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Effects of aluminizing on the oxidation and hot corrosion behaviors of two-phase nickel aluminides

机译:渗铝对两相铝化镍的氧化和热腐蚀行为的影响

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摘要

In this work, aluminizing treatment to improve the oxidation resistance of two-phase [NiAl + Ni_3Al] Ni aluminides was performed and their surface characteristics were compared with the same alloys without aluminizing treatment in terms of microstructure, oxidation behaviors at 1100 deg C and hot corrosion resistance at 900 and 950 deg C. Two-step treatment of high Al activity low temperature (HALT) aluminizing was performed to form a NiAl compound layer of approximately 230 mu m thickness on the surface. Isothermal oxidation test at 1100 deg C showed that at the early stage of oxidation up to 2 h a metastable theta-Al_2O_3 phase was observed on the surface, which in turn would transform into dense equilibrium alpha- Al_2O_3 phase in the later stage of oxidation. Due to these dense phase formed on the surface, much improved oxidation resistance in the aluminized two-phase Ni aluminide, especially in the Ni-32 at. percent Al-0.5 at. percent B alloy could be obtained. Also improved resistance against hot corrosion up to 950 deg C was resulted from aluminized two-phase Ni aluminides.
机译:在这项工作中,进行了渗铝处理以提高两相[NiAl + Ni_3Al] Ni铝化物的抗氧化性,并将它们的表面特性与未经渗铝处理的相同合金的微观结构,1100℃下的氧化行为和高温相比较。在900和950摄氏度下具有抗腐蚀性能。进行了两步处理,进行了高铝活度低温(HALT)渗铝处理,以在表面上形成约230微米厚的NiAl化合物层。 1100℃的等温氧化试验表明,在氧化长达2 h的早期阶段,在表面上观察到亚稳态的theta-Al_2O_3相,进而在氧化的后期转变为致密的平衡α-Al_2O_3相。由于在表面上形成了这些致密相,在镀铝的两相铝化镍中,特别是在Ni-32 at中,抗氧化性得到了极大的改善。 Al-0.5 at。的百分比可以获得百分之百的B合金。铝化两相镍铝化物还提高了耐高达950摄氏度的热腐蚀性能。

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