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INVESTIGATIONS ON THE OXIDATION BEHAVIOR OF MAX-PHASE BASED Ti2AlC COATINGS ON 7-TiAl

机译:7田型基于MAX-阶段Ti2ALC涂层的氧化行为的研究

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The oxidation resistance of the MAX-phase based material Ti2AlC was investigated as coating on y-TiAl. A 10 urn thick layer was deposited by low temperature DC magnetron sputtering on the high temperature alloy Ti-45Al-8Nb (at.%). The MAX-phase formation was enhanced after the deposition process by a heat treatment at 1000°C under high vacuum conditions (10~6 mbar). The oxidation resistance of the treated coating system was tested at 950°C in air and compared with the results of not annealed samples. In comparison to bare MAX phase material, the exposure tests show no continuous alumina scale formation on top of the annealed coating, similar to the not annealed specimens. The annealed and not annealed coatings failed during cyclic testing after 40 and 60 lh-cycles by spallation. SEM and EDS analysis after 2 1h-cycles showed the growth of a thick mixed oxide scale on top of the annealed MAX-phase coating. Moreover, α2-Ti3Al and α-Nb2Al formed at the substrate/coating interface, indicating Al as well as Ti depletion by enhanced diffusion processes within the Ti2AlC layer, that presumably leads to fast oxidation.
机译:研究了最大相基质的材料Ti2Alc的氧化抗性作为Y-Tial涂层。通过低温DC磁控溅射在高温合金Ti-45Al-8NB上沉积10瓮厚层(at。%)。通过在高真空条件下通过1000℃的热处理(10〜6毫巴),在沉积过程之后提高最大相形成。在空气中在950℃下测试处理过的涂布系统的氧化抗性,与不退火样品的结果进行比较。与裸最大相材料相比,曝光试验在退火涂层顶部没有连续氧化铝刻度形成,类似于不退火的标本。通过介绍在40和60 LH循环后的环状测试期间退火和不退火的涂层失效。 2 1H循环后SEM和EDS分析显示出退火的最大相涂层顶部的厚混合氧化物尺度的生长。此外,在基板/涂覆界面处形成的α2-Ti3Al和α-Nb2,表示Al以及通过Ti2Alc层内的增强的扩散过程,其可能导致快速氧化。

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