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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Wear Behavior and Mechanism of Fe-Al Intermetallic Coating Prepared by Hot-Dip Aluminizing and Diffusion
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Wear Behavior and Mechanism of Fe-Al Intermetallic Coating Prepared by Hot-Dip Aluminizing and Diffusion

机译:热浸渗铝扩散法制备的Fe-Al金属间化合物涂层的磨损行为和机理

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摘要

A Fe-Al intermetallic compound coating was prepared on AISI H13 steel by hot-dip aluminizing and subsequent high-temperature diffusion. Dry sliding wear tests of the Fe-Al intermetallic coating were performed at 298 K to 873 K (25 degrees C to 600 degrees C). The wear behavior of the Fe-Al intermetallic coating was noticed to vary markedly with the temperature and load. At 298 K (25 degrees C), the wear rate rapidly increased with an increase of the load. As the temperature was elevated, the wear rate dramatically decreased except for the cases under 300 N at 473 K and 673 K (200 degrees C and 400 degrees C). The Fe-Al intermetallic coating possessed an excellent elevated-temperature wear performance, especially at 673 K to 873 K (400 degrees C to 600 degrees C), but worse room-temperature one, which were noticed to be attributed to the existence and inexistence of thin tribo-oxide layers, respectively. Such a thin tribo-oxide layer was considered to provide a protection for the intermetallic compound. When the tribo-oxide layer did not form at room temperature or the formed one was massively delaminated above the critical load at elevated temperatures, Fe-Al intermetallic coating possessed poor wear resistance. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:通过热浸镀铝和随后的高温扩散,在AISI H13钢上制备了Fe-Al金属间化合物涂层。 Fe-Al金属间化合物涂层的干式滑动磨损测试是在298 K至873 K(25摄氏度至600摄氏度)下进行的。注意到Fe-Al金属间化合物涂层的磨损行为随温度和负载而显着变化。在298 K(25摄氏度)下,磨损率随着负载的增加而迅速增加。随着温度升高,除了在473 K和673 K(200摄氏度和400摄氏度)下在300 N以下的情况下,磨损率急剧下降。 Fe-Al金属间化合物涂层具有优异的高温磨损性能,尤其是在673 K至873 K(400摄氏度至600摄氏度)下,但室温下的磨损更差,这被认为是由于存在和不存在薄的摩擦氧化层。这种薄的摩擦氧化物层被认为为金属间化合物提供了保护。当在室温下未形成摩擦氧化层或在高温下高于临界载荷时将形成的层大量分层时,Fe-Al金属间化合物涂层的耐磨性较差。 (C)矿产,金属与材料学会和ASM International 2016

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