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單晶γ-鈦鋁沿不同晶向裂紋擴展的分子動力學研究
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蘭州理工大學 機電工程學院,蘭州理工大學 機電工程學院,蘭州理工大學 機電工程學院,蘭州工業(yè)學院 機電工程學院,蘭州理工大學 機電工程學院,蘭州理工大學 機電工程學院

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國家自然科學基金資助(項目號51065014)


The molecular dynamics research of single crystal γ-TiAl alloy to crack propagation along the different crystalline phases
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Lanzhou University of Technology,Lanzhou,Lanzhou University of Technology,Lanzhou,Lanzhou University of Technology,Lanzhou,Lanzhou Institute of Technology,Lanzhou University of Technology,Lanzhou,Lanzhou University of Technology,Lanzhou

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    摘要:

    本文從微觀結構上研究了不同晶向下單晶γ-TiAl合金中微裂紋擴展過程及斷裂機理。利用分子動力學方法模擬單晶γ-TiAl合金中[100]、[110]及[111]晶向下預置微裂紋的擴展過程。研究表明:[100]晶向的裂紋啟裂應力值最小,裂紋強度最低,以脆性解理形式擴展,擴展過程中應力始終集中在裂尖上,該體系應力隨時間的增大而減小;[111]晶向裂紋啟裂應力值最大,裂紋強度最大,最難擴展,裂紋擴展過程表現(xiàn)出明顯取向效應,微裂紋通過裂尖發(fā)射滑移位錯及裂尖上形成的孿晶進行擴展,擴展過程中應力分布主要集中于裂尖和孿晶面上,且隨時間的增大而減?。籟110]晶向的微裂紋啟裂應力值介于其它兩個晶向之間,擴展初期為解理擴展,擴展到一定時間后裂尖原子出現(xiàn)混亂,之后裂尖發(fā)射位錯使得裂尖鈍化,隨著加載繼續(xù),鈍化裂尖的一端再次尖銳并且萌生與主裂紋不在一個平面上的子裂紋,最后主子裂紋相連形成呈臺階狀擴展的微裂紋,擴展過程表現(xiàn)出一定取向效應,應力始終集中在裂尖上,并隨時間的增大而減小。不同晶向對微裂紋擴展有很大影響。

    Abstract:

    The micro crack propagation process and the fracture propagation mechanism of the single crystal γ-TiAl alloy of different crystallographic orientation on the microstructure has been studied. The prefabricated micro crack propagation process was simulated of three different crack crystallographic orientations of [100]、[110]and[111] for the single crystal γ-TiAl alloy by the molecular dynamics method. It showed that: The crack stress value is the minimum of [100] crystal orientation, and the crack intensity is the lowest so that it is easy to extend in the form of brittle cleavage extension. The stress has always focused on the crack tip in the process of the extension,and the system of stress decreasesed with time increased,The crack stress value of the [111] orientation is the largest. And the larger the crack strength, the more difficult to extend. The crack propagation process showed the obvious orientation effect. The micro crack extended by the way of crack tip slip dislocation and twin slip was formed on the crack tip. The stress distribution mainly focused on the crack tip and twinning plane in the process of extension, and decreased with time increased. The crack stress value of [110] orientation between two other crystallographic orientations,The Early extension is brittle cleavage extension and the crack tip atoms into chaos after expanded to a certain time and after the crack tip launch dislocation makes the crack tip passivation .As load continued, one the end of passivation crack tip sharp again and sub crack initiation which is not a flat surface with the main crack. At last,the main crack and the sub crack connected to form the micro cracks of step extension. The extension process showed some effect of orientation. The stress always focused on the crack tip, and decreased with time increased. The different crystallographic orientation has great influence to the micro crack propagation.

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羅德春,芮執(zhí)元,付蓉,張玲,曹卉,剡昌鋒.單晶γ-鈦鋁沿不同晶向裂紋擴展的分子動力學研究[J].稀有金屬材料與工程,2017,46(12):3792~3798.[Luo Dechun, Rui Zzhiyuan, Fu Rong, Zhang Ling, caohui, Yan Changfeng. The molecular dynamics research of single crystal γ-TiAl alloy to crack propagation along the different crystalline phases[J]. Rare Metal Materials and Engineering,2017,46(12):3792~3798.]
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  • 收稿日期:2015-10-27
  • 最后修改日期:2016-03-28
  • 錄用日期:2016-04-26
  • 在線發(fā)布日期: 2018-01-04
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