Search Results - "Cao, L.F."

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  1. 1

    A model for the thermodynamics of and strengthening due to co-clusters in Al–Mg–Si-based alloys by Starink, M.J., Cao, L.F., Rometsch, P.A.

    Published in Acta materialia (01-06-2012)
    “…An expanded model for the thermodynamics of co-clusters and their strengthening is presented and applied to predict co-cluster formation and strengthening in…”
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  2. 2

    Size effects on the tensile properties and deformation mechanism of commercial pure titanium foils by Wang, S., Niu, L., Chen, C., Pang, Y., Liao, B., Zhong, Z.H., Lu, P., Li, P., Wu, X.D., Coenen, Jan W., Cao, L.F., Wu, Y.C.

    “…To identify the size effects on the mechanical behavior of microparts is essential for micro-forming. Here, the size effect on the tensile properties of…”
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  3. 3

    Mechanical behavior and deformation mechanism of commercial pure titanium foils by Niu, L., Wang, S., Chen, C., Qian, S.F., Liu, R., Li, H., Liao, B., Zhong, Z.H., Lu, P., Wang, M.P., Li, P., Wu, Y.C., Cao, L.F.

    “…The work presents a detailed investigation of mechanical properties and deformation mechanism of ultrathin commercial pure Ti foils subjected to uniaxial…”
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  4. 4

    The influence of Sc solute partitioning on the microalloying effect and mechanical properties of Al-Cu alloys with minor Sc addition by Yang, C., Zhang, P., Shao, D., Wang, R.H., Cao, L.F., Zhang, J.Y., Liu, G., Chen, B.A., Sun, J.

    Published in Acta materialia (15-10-2016)
    “…A transmission electron microscope and an atom probe tomography were used to quantitatively characterize the microstructural evolution of Al-XCu alloys…”
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  5. 5

    Assembling dual precipitates to improve high-temperature resistance of multi-microalloyed Al–Cu alloys by Gao, Y.H., Cao, L.F., Kuang, J., Zhang, J.Y., Liu, G., Sun, J.

    Published in Journal of alloys and compounds (05-05-2020)
    “…Co-stabilization of multiple precipitates has attracted growing attention as a promising approach to improve the performance of Al-based alloys at elevated…”
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  6. 6

    Zr alloying effect on the microstructure evolution and plastic deformation of nanostructured Cu thin films by Zhao, J.T., Zhang, J.Y., Cao, L.F., Wang, Y.Q., Zhang, P., Wu, K., Liu, G., Sun, J.

    Published in Acta materialia (15-06-2017)
    “…The magnetron sputtering technique was employed to prepare Zr-alloyed Cu thin films with Zr addition ranging from 0 to 7.0 at.%. Microstructure evolution with…”
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  7. 7

    Grain size stabilization of mechanically alloyed nanocrystalline Fe-Zr alloys by forming highly dispersed coherent Fe-Zr-O nanoclusters by Chen, Y.Z., Wang, K., Shan, G.B., Ceguerra, A.V., Huang, L.K., Dong, H., Cao, L.F., Ringer, S.P., Liu, F.

    Published in Acta materialia (01-10-2018)
    “…Grain size stabilization is crucial for the production and application of nanocrystalline (NC) materials. The mechanically alloyed (MA) NC Fe-Zr system is…”
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  8. 8

    General aspects related to the corrosion of 6xxx series aluminium alloys: Exploring the influence of Mg/Si ratio and Cu by Liang, W.J., Rometsch, P.A., Cao, L.F., Birbilis, N.

    Published in Corrosion science (01-11-2013)
    “…•A comprehensive study was conducted upon Al–Mg–Si alloys with differing Mg/Si ratio and Cu content.•Corrosion investigations included naturally aged, under-,…”
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  9. 9

    Tuning the microstructure and mechanical properties of magnetron sputtered Cu-Cr thin films: The optimal Cr addition by Li, X.G., Cao, L.F., Zhang, J.Y., Li, J., Zhao, J.T., Feng, X.B., Wang, Y.Q., Wu, K., Zhang, P., Liu, G., Sun, J.

    Published in Acta materialia (01-06-2018)
    “…Grain boundary (GB) engineering via alloying opens a pathway to design the interfaces in alloys for tuning their mechanical properties, thus it is quite…”
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  10. 10

    Solute repositioning to tune the multiple microalloying effects in an Al–Cu alloy with minor Sc, Fe and Si addition by Gao, Y.H., Cao, L.F., Kuang, J., Song, H., Liu, G., Zhang, J.Y., Sun, J.

