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Comparison of different fluorine treatments for the protection of TiAl-alloys against high temperature oxidation

机译:不同氟处理对TiAl合金的高温氧化保护作用的比较

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The oxidation resistance of TiAl-alloys can be improved by several orders of magnitude by treating the surface of the materials with small amounts of halogens especially Cl and F. The oxidation mechanism changes due to the so called halogen effect. The formation of a fast growing mixed oxide scale on untreated alloys is suppressed, instead a thin protective alumina scale is formed on samples after optimum treatment. The different methods only influence the surface region of the components so that the bulk properties are not affected. Recent results achieved with complex TiAl-samples showed the potential that the fluorine effect could be used for TiAl-components in several high temperature applications e.g. jet engines. TiAl-specimens were treated with fluorine and chlorine in several ways and their performance during high temperature oxidation tests in air was investigated. Results of isothermal and thermocyclic oxidation tests are presented. The long term stability of the fluorine effect lasted for at least one year under thermocyclic exposure at 900°C in laboratory air. The results are discussed in terms of later use of the fluorine effect for technical applications.
机译:TiAl合金的抗氧化性能可以通过用少量卤素(尤其是Cl和F)处理材料表面来提高几个数量级。氧化机理由于所谓的卤素效应而改变。可以抑制未经处理的合金上快速生长的混合氧化物水垢的形成,而是经过最佳处理后在样品上形成了薄的保护性氧化铝水垢。不同的方法仅影响部件的表面区域,因此不影响整体性能。用复杂的TiAl样品获得的最新结果表明,氟效应可用于TiAl组分的几种高温应用中,例如高温。喷气发动机。 TiAl样品用氟和氯进行了多种处理,并研究了它们在空气中高温氧化试验中的性能。给出了等温和热循环氧化测试的结果。在实验室空气中900°C的热循环暴露下,氟效应的长期稳定性至少持续了一年。将在以后将氟效应用于技术应用方面讨论结果。

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