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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Characterization of the long time oxidation protection of fluorine implanted technical TiAl-alloys using ion beam methods
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Characterization of the long time oxidation protection of fluorine implanted technical TiAl-alloys using ion beam methods

机译:离子束法表征氟离子注入的TiAl合金的长期抗氧化性能

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In the present work the oxidation resistance of fluorine treated technical TiAl-alloys was investigated. Single and double fluorine beam line implantation was found to improve the high temperature oxidation resistance of this class of materials with Al-contents higher than 40 at.%. Calculated and measured fluorine depth profiles were compared. It was shown that the alloying elements do not modify significantly the fluorine profile and do not disturb the halogen effect. After single and double fluorine implantation and for different oxidation stages (isothermal/thermocyclic conditions) the maximum of the fluorine profile was measured by PIGE (Proton Induced Gamma Emission). The fluorine maximum was found to be located at the metal/oxide interface. The time dependence of the fluorine profile was determined as well. Double implantation led to a slower growing alumina layer. In this case a F-reservoir is obtained and improves the long term oxidation resistance of TiAl-based alloys.
机译:在本工作中,研究了氟处理的工业TiAl合金的抗氧化性。发现单和双氟束线注入可以改善这类铝含量高于40 at。%的材料的高温抗氧化性。比较了计算和测量的氟深度分布。结果表明,合金元素不会显着改变氟的分布,也不会干扰卤素的影响。在单氟和双氟注入之后,对于不同的氧化阶段(等温/热循环条件),通过PIGE(质子诱导的伽马发射)测量氟分布的最大值。发现最大氟位于金属/氧化物界面。还确定了氟分布的时间依赖性。两次注入导致氧化铝层的生长变慢。在这种情况下,将获得一个F储层,并改善了TiAl基合金的长期抗氧化性。

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