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稀土Y对低膨胀高温合金显微组织和界面的影响
引用本文:WANG Rong|ming 1,2,HAN Ya|fang l,Eliezer D 3 (1. Beijing Institute of Aeronautical Materials,P O. Box 8l 4,Beijing 100095,China) (2. Laboratory of Atomic Imaging of Solids,Institute of Metal Research,Chinese Academy of Sciences,Sheny. 稀土Y对低膨胀高温合金显微组织和界面的影响[J]. 中国航空学报, 2001, 14(3)
作者姓名:WANG Rong|ming 1  2  HAN Ya|fang l  Eliezer D 3 (1. Beijing Institute of Aeronautical Materials  P O. Box 8l 4  Beijing 100095  China) (2. Laboratory of Atomic Imaging of Solids  Institute of Metal Research  Chinese Academy of Sciences  Sheny
作者单位:WANG Rong|ming 1,2,HAN Ya|fang l,Eliezer D 3 (1. Beijing Institute of Aeronautical Materials,P O. Box 8l 4,Beijing 100095,China
基金项目:Chinese foundation of aeronautical science( N o.96 G2 10 0 3)
摘    要:运用分析电子显微术、高分辨电子显微术、化学相分析和 X-射线衍射等方法分析研究了Fe-Ni-Co-Nb-Ti-Si低膨胀高温合金的相组成和相结构 ,以及稀土对合金的组织和性能的影响规律。结果显示 ,微量的稀土主要存在于合金的片状相中 ,并使其晶体结构发生变化。加入适量的稀土 Y后 ,合金片状相变得更加细密、均匀。和不含稀土的低膨胀高温合金相比 ,含 Y的低膨胀高温合金中片状相与基体的晶格错配由 0 .7%下降到 0 .0 7% ,表明界面应力明显下降

关 键 词:低膨胀高温合金  稀土元素  显微组织  界面  热膨胀

Effects of Yttrium on the Microstructures and Interfaces in a Low Expansion Superalloy
WANG Rong-ming,HAN Ya-fang,Eliezer D. Effects of Yttrium on the Microstructures and Interfaces in a Low Expansion Superalloy[J]. Chinese Journal of Aeronautics, 2001, 14(3)
Authors:WANG Rong-ming  HAN Ya-fang  Eliezer D
Abstract:The forms and structures of the phases in Fe Ni Co Nb Ti Si low expansion superalloys have been studied using analytical electron microscopy, high resolution electron microscopy, chemical phase analysis, X ray diffraction, etc . The effects of yttrium on the microstructures and properties in the superalloys have also been investigated. The results reveal that trace yttrium mainly located in the platelet precipitates makes the crystal structure changed. The platelet precipitates become smaller, denser and rather homogeneous with appropriate yttrium addition. Compared with the conventional low expansion superalloy, the misfit of the platelet phase with the matrix in the yttrium containing low expansion superalloy decreases from 0.7% to 0.07%, which indicates very low stress at the interface.
Keywords:heat resistant alloys  rare earth elements  microstructure  interfaces  thermal expansion
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