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Protective Coating from Manganese Cobalt Oxide Powders Obtained by High Energy Ball Milling: Materials Characterization and Cell Environment Testing

机译:高能球铣削获得的锰钴氧化物粉末的保护涂层:材料表征和细胞环境测试

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The required application of ceramic coatings on metallic interconnects to avoid corrosion in SOFC oxidizing environment has pointed out the need to find cheap and environmental friendly approaches for the production of coating powders, to be applied by diffused and cost effective wet powder processing techniques like spray and slurry coating methods. High Energy Ball Milling (HEBM) is a mechanochemical powder processing technique here exploited to produce mixed composition coating precursor powders from Mn and Co oxides. The processed compound consists of nanostructured and intimately mixed Mn-Co oxides that rapidly react to produce the high temperature spinel phase during the sintering process. A slurry suspension was formulated and applied on a stainless steel substrate, evaluating the coating behaviour during 500h oxidation test at 800°C by means of Area Specific Resistance (ASR) evolution, X-Ray Diffraction (XRD) and Scanning Electron Microscopy (SEM) analyses.
机译:所需的陶瓷涂料在金属互连上施加避免SOFC氧化环境中的腐蚀所指出的是通过漫射和成本效益的湿粉加工技术来施加涂布粉末的廉价和环保方法,如喷射和成本效益的湿粉加工技术浆料涂料方法。高能球铣削(HEBM)是一种机械化学粉末加工技术,该技术利用以生产来自Mn和CO氧化物的混合组合物涂料前体粉末。加工后的化合物由纳米结构和紧密的混合Mn-Co氧化物组成,其在烧结过程中快速反应以产生高温尖晶石相。配制浆料悬浮液并施加在不锈钢基底上,通过面积的特异性电阻(ASR)进化,X射线衍射(XRD)和扫描电子显微镜(SEM)在800℃下在500h氧化试验期间评价涂布行为。分析。

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