方向生長,獲得與生長方向平行的定向全片層組織;改變凝固路徑法則通過在凝固組織中獲得全β相生長,使最終片層組織與生長方向呈0o和45o夾角。本文綜述了兩種方法控制TiAl合金片層取向的原理及其研究進(jìn)展,討論了合金成分、凝固參數(shù)對(duì)片層取向控制過程的影響。針對(duì)國內(nèi)外γ-TiAl合金定向全片層組織制備的現(xiàn)狀,提出了需要進(jìn)一步研究的問題。"/>

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γ-TiAl合金中片層組織取向的控制
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Lamellar Orientation Control in γ-TiAl Alloys by Directional Solidification
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    摘要:

    γ-TiAl合金是應(yīng)用前景廣泛的輕質(zhì)高溫結(jié)構(gòu)材料,其全片層組織性能具有明顯的各向異性。籽晶法定向凝固利用具有特定片層取向的籽晶材料使高溫α相沿<110>方向生長,獲得與生長方向平行的定向全片層組織;改變凝固路徑法則通過在凝固組織中獲得全β相生長,使最終片層組織與生長方向呈0o和45o夾角。本文綜述了兩種方法控制TiAl合金片層取向的原理及其研究進(jìn)展,討論了合金成分、凝固參數(shù)對(duì)片層取向控制過程的影響。針對(duì)國內(nèi)外γ-TiAl合金定向全片層組織制備的現(xiàn)狀,提出了需要進(jìn)一步研究的問題。

    Abstract:

    Gamma titanium aluminide (γ-TiAl) alloys are candidate materials for lightweight high-temperature structural applications and the mechanical properties of the alloys with fully lamellar microstructure are extremely anisotropic. In the seed method of directional solidification, the seed crystal materials with special lamellar orientation are applied, the high-temperature α phases are controlled to grow along <110> direction, and finally the fully lamellar microstructures parallel to the growth direction are obtained. Another approach of controlling the orientation of lamellar microstructure is to change the solidification pathway so that the alloys solidify completely with β phases, and the obtained lamellar microstructure is aligned at 0° and 45° angles to the grow direction. This paper summarized the mechanism and recent research progress of the lamellar orientation control by the two methods in TiAl alloys, and systemically studied the effects of the alloy composition and processing parameters on the lamellar orientation control process. Finally the problems of aligned lamellar microstructure preparation in TiAl alloys at home and abroad that needed to be further investigated were presented.

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羅文忠,沈 軍,閔志先,傅恒志.γ-TiAl合金中片層組織取向的控制[J].稀有金屬材料與工程,2009,38(10):1864~1869.[Luo Wenzhong, Shen Jun, Min Zhixian, Fu Hengzhi. Lamellar Orientation Control in γ-TiAl Alloys by Directional Solidification[J]. Rare Metal Materials and Engineering,2009,38(10):1864~1869.]
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  • 收稿日期:2008-09-23
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