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Preparation and oxidation of a gradient NiCoCrAlYSiB coating deposited by a combined system of arc ion plating and magnetron sputtering

机译:电弧离子镀与磁控溅射相结合的沉积NiCoCrAlYSiB梯度涂层的制备和氧化

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A gradient NiCoCrAlYSiB coating was prepared by a combined system of arc ion plating and magnetron sputtering. After annealing, the elements of the gradient coating are chemically graded distributed with Al enrich in the outer layer and Cr enrich in the intermediate layer. In terms of the surface energy, the phase transformation from the transient alumina to stable alpha-alumina was discussed. After 300h oxidation, both the NiCoCrAlYSiB coating and the gradient coating can improve the oxidation resistance of DSM 11 substrates greatly due to the formation of thin and dense alumina scales. The oxidation rate of the gradient coating was reduced further comparing with that of the NiCoCrAlYSiB coating. This was attributed to the formation of TiO2, Y2O3 and aluminum yttrium oxides in the alumina scale formed on the surface of gradient. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过电弧离子镀和磁控溅射的组合系统制备了梯度NiCoCrAlYSiB涂层。退火后,对梯度涂层的元素进行化学分级,其中外层富铝,中间层富铬。就表面能而言,讨论了从过渡氧化铝到稳定α-氧化铝的相变。经过300h氧化后,由于形成了薄而致密的氧化铝鳞片,NiCoCrAlYSiB涂层和梯度涂层都可以大大提高DSM 11基材的抗氧化性。与NiCoCrAlYSiB涂层相比,该梯度涂层的氧化速率进一步降低。这归因于在梯度表面上形成的氧化铝鳞片中TiO 2,Y 2 O 3和铝钇氧化物的形成。 (c)2006 Elsevier B.V.保留所有权利。

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