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熱處理對(duì)快速凝固Ti-48Al-4Cr合金組織影響規(guī)律研究
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衢州學(xué)院

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TG146.2

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Effect of heat treatment on microstructures evolution of rapidly solidified Ti-48Al-4Cr alloy
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quzhou university

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    摘要:

    采用單輥旋淬快速凝固設(shè)備制備了Ti-48Al-4Cr(at.%)薄帶,并在真空封裝后進(jìn)行熱處理實(shí)驗(yàn),研究熱處理對(duì)快速凝固Ti-48Al-4Cr合金的組織演變規(guī)律。結(jié)果表明,快速凝固Ti-48Al-4Cr合金凝固基體為等軸的γ相,基體中含有少量的B2相、α2相顆粒和片層組織;經(jīng)723℃保溫1h空冷后,亞穩(wěn)的α2相顆粒失穩(wěn),但片層組織仍然比較穩(wěn)定;熱處理溫度升高至932℃時(shí),片層組織中的桿狀α2相開始按照瑞利分解失穩(wěn),分解成大量短桿狀或者顆粒狀的α2相;在995℃保溫1h以后,基體中已較難發(fā)現(xiàn)片層組織存在,但存在著排列方向相同的棒狀α2相,同時(shí)在等軸γ相晶界處發(fā)現(xiàn)了數(shù)量較多的顆粒狀B2相。本論文的研究為進(jìn)一步研究快速凝固條件下的TiAl金屬間化合物的組織與相轉(zhuǎn)變提供了基礎(chǔ),豐富了快速凝固理論。

    Abstract:

    In this work the effect of heat treatment on microstructure of Ti-48Al-4Cr(at.%) alloy rapidly solidified at the wheel speed of 10m/s were experimentally investigated by using the single roller melt-spinning technique. The results indicate that after rapid solidification, the microstructures mainly consist of equiaxed γ phase, few volume fraction of α2, B2 phase particles and lamellar structures exists in the γ phase matrix. After heat treament at 723℃/1h, α2 particles becomes unstable. Annealing at 932℃ for 1h, the α2 plate in lamallar strucctures becomes unstable. The α2 plate in the lamellar structures is subdivided into rod-shaped α2 phase and α2 particles. Annealing at 995℃/1h, large volume fraction of lamellar structures dissolved, however, rod shaped α2 phase still exists. B2 phase is being precipatated at the grain boundary. This research has provided the basis of further studying on the microstructures and phase transformation of rapidly solidified Ti-Al intermetallics and enriched the theory of rapid solidification.

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朱冬冬,董多.熱處理對(duì)快速凝固Ti-48Al-4Cr合金組織影響規(guī)律研究[J].稀有金屬材料與工程,2016,45(1):177~181.[zhudongdong, dongduo. Effect of heat treatment on microstructures evolution of rapidly solidified Ti-48Al-4Cr alloy[J]. Rare Metal Materials and Engineering,2016,45(1):177~181.]
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  • 收稿日期:2014-12-08
  • 最后修改日期:2015-01-04
  • 錄用日期:2015-02-06
  • 在線發(fā)布日期: 2019-01-04
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