池,和许多其他产品。然而,在高温下的氧化极大地影响材料使用寿命和性能。本研究着重于后高温氧化和金属材料与微结构化表面的热发射率的氧化物层的特性。具有各种槽的形态微结构化表面被上99.9%的纯度镍的样品制备。在高温(1173 K)空气各种氧化次后测量了镍的样品与微结构的表面和所述总半球辐射率的高温氧化特性的微观结构表面氧化和辐射率之间表征的相关性在升高的温度。初始表面粗糙度大大影响与氧化增加在光滑或更小的粗糙表面的表面粗糙度,但使表面平滑非常粗糙的表面氧化后的表面粗糙度。氧化反应结果表明,初始粗糙表面具有更大的氧化物的晶粒尺寸与导致更小的晶粒尺寸较长的氧化时间。测得总半球发射率随温度(500-1400 K)和氧化物层的厚度增加。实验还示出,对于相同的氧化物层的厚度,测得的辐射率成为氧化物较大具有较大晶粒尺寸由粗糙的原始表面而引起的。该分析提供微结构化表面和如何被氧化的微结构表面影响的热辐射性质的氧化动力学的理解。

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