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Microscale evaluation of laser cladded Inconel 625 exposed at high temperature in air

机译:在高温下暴露于空气中的激光熔覆Inconel 625的微尺度评估

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Ni-based superalloys offer resistance to high-temperature oxidation in different industrial sectors. These alloys can also be deposited as coatings onto metallic substrates by means of different techniques. In this work, a diode laser with carefully selected process parameters was used to generate Inconel 625 coatings onto ferritic and stainless steel substrates. The coatings obtained were exposed to high-temperature treatment in air and different exposition times were studied. The evolution of the coatings microstructure was analysed and depth-sensing indentation tests were performed to measure the evolution of elastic modulus and hardness with the exposition time. Finally, mechanical properties and microstructural changes were correlated. The results revealed that the average mechanical properties and the microstructure of the coatings were not affected by the steel used as the substrate. The treatment at 520 degrees C increased the amount of carbides and brought to the appearance of Laves phases. The treatment at 800 degrees C promoted the formation of mainly delta and Laves phases. These microstructural evolutions involved changes in the values of the mechanical properties of the coatings, which could control their response under operating conditions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:镍基高温合金可抵抗不同工业领域的高温氧化。这些合金也可以通过不同的技术作为涂层沉积在金属基材上。在这项工作中,使用具有精心选择的工艺参数的二极管激光器在铁素体和不锈钢基材上生成Inconel 625涂层。将获得的涂层在空气中进行高温处理,并研究了不同的曝光时间。分析了涂层微观结构的演变,并进行了深度感应压痕测试,以测量弹性模量和硬度随暴露时间的变化。最后,力学性能和微观结构的变化是相关的。结果表明,涂​​层的平均力学性能和微观结构不受用作基材的钢的影响。在520℃下进行的处理增加了碳化物的数量,并出现了拉夫斯相。 800摄氏度的处理促进了δ相和Laves相的形成。这些微观结构的演变涉及涂层机械性能值的变化,这可以控制它们在工作条件下的响应。 (C)2016 Elsevier Ltd.保留所有权利。

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