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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Effect of Cr content on microstructure and mechanical properties of annealed large-dimensional bulk nanocrystalline Fe-Al-Cr alloys by self-propagating combustion synthesis
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Effect of Cr content on microstructure and mechanical properties of annealed large-dimensional bulk nanocrystalline Fe-Al-Cr alloys by self-propagating combustion synthesis

机译:CR含量对自蔓延燃烧合成产生退火大型大维纳米晶体铝合金Fe-Al-Cr合金的微观结构和力学性能的影响

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摘要

Large-dimensional bulk nanocrystalline Fe-Al-Cr alloys with different chromium contents (5, 10, 15 and 20 wt.%) were prepared by self-propagating combustion synthesis. After isothermal treatment at 1000 degrees C for 16 hours, the microstructure transformation and the deformation behavior of Fe-Al-Cr alloys were studied and discussed. After annealing, the nanocrystalline matrix of the alloys changed slightly, and the average grain size remained as approximately 20 nm. Owing to the changes in the distribution and shape of the second phase, the annealed nanocrystalline Fe-Al-Cr alloys with different chromium contents provided good plasticity and strength. The annealed Fe-Al-Cr alloy with 15 wt.% chromium achieved the best comprehensive mechanical properties.
机译:通过自蔓延燃烧合成制备具有不同铬含量(5,10,15和20重量%)的大维块状纳米晶Fe-Al-Cr合金。 在1000℃下的等温治疗16小时后,研究并讨论了Fe-Al-Cr合金的微观结构转化和变形行为。 退火后,合金的纳米晶体基质略微变化,平均晶粒尺寸保持约为约20nm。 由于第二阶段的分布和形状的变化,具有不同铬含量的退火纳米晶Fe-Al-Cr合金提供了良好的可塑性和强度。 退火的Fe-Al-Cr合金,15重量%。%铬取代了最佳的综合机械性能。

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