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Research and development of oxidation, wear and corrosion resistant materials at high temperature by surface modification using ion processing

机译:离子处理表面改性的高温抗氧化,耐磨,耐腐蚀材料的研究与开发

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摘要

A multi-year project has been carried out to develop the oxidation, wear and corrosion resistant materials at high temperature for saving energy or reducing discharge of CO2. The elementary technologies for surface modification include ion implantation and/or thin film coating. Furthermore, plasma-based ion implantation (PBII) techniques were investigated for developing ion implantation technique to the specimens with three-dimensional shapes.As a result, it was found that the ion implantation with some elements including Nb, high-temperature Nb ion implantation and Nb+C combined implantations are effective for improving the oxidation resistance of TiAl alloy. Also, fluorine PBII treatment is effective for improving the oxidation resistance of the TiAl alloy with three-dimensional shapes.Furthermore, the thin film coating of high-Al alloys such as CoNiCrAlY, TiAIN and NiCrAl provide a promising surface modification method for improving the oxidation, wear and corrosion resistance of steels and alloys at high temperature. These effects are based on formation of a protective Al2O3 oxide scale on material surfaces. For practical application to sliding seal materials, the TiCrN film was applied to the actual seal ring for steam turbines, and its sliding properties were successful performance.The techniques proposed in this project provide useful information for all of the material systems required to use at elevated temperature. Several results of practical applications will be presented along with laboratory test results. (c) 2004 Elsevier B.V. All rights reserved.
机译:已经开展了一个多年项目,以开发高温下的抗氧化,耐磨和耐腐蚀材料,以节省能源或减少CO2排放。用于表面改性的基本技术包括离子注入和/或薄膜涂层。此外,还研究了基于等离子体的离子注入(PBII)技术,以发展对具有三维形状的标本的离子注入技术。结果,发现了包括Nb在内的某些元素的离子注入,高温Nb离子注入Nb + C联合注入对提高TiAl合金的抗氧化性有效。此外,氟PBII处理对于改善三维形状的TiAl合金的抗氧化性是有效的。此外,高铝合金如CoNiCrAlY,TiAIN和NiCrAl的薄膜涂层为改善氧化性提供了有希望的表面改性方法,钢和合金在高温下的耐磨性和耐腐蚀性。这些效果是基于在材料表面形成保护性的Al2O3氧化物垢。为了实际应用于滑动密封材料,将TiCrN薄膜应用于实际的汽轮机密封环,其滑动性能是成功的表现。本项目中提出的技术为在高温下使用所需的所有材料系统提供了有用的信息。温度。将提供一些实际应用结果以及实验室测试结果。 (c)2004 Elsevier B.V.保留所有权利。

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