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Oxidation Protection of γ-TiAl Alloys by Intermetallic Ti-Al-Cr-Zr Coatings

机译:金属间三铝合金γ-铝合金氧化保护保护保护

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The oxidation behavior of γ-TiAl specimens coated with an intermetallic Ti-49Al-34Cr-4Zr layer was investigated at 1000°C under cyclic conditions in laboratory air. The 11 μm thick coating was produced using a combined technique of high power impulse magnetron sputtering and unbalanced magnetron sputtering. The as-deposited coating exhibited a dense layered structure and excellent adhesion to the substrate. The Ti-Al-Cr-Zr coating possessed high oxidation resistance associated with the formation of a thin continuous alumina scale for exposure time periods exceeding 1000 cycles of 1 h dwell time at 1000°C. During the high temperature exposure, the coating being amorphous in the as-deposited condition became crystalline exhibiting different polytypes of Ti(Cr,Al)_2 Laves phases with Ti probably partially substituted by Zr and Nb. Due to alumina formation and interdiffusion the coating was depleted in aluminum and chromium as well as enriched in titanium. After 1000 cycles at 1000°C, the coating consisted of an outer layer of the hexagonal C14 Laves phase and an inner layer of a probably orthorhombic phase whose structure was not yet determined. In both layers, pores and fine precipitates rich in Zr and Y were found.
机译:在实验室空气中的环状条件下在1000℃下在1000℃下研究涂有金属间Ti-49Al-34Cr-4Zr层的γ-Tial样品的氧化行为。使用高功率脉冲磁控溅射和不平衡磁控溅射的组合技术生产11μm厚的涂层。沉积的涂层表现出致密的分层结构和对基材的优异粘附性。 Ti-Al-Cr-Zr涂层具有与薄连续氧化铝刻度的形成相关的高抗氧化性,用于暴露时间段超过1000℃的1小时停留时间的1000个循环。在高温暴露期间,在沉积的条件下是无定形的涂层变成了具有可能被Zr和Nb部分取代的Ti(Cr,Al)_2型Laves相的晶体的结晶。由于氧化铝形成和相互作用,涂层在铝和铬中耗尽,以及富含钛。在1000℃下1000次循环后,涂层由六方C14熔胃阶段的外层组成,并且其结构尚未确定的可能正交相位的内层。在两层,发现富含Zr和Y的毛孔和细沉淀物。

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