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Free volume evolution of pre-annealed Zr55Al10Ni5Cu30 bulk metallic glass during rolling

Hu Yong Yan Hong-Hong Lin Tao Li Jin-Fu Zhou Yao-He

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Free volume evolution of pre-annealed Zr55Al10Ni5Cu30 bulk metallic glass during rolling

Hu Yong, Yan Hong-Hong, Lin Tao, Li Jin-Fu, Zhou Yao-He
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  • Traces of nanocrystals are introduced into Zr55Al10Ni5Cu30 bulk metallic glass through isothermally annealing the glass at 715 K for 30 min. The pre-annealed samples are rolled at different strain rates up to 95% thickness reduction at room temperature. The thermal stability and the free volume of the deformed sample are examined by differential scanning calorimetry. It is found that the thermal stability does not change with deformation degree. At any strain rate, free volume content increases continuously with the increase of deformation degree without saturation. As strain rate increases, however, the free volume content with the same deformation degree first increases and then decreases, which is significantly different from the case of the metallic glass with monolithic amorphous structure under plastic deformation.
    • Funds: Project supported by the National Natural Science Foundation of China (Grant No. 50771064) and the Specialized Research Foundation for the Doctoral Program of Higher Education of China (Grant No. 20060248022).
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    Trnbull D, Cohen M H 1970 J. Chem. Phys. 52 3038

    [2]

    Li G, Sun Y N, Gao Y P, Zhang X Y, Luo C J, Liu R P 2006 Acta Phys. Sin. 55 5394 (in Chinese) [李工, 孙懿楠, 高云鹏, 张新宇, 罗丛举, 刘日平 2006 物理学报 55 5394]

    [3]

    Spaepen F 1977 Acta Metall. 25 407

    [4]

    Chen M W 2008 Annu. Rev. Mater. Res. 38 445

    [5]

    Liu L, Sun M, Chen Q, Liu B, Qiu C L 2006 Acta Phys. Sin. 55 1930 (in Chinese) [柳林, 孙民, 谌祺, 刘兵, 邱春雷 2006 物理学报 55 1930]

    [6]

    Cao Q P, Li J F, Zhou Y H, Horsewell A, Jiang J Z 2006 Acta Mater. 54 4373

    [7]

    Cao Q P, Li J F, Zhou Y H, Horsewell A, Jiang J Z 2005 Appl. Phys. Lett. 87 101901

    [8]

    Cao Q P, Li J F, Jiang J Z, Zhou Y H 2008 J. Non-Cryst. Solids 354 5353

    [9]

    Liu H B, Li J F, Cao Q P, Zhou Y H 2007 Chin. Sci. Bull. 52 3443

    [10]

    Van den Beukel A, Sietsma J 1990 Acta Metall. Mater. 38 383

    [11]

    Slipenyuk A, Eckert J 2004 Scripta Mater. 50 39

    [12]

    Heggen M, Spaepen F, Feuerbacher M 2005 J. Appl. Phys. 97 033506

    [13]

    Cao Q P, Li J F, Zhou Y H, Jiang J Z 2008 Scripta Mater. 59 673

    [14]

    Li J, Wang Z L, Hufnagel T C 2002 Phys. Rev. B 65 144201

    [15]

    Wright W J, Hufnagel T C, Nix W D 2003 J. Appl. Phys. 93 1432

  • [1]

    Trnbull D, Cohen M H 1970 J. Chem. Phys. 52 3038

    [2]

    Li G, Sun Y N, Gao Y P, Zhang X Y, Luo C J, Liu R P 2006 Acta Phys. Sin. 55 5394 (in Chinese) [李工, 孙懿楠, 高云鹏, 张新宇, 罗丛举, 刘日平 2006 物理学报 55 5394]

    [3]

    Spaepen F 1977 Acta Metall. 25 407

    [4]

    Chen M W 2008 Annu. Rev. Mater. Res. 38 445

    [5]

    Liu L, Sun M, Chen Q, Liu B, Qiu C L 2006 Acta Phys. Sin. 55 1930 (in Chinese) [柳林, 孙民, 谌祺, 刘兵, 邱春雷 2006 物理学报 55 1930]

    [6]

    Cao Q P, Li J F, Zhou Y H, Horsewell A, Jiang J Z 2006 Acta Mater. 54 4373

    [7]

    Cao Q P, Li J F, Zhou Y H, Horsewell A, Jiang J Z 2005 Appl. Phys. Lett. 87 101901

    [8]

    Cao Q P, Li J F, Jiang J Z, Zhou Y H 2008 J. Non-Cryst. Solids 354 5353

    [9]

    Liu H B, Li J F, Cao Q P, Zhou Y H 2007 Chin. Sci. Bull. 52 3443

    [10]

    Van den Beukel A, Sietsma J 1990 Acta Metall. Mater. 38 383

    [11]

    Slipenyuk A, Eckert J 2004 Scripta Mater. 50 39

    [12]

    Heggen M, Spaepen F, Feuerbacher M 2005 J. Appl. Phys. 97 033506

    [13]

    Cao Q P, Li J F, Zhou Y H, Jiang J Z 2008 Scripta Mater. 59 673

    [14]

    Li J, Wang Z L, Hufnagel T C 2002 Phys. Rev. B 65 144201

    [15]

    Wright W J, Hufnagel T C, Nix W D 2003 J. Appl. Phys. 93 1432

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Publishing process
  • Received Date:  09 August 2011
  • Accepted Date:  28 April 2012
  • Published Online:  20 April 2012

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