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常規(guī)鑄造定向層片TiAl合金持久加載中的組織退化及改善途徑
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鋼鐵研究總院高溫材料研究所,鋼鐵研究總院高溫材料研究所,鋼鐵研究總院高溫材料研究所,鋼鐵研究總院高溫材料研究所,鋼鐵研究總院高溫材料研究所

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Microstructural degradation during creep loading and improvement methods for a directional lamellar TiAl alloy prepared by conventional casting
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High Temperature Material Division,Central Iron and Steel Research Institute,High Temperature Material Division,Central Iron and Steel Research Institute,High Temperature Material Division,Central Iron and Steel Research Institute,High Temperature Material Division,Central Iron and Steel Research Institute,High Temperature Material Division,Central Iron and Steel Research Institute

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    摘要:

    基于常規(guī)鑄造定向層片組織TiAl合金與PST晶體的組織差別,詳細討論這些組織差別對常規(guī)鑄造定向層片組織TiAl合金持久加載過程中組織退化的影響,并探討降低這些不利影響的微合金化途徑。結果表明:定向層片組織與PST晶體的差別主要包括存在層片團界和小角度取向差、Al元素成分偏析以及α2相體積分數(shù)高于熱力學平衡狀態(tài),同時,后續(xù)熱等靜壓導致等軸γ晶粒析出和層片間距增加也是另外的明顯差別。這些組織差別對定向層片組織持久加載過程中的組織退化造成不同程度的不利影響。其中,Al元素成分偏析和α2相體積分數(shù)過高促進了定向層片組織鑄態(tài)試樣的組織退化,熱等靜壓試樣中的等軸γ晶粒進一步加劇了其組織退化,這些均對定向層片組織持久壽命造成不利影響。而層片團界對組織退化的不利影響作用較小。此外,探討了Zr、C、Si微合金化抑制持久加載過程中組織退化進而改善持久性能的思路。

    Abstract:

    microstructure differences between the polysynthetically twinned crystal and the directional lamellar structure prepared by conventional casting for TiAl based alloy were analyzed, in order to detail discuss their influence on the microstructural degradation during creep loading. And micro-alloying methods were proposed to decrease the adverse effect. The microstructural differences mainly included colony boundary, Al segregation and excess α2 phase. Additionally, equiaxed gamma grain precipitation and lamellar coarsening during hot isostatic pressing were also other differences. These differences had adverse influence on the microstructure degradation of directional lamellar structure prepared by conventional casting during creep loading. Al segregation and excess α2 phase promoted the microstructural degradation for as-cast sample, and the equiaxed gamma grain precipitated during hot isostatic pressing aggravated the microstructural degradation. They caused significant reduction of creep rupture life. The effect of the former was less than that of the latter. The colony boundary had a little adverse effect on the microstructural degradation. Additionally, the methods that minor addition of Zr,Si,C improved the creep rupture properties by inhibiting microstructural degradation were also discussed.

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朱春雷,張熹雯,駱晨,李勝,張繼.常規(guī)鑄造定向層片TiAl合金持久加載中的組織退化及改善途徑[J].稀有金屬材料與工程,2018,47(2):560~566.[Zhu Chunlei, Zhang Xiwen, Luo Chen, Li Sheng, Zhang Ji. Microstructural degradation during creep loading and improvement methods for a directional lamellar TiAl alloy prepared by conventional casting[J]. Rare Metal Materials and Engineering,2018,47(2):560~566.]
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  • 收稿日期:2015-12-28
  • 最后修改日期:2016-07-29
  • 錄用日期:2016-09-14
  • 在線發(fā)布日期: 2018-03-15
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