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首页> 外文期刊>DVS-Berichte >Hot-gas corrosion-erosion resistance of thermally post-treated Fe-Al-based arc-sprayed coating
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Hot-gas corrosion-erosion resistance of thermally post-treated Fe-Al-based arc-sprayed coating

机译:热处理后的Fe-Al基电弧喷涂涂层的抗热气腐蚀性能

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摘要

Solid-particle erosion of metals and alloys at elevated temperatures is one of the main reasons of the damage of components used in the energy production and utilization industries. Application of protective coating systems can be an attractive and economically reasonable solution for preventing the failure and increasing the durability of the components working in severe conditions of high-temperature corrosion and erosion. However, thermal spraying of intermetallic materials that have excellent high-temperature corrosion resistance is limited because of their low ductility. Present work reports the results of the investigation of abrasion wear resistance at elevated temperatures of combined coatings, which include the intermetallic layer. Such iron aluminide layers have been formed as a result of diffusion during the heat post-treatment of arc-prayed metallic coatings combining Fe- and Al-based layers. Post-treatment of arc-sprayed coatings was carried out by means of infrared radiation and induction heating. It was shown that the abrasion resistance of the developed coating tested at elevated temperatures (T > 500℃) is considerably higher than that of low-alloyed steel and some nickel-based alloys and depends on the test load condition. The high performance of intermetallic-based graded coatings at elevated temperatures makes them interesting for applications as a low-cost erosion-corrosion-resistant material.
机译:高温下金属和合金的固体颗粒腐蚀是能源生产和利用行业中使用的组件损坏的主要原因之一。保护涂层系统的应用可以是一种有吸引力的且经济上合理的解决方案,用于防止在高温腐蚀和侵蚀的严酷条件下工作的组件发生故障并提高其耐用性。然而,由于其延展性低,因此具有优异的耐高温腐蚀性的金属间材料的热喷涂受到限制。目前的工作报告了在高温下复合涂层(包括金属间层)的耐磨性研究结果。这种铝化铁层是由于在结合了铁基和铝基层的电弧喷涂金属涂层的热后处理过程中扩散而形成的。电弧喷涂涂层的后处理是通过红外辐射和感应加热进行的。结果表明,在高温(T> 500℃)下测试的涂层的耐磨性明显高于低合金钢和某些镍基合金的耐磨性,并且取决于测试负载条件。基于金属间化合物的梯度涂层在高温下的高性能使其成为低成本低成本耐腐蚀材料的应用。

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