Search Results - "Gao, K.Y."

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  1. 1

    Hot deformation behavior and constitutive equation of a new type Al–Zn–Mg–Er–Zr alloy during isothermal compression by Wu, H., Wen, S.P., Huang, H., Wu, X.L., Gao, K.Y., Wang, W., Nie, Z.R.

    “…Isothermal compression tests of a new type Al–Zn–Mg–Er–Zr alloy are carried out on a Gleeble-3800 thermal simulator at temperatures varying from 300 to 460°C…”
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  2. 2

    Synergetic effect of Er and Zr on the precipitation hardening of Al–Er–Zr alloy by Wen, S.P., Gao, K.Y., Li, Y., Huang, H., Nie, Z.R.

    Published in Scripta materialia (01-10-2011)
    “…The precipitation hardening of dilute Al–Er, Al–Zr and Al–Er–Zr alloys was investigated by microhardness measurements and transmission electron microscopy. The…”
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  3. 3

    Effect of whole-plant corn silage treated with lignocellulose-degrading bacteria on growth performance, rumen fermentation, and rumen microflora in sheep by Guo, W., Guo, X.J., Xu, L.N., Shao, L.W., Zhu, B.C., Liu, H., Wang, Y.J., Gao, K.Y.

    Published in Animal (Cambridge, England) (01-07-2022)
    “…Lignification of cellulose limits the effective utilisation of fibre in plant cell wall. Lignocellulose-degrading bacteria secrete enzymes that decompose…”
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  4. 4

    Effect of Er and Si co-microalloying on mechanical properties and microstructures of AlCuMg alloys by Liang, S.S., Ma, J.R., Guo, K.H., Wen, S.P., Wei, W., Wu, X.L., Huang, H., Gao, K.Y., Liu, B.S., Xiong, X.Y., Nie, Z.R.

    “…The effect of Er and Si on the evolution of precipitates in Al–Cu–Mg alloys during elevated temperature exposure was investigated. The Er segregation in…”
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  5. 5
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    Hot deformation behavior and processing map of a new type Al-Zn-Mg-Er-Zr alloy by Wu, H., Wen, S.P., Huang, H., Gao, K.Y., Wu, X.L., Wang, W., Nie, Z.R.

    Published in Journal of alloys and compounds (15-11-2016)
    “…Isothermal compression tests of a new type Al-Zn-Mg-Er-Zr alloy are carried out on a Gleeble-3800 thermal simulator at temperatures varying from 573 to 733 K…”
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  7. 7
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    Effects of homogenization on precipitation of Al3(Er,Zr) particles and recrystallization behavior in a new type Al-Zn-Mg-Er-Zr alloy by Wu, H., Wen, S.P., Huang, H., Li, B.L., Wu, X.L., Gao, K.Y., Wang, W., Nie, Z.R.

    “…The effects of homogenization treatments on the precipitation behavior of Al3(Er,Zr) particles and theirs effects on recrystallization resistance in a new type…”
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    Selective laser melting of Er modified AlSi7Mg alloy: Effect of processing parameters on forming quality, microstructure and mechanical properties by Guo, Y.W., Wei, W., Shi, W., Xue, D., Zhou, X.R., Wen, S.P., Wu, X.L., Gao, K.Y., Huang, H., Nie, Z.R.

    “…Selective Laser Melting (SLM) was used to fabricate Erbium-modified AlSi7Mg alloy. The work aims to investigate the effects of laser volumetric energy density…”
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  11. 11

    The synergetic effect of Si and Sc on the thermal stability of the precipitates in AlCuMg alloy by Liang, S.S., Wen, S.P., Wu, X.L., Huang, H., Gao, K.Y., Nie, Z.R.

    “…The effect of Si and Sc on the evolution of the precipitates during aging in Al4.0Cu0.5 Mg alloys was investigated by means of microhardness tests and…”
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  12. 12

    Precipitation evolution in Al–Er–Zr alloys during aging at elevated temperature by Wen, S.P., Gao, K.Y., Huang, H., Wang, W., Nie, Z.R.

    Published in Journal of alloys and compounds (15-10-2013)
    “…•We investigate the precipitation evolution of dilute Al–Er–Zr at 450 and 500°C.•The coarsening is controlled by the diffusion of solute atoms in the outer…”
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  13. 13

    Enhanced thermal-stability of AlCuMg alloy by multiple microalloying segregation of Mg/Si/Sc solute by Liang, S.S., Wei, W., Wen, S.P., Yuan, X.M., Wu, X.L., Huang, H., Gao, K.Y., Nie, Z.R.

    “…The multiple microalloying influences of Si & Sc on the aging behavior and thermal stability of Al-4Cu-0.5Mg alloy were systematically studied. The result…”
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  14. 14

    A study of precipitation strengthening and recrystallization behavior in dilute Al–Er–Hf–Zr alloys by Wu, H., Wen, S.P., Wu, X.L., Gao, K.Y., Huang, H., Wang, W., Nie, Z.R.

    “…A study on the precipitation hardening and recrystallization behavior of dilute Al–Er–Hf and Al–Er–Hf–Zr alloys has been carried out. The results show that…”
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  15. 15

    Effect of Er additions on the precipitation strengthening of Al–Hf alloys by Wu, H., Wen, S.P., Gao, K.Y., Huang, H., Wang, W., Nie, Z.R.

    Published in Scripta materialia (15-09-2014)
    “…Precipitation strengthening was investigated in dilute Al–Er, Al–Hf and Al–Er–Hf alloys. Combined addition of 0.045 at.% Er and 0.18 at.% Hf in Al gives a…”
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  16. 16

    Role of Yb and Si on the precipitation hardening and recrystallization of dilute Al–Zr alloys by Wen, S.P., Gao, K.Y., Huang, H., Wang, W., Nie, Z.R.

    Published in Journal of alloys and compounds (25-06-2014)
    “…•This article investigates Yb and Si on precipitation and recrystallization of Al-Zr.•Yb is more effective than Si to accelerate the precipitation of…”
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    Precipitation hardening and recrystallization behavior of AlMgErZr alloys by Wen, S.P., Wang, W., Zhao, W.H., Wu, X.L., Gao, K.Y., Huang, H., Nie, Z.R.

    Published in Journal of alloys and compounds (05-12-2016)
    “…The precipitation hardening and recrystallization behavior of AlMgErZr alloys have been investigated. The results show that Mg solute and its concentration has…”
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  19. 19

    The influence of Sc–Si clusters on aging hardening behavior of dilute Al-Sc-(Zr)-(Si) alloy by Liang, S.S., Wen, S.P., Xu, J., Wu, X.L., Gao, K.Y., Huang, H., Nie, Z.R.

    Published in Journal of alloys and compounds (25-11-2020)
    “…The aging hardening behaviors of Al-0.12Sc and Al-0.12Sc-0.2Zr (wt.%) alloys with the addition of Si range from 0.05 wt% to 0.3 wt% were investigated by…”
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  20. 20

    Optimization of stabilized annealing of Al-Mg alloys utilizing machine learning algorithms by Xue, D., Wei, W., Shi, W., Zhou, X.R., Qi, J.T., Wen, S.P., Wu, X.L., Gao, K.Y., Xiong, X.Y., Huang, H., Nie, Z.R.

    Published in Materials today communications (01-06-2023)
    “…The corrosion properties of the alloy are influenced by the physical parameters involved in the preparation process. Experiments to explore the preparation…”
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