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Efficient oxidation protection of Ti- and TiAI-alloys by F-treatments

机译:通过F处理对Ti和TiAl合金进行有效的氧化保护

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Ti-alloys suffer from high oxidation rates and oxygen uptake during exposure in oxidizing environments at temperatures above approximately 600°C. Technical TiAI-alloys have the same problem due to the insufficient oxidation resistance at temperatures above 750°C. The use of these lightweight alloys is hence limited. The fluorine effect is a very promising way to improve the oxidation resistance of TiAI-alloys. Defined amounts of fluorine in the surface zone of TiAI-components change the oxidation mechanism. A protective alumina layer is formed which prevents further oxidation and subsequently allows the use of this new alloy family in several high temperature applications. The Al-content of standard Ti-alloys is not enough to get the fluorine effect to operate but after Al-enrichment of the surface zone a subsequent fluorination leads to the same results. In this paper results of oxidation tests of untreated and treated Ti- and TiAI-alloys will be presented and their behavior compared.
机译:钛合金在约600°C以上的氧化环境中暴露于氧化过程中会遭受高氧化速率和氧气吸收的困扰。 TiAl合金由于在750°C以上的温度下抗氧化性不足而具有相同的问题。因此限制了这些轻质合金的使用。氟效应是提高TiAl合金抗氧化性的非常有前途的方法。 TiAI组分表面区域中规定的氟含量会改变氧化机理。形成保护性氧化铝层,防止进一步氧化,并随后允许在多种高温应用中使用该新合金系列。标准Ti合金的Al含量不足以使氟效应起作用,但是在表面区域的Al富集之后,随后的氟化导致相同的结果。在本文中,将介绍未经处理和经过处理的Ti和TiAl合金的氧化测试结果,并比较其行为。

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