    “…For multicomponent Al-based alloys, one of the most valuable approaches of microstructural design is to find a path to maximize the multiple microalloying…”
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  11. 11

    Co-stabilization of θ′-Al2Cu and Al3Sc precipitates in Sc-microalloyed Al–Cu alloy with enhanced creep resistance by Gao, Y.H., Cao, L.F., Yang, C., Zhang, J.Y., Liu, G., Sun, J.

    Published in Materials today. Nano (01-06-2019)
    “…As to the increasing demands for the light materials in weight-sensitive fields, scandium (Sc) is arguably known as one of the most attractive and effective…”
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  12. 12

    Strain path dependence of microstructure and annealing behavior in high purity tantalum by Liu, Y.H., Liu, S.F., Zhu, J.L., Deng, C., Fan, H.Y., Cao, L.F., Liu, Q.

    “…Unidirectional rolled (UR) and clock rolled (CR) high purity tantalum sheets were analyzed with an emphasis on the microstructural difference in surface…”
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  13. 13

    Dual effect of Cu on the Al3Sc nanoprecipitate coarsening by Gao, Y.H., Cao, L.F., Kuang, J., Zhang, J.Y., Liu, G., Sun, J.

    Published in Journal of materials science & technology (15-01-2020)
    “…It is generally considered that the Al3Sc nanoprecipitates are highly thermal stable, mainly due to quite slow Sc diffusion in the α-Al matrix. In this paper,…”
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  14. 14

    Aging characteristics and strengthening behavior of a low-carbon medium-Mn Cu-bearing steel by Zou, Y., Xu, Y.B., Han, D.T., Hu, Z.P., Song, H., Misra, R.D.K., Cao, L.F., Chen, S.Q.

    “…We describe here the aging characteristics and strengthening behavior of a low-carbon medium-Mn Cu precipitation-strengthened steel. Atom probe tomography…”
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  15. 15

    Si-mediated reassembly of interfacially segregated Sc atoms in an Al–Cu–Sc alloy exposed to high-temperature creep by Gao, Y.H., Cao, L.F., Kuang, J., Song, H., Zhang, J.Y., Liu, G., Sun, J.

    Published in Journal of alloys and compounds (10-12-2020)
    “…The formation of second-phase particles by solid-state precipitation is well-known as the most effective strengthening method for the light-weight aluminum…”
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  16. 16

    Effect of interlayers on the tensile behaviors of tungsten multilayered composites by Liu, R., Xia, X., Xie, M.Y., Chen, C., Wang, S., Zhong, Z.H., Cao, L.F., Wu, Y.C.

    Published in Journal of alloys and compounds (25-06-2020)
    “…Tungsten (W) laminate materials are very promising to improve the fracture toughness of tungsten. In this study, four kinds of tungsten laminated composites…”
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  17. 17

    An insight into Mg alloying effects on Cu thin films: microstructural evolution and mechanical behavior by Li, G.Y., Cao, L.F., Zhang, J.Y., Li, X.G., Wang, Y.Q., Wu, K., Liu, G., Sun, J.

    Published in Journal of materials science & technology (15-11-2020)
    “…How to design ultra-strong, light-weight Cu alloys is a long-term pursuit in materials community, which is technically superior and cost-effective for their…”
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  18. 18

    The evolution of shear bands in Ta-2.5W alloy during cold rolling by Wang, S., Wu, Z.H., Chen, C., Feng, S.K., Liu, R., Liao, B., Zhong, Z.H., Lu, P., Wang, M.P., Li, P., Coenen, Jan W., Cao, L.F., Wu, Y.C.

    “…The characteristics of shear bands in cold-rolled Ta-2.5W alloy are systematically investigated at different mechanical reduction levels. With increasing…”
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  19. 19

    Size effects on tensile properties and deformation mechanism of commercial pure tantalum foils by Wang, S., Feng, S.K., Chen, C., Liao, B., Zhong, Z.H., Li, P., Cao, L.F.

    “…The tensile properties and deformation microstructure of commercial high pure tantalum foils with thickness ranging from 30 μm to 200 μm have been…”
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  20. 20

    A twin orientation relationship between {001}〈210〉 and {111}〈110〉 obtained in Ta-2.5W alloy during heavily cold rolling by Wang, S., Feng, S.K., Chen, C., Jia, Y.L., Wang, M.P., Li, Z., Zhong, Z.H., Lu, P., Li, P., Cao, L.F., Wu, Y.C.

    Published in Materials characterization (01-03-2017)
    “…In order to show the formation mechanism of {001}〈210〉 orientation, a Ta-2.5W alloy was cold rolled to a large strain when many microbands are aligned with…”
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