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Al含量微調(diào)對(duì)TiAl合金組織及壓縮力學(xué)性能的影響
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北京理工大學(xué),北京理工大學(xué),北京航空材料研究院,國(guó)營(yíng)121廠牡丹江北方合金工具有限公司,北京理工大學(xué),北京理工大學(xué)

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國(guó)家自然科學(xué)基金項(xiàng)目(面上項(xiàng)目,重點(diǎn)項(xiàng)目,重大項(xiàng)目)


Effects of aluminum content on microstructure and compressive properties of TiAl alloy
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Beijing Institute of Technology,Beijing Institute of Technology,Beijing Institute of Aeronautical Materials,Mudanjiang North Alloy Tools Co., Ltd.,Beijing Institute of Technology,Beijing Institute of Technology

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    摘要:

    研究了Al含量對(duì)TiAl合金微觀組織及壓縮力學(xué)性能的影響,并分析了其破壞機(jī)理。研究發(fā)現(xiàn),Al含量對(duì)TiAl合金微觀組織影響顯著。通過真空自耗電弧冶煉方法制備的Ti-46Al(at%)合金的組織為全層片組織,層片團(tuán)粗大,呈現(xiàn)柱狀晶特征;而Ti-50Al(at%)合金的組織為雙態(tài)組織,三維連通的網(wǎng)狀γ相將粗大的鑄造組織分割成細(xì)小的層片團(tuán)。力學(xué)性能研究發(fā)現(xiàn),與Ti-50Al(at%)合金相比,無論是在準(zhǔn)靜態(tài)還是動(dòng)態(tài)壓縮加載條件下,Ti-46Al(at%)合金都表現(xiàn)出較高的屈服強(qiáng)度,較低的抗壓強(qiáng)度以及較差的塑性變形能力。破壞機(jī)理分析表明,準(zhǔn)靜態(tài)壓縮加載條件下,在Ti-46Al(at%)合金中,微孔在γ/α2層片團(tuán)的α2相中萌生并聚集形成裂紋;而在Ti-50Al(at%)合金中,微孔同時(shí)在γ/α2層片團(tuán)中α2相中以及三維連通的網(wǎng)狀γ相中萌生,微孔聚集形成裂紋并擴(kuò)展;動(dòng)態(tài)壓縮加載條件下,在Ti-46Al(at%)合金中,在γ/α2層片團(tuán)中存在大量的α2相與γ相的相界,由于加載時(shí)間短,在相界處易引起位錯(cuò)塞積而導(dǎo)致應(yīng)力集中,致使微裂紋在相界處迅速萌生并擴(kuò)展;而在Ti-50Al(at%)合金中,微裂紋不僅在γ/α2層片團(tuán)中α2相與γ相的相界處萌生,同時(shí)也會(huì)在三維連通的網(wǎng)狀γ相中迅速萌生并擴(kuò)展,直至材料破壞。

    Abstract:

    The effects of aluminum content on microstructure and compressive properties of TiAl alloy were investigated, and the failure mechanism was also discussed. It is interesting to find that the content of aluminum remarkably influence the microstructure of TiAl alloys fabricated by Induction Skull Melting techniques. The microstructrue of Ti-46Al(at%) alloy was fully lamellar, and the γ/α2 lamellar clonies exhibit the characteristics of columnar crystals. The microstructrue of Ti-50Al(at%) alloy was duplex, which contains γ/α2 lamellar clonies and γ phase with 3D net structure. The microstructrue of Ti-50Al(at%) alloy is much finner than that of Ti-46Al(at%) alloy. Investigations on mechanical properties show that compared with Ti-50Al(at%) alloy, Ti-46Al(at%) alloy exhibits higher yield strength, lower ultimate compressive strength, and lower ductility under both quasi-static compression and dynamic compression. Failure analysis after quasi-static compression shows that in Ti-46Al(at%) alloy, micro-porous initiate in α2 phase of γ/α2 lamellar clonies. In Ti-50Al(at%) alloy, micro-porous initiate in both α2 phase of γ/α2 lamellar clonies and γ phase with 3D net structure. Thus, the failure mechanisms of both Ti-46Al(at%) alloy and Ti-50Al(at%) alloy is micro-porous coalescence fracture under quasi-static compression. Failure analysis after dynamic compression shows that in Ti-46Al(at%) alloy, micro-cracks intiated in phase boundary between γ phase and α2 phase. In Ti-50Al(at%) alloy, micro-cracks intiate in both phase boundary of γ/α2 lamellar clonies and γ phase with 3D net structure. With the increasing strain, the micro-cracks propagate rapidly, and lead to the failure of the alloys under dynamic compression.

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郝彥君,劉金旭,李建崇,王國(guó)輝,李樹奎,陳東. Al含量微調(diào)對(duì)TiAl合金組織及壓縮力學(xué)性能的影響[J].稀有金屬材料與工程,2017,46(3):754~759.[Hao Yanjun, Liu Jinxu, Li Jianchong, Wang Guohui, Li Shukui, Chen Dong. Effects of aluminum content on microstructure and compressive properties of TiAl alloy[J]. Rare Metal Materials and Engineering,2017,46(3):754~759.]
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  • 收稿日期:2014-12-04
  • 最后修改日期:2015-01-12
  • 錄用日期:2015-02-06
  • 在線發(fā)布日期: 2017-05-18
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