首页> 外文会议>CORROSION - National Association of Corrosion Engineers Conference and Exposition >Development of High-Temperature Corrosion and Creep Resistant Nb, Mo and Cr Based Compositions with Protective Self-Healing Coating of Fe-45Cr-4Al-1Ni-0.3La Alloy
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Development of High-Temperature Corrosion and Creep Resistant Nb, Mo and Cr Based Compositions with Protective Self-Healing Coating of Fe-45Cr-4Al-1Ni-0.3La Alloy

机译:高温腐蚀和抗蠕变Nb,Mo和Cr基组合物,具有Fe-45%Cr-4%Al-1%Ni-0.3%La合金的保护自愈涂层

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In this work the results of experimental studies of new composite materials based on refractory metals with protective coatings of alumina forming Fe-45%Cr-4%Al-1%Ni-0.3%La alloy are given. The compositions with optimal correlation of heat and oxidation resistance were obtained on the Nb and Mo monocrystals and polycrystalline low alloyed Cr bulk samples coated with Fe-45%Cr-4%Al-1%Ni-0.3%La alloy using the electron-beam vacuum evaporation technique followed by thermal-chemical treatment at 1200°C. The obtained compositions were investigated using the SEM, WDS, AES and LM. The results of the tests demonstrated that the metallic-oxide hybrid coating layer formed on the surfaces of synthesized composition materials, at high working temperatures has an ability to heal the cracks developed as a result of mechanical and thermal damage. Moreover, the developed coating material is characterized by high adhesion with the metallic substrates, and therefore it has protective features against high temperatures, corrosion and a wear. The obtained compositions can be considered as an effective engineering material for specific applications where the parts and devices manufactured from this material will have a thermal activated self-healing surface and will be able to work for a long time in ordinary and other aggressive environments with variable thermal and mechanical loading conditions at temperatures as high as 1000-1200°C.
机译:在这项工作中的基于与氧化铝形成的Fe-45%的Cr-4%的Al-1%的Ni-0.3%的La合金的保护涂层难熔金属新型复合材料的实验研究的结果中给出。在铌和钼单晶获得具有耐热和耐氧化性的最佳相关性的组合物和多晶低合金使用电子束涂覆的Fe-45%的Cr-4%的Al-1%的Ni-0.3%La合金中的Cr大块样品真空蒸镀法,随后通过热化学处理在1200℃。使用SEM,WDS,AES和LM将得到的组合物进行了研究。该试验的结果表明,形成的合成组合物材料的表面上的金属氧化物的混合涂层,在高的工作温度具有愈合发展成为的机械和热损伤的结果裂纹的能力。此外,发达涂层材料的特征在于高粘合性与金属底物,因此它具有对高温,腐蚀和磨损保护功能。将所得到的组合物可以被认为是一种有效的工程材料,其中由该材料制造的零件和设备将具有一个热激活的自愈表面和将能够工作在具有可变普通和其它侵蚀性环境中很长一段时间的具体应用热负荷和机械负荷条件中的温度高达1000-1200℃。

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