Publications of Zhiming Li

Journal Article (99)

41.
Journal Article
Lu, X.; Zhao, J.; Yu, C.; Li, Z.; Kan, Q.; Kang, G.; Zhang, X.: Cyclic plasticity of an interstitial high-entropy alloy: experiments, crystal plasticity modeling, and simulations. Journal of the Mechanics and Physics of Solids 142, 103971 (2020)
42.
Journal Article
Zhang, W.; Yan, D.; Lu, W.; Li, Z.: Carbon and nitrogen co-doping enhances phase stability and mechanical properties of a metastable high-entropy alloy. Journal of Alloys and Compounds 831, 154799 (2020)
43.
Journal Article
Li, L.; Li, Z.: Aging induced segregation and nanoprecipitation in a severely deformed equiatomic high-entropy alloy. Materials Characterization 165, 110369 (2020)
44.
Journal Article
Li, R.; Wang, M.; Li, Z.; Cao, P.; Yuan, T.; Zhu, H.: Developing a high-strength Al–Mg–Si–Sc–Zr alloy for selective laser melting: Crack-inhibiting and multiple strengthening mechanisms. Acta Materialia 193, pp. 83 - 98 (2020)
45.
Journal Article
Luo, H.; Sohn, S. S.; Lu, W.; Li, L.; Li, X.; Soundararajan, C. K.; Krieger, W.; Li, Z.; Raabe, D.: A strong and ductile medium-entropy alloy resists hydrogen embrittlement and corrosion. Nature Communications 11, 3081 (2020)
46.
Journal Article
Li, L.; Kamachali, R. D.; Li, Z.; Zhang, Z.: Grain boundary energy effect on grain boundary segregation in an equiatomic high-entropy alloy. Physical Review Materials 4, 053603 (2020)
47.
Journal Article
Soundararajan, C. K.; Luo, H.; Raabe, D.; Li, Z.: Hydrogen resistance of a 1 GPa strong equiatomic CoCrNi medium entropy alloy. Corrosion Science 167, 108510 (2020)
48.
Journal Article
Moravcik, I.; Hornik, V.; Minárik, P.; Li, L.; Dlouhy, I.; Janovska, M.; Raabe, D.; Li, Z.: Interstitial doping enhances the strength-ductility synergy in a CoCrNi medium entropy alloy. Materials Science and Engineering A: Structural Materials Properties Microstructure and Processing 781, 139242 (2020)
49.
Journal Article
Ming, K.; Lu, W.; Li, Z.; Bi, X.; Wang, J.: Amorphous bands induced by low temperature tension in a non-equiatomic CrMnFeCoNi alloy. Acta Materialia 188, pp. 354 - 365 (2020)
50.
Journal Article
Moravcik, I.; Hadraba, H.; Li, L.; Dlouhy, I.; Raabe, D.; Li, Z.: Yield strength increase of a CoCrNi medium entropy alloy by interstitial nitrogen doping at maintained ductility. Scripta Materialia 178, pp. 391 - 397 (2020)
51.
Journal Article
Wu, X.; Li, Z.; Rao, Z.; Ikeda, Y.; Dutta, B.; Körmann, F.; Neugebauer, J.; Raabe, D.: Role of magnetic ordering for the design of quinary TWIP-TRIP high entropy alloys. Physical Review Materials 4 (3), 033601 (2020)
52.
Journal Article
Lu, W.; Liebscher, C.; Yan, F.; Fang, X.; Li, L.; Li, J.; Guo, W.; Dehm, G.; Raabe, D.; Li, Z.: Interfacial nanophases stabilize nanotwins in high-entropy alloys. Acta Materialia 185, pp. 218 - 232 (2020)
53.
Journal Article
Guo, Y.; He, J.; Li, Z.; Jia, L.; Su, H.; Zhang, J.; Zhang, H.: Tuning microstructures and improving oxidation resistance of Nb–Si based alloys via electron beam surface melting. Corrosion Science 163, 108281 (2020)
54.
Journal Article
He, J.; Makineni, S. K.; Lu, W.; Shang, Y.; Lu, Z.; Li, Z.; Gault, B.; Gault, B.: On the formation of hierarchical microstructure in a Mo-doped NiCoCr medium-entropy alloy with enhanced strength-ductility synergy. Scripta Materialia 175, pp. 1 - 6 (2020)
55.
Journal Article
Rao, Z.; Dutta, B.; Körmann, F.; Ponge, D.; Li, L.; He, J.; Stephenson, L.; Schäfer, L.; Skokov, K.; Gutfleisch, O. et al.; Raabe, D.; Li, Z.: Unveiling the mechanism of abnormal magnetic behavior of FeNiCoMnCu high-entropy alloys through a joint experimental - theoretical study. Physical Review Materials 4, 014402 (2020)
56.
Journal Article
Guo, Y.; Li, Z.; He, J.; Su, H.; Jia, L.; Zhang, J.; Liu, L.; Zhang, H.: Surface microstructure modification of hypereutectic Nb–Si based alloys to improve oxidation resistance without damaging fracture toughness. Materials Characterization 159, 110051 (2020)
57.
Journal Article
Han, L.; Xu, X.; Li, Z.; Liu, B.; Liu, C. T.; Liu, Y.: A novel equiaxed eutectic high-entropy alloy with excellent mechanical properties at elevated temperatures. Materials Research Letters 8 (10), pp. 373 - 382 (2020)
58.
Journal Article
Lu, E.; Makkonen, I.; Mizohata, K.; Li, Z.; Räisänen, J.; Tuomisto, F.: Effect of interstitial carbon on the evolution of early-stage irradiation damage in equi-atomic FeMnNiCoCr high-entropy alloys. Journal of Applied Physics 127 (2), 025103 (2020)
59.
Journal Article
Wu, G.; Balachandran, S.; Gault, B.; Xia, W.; Liu, C.; Rao, Z.; Wei, Y.; Liu, S.; Lu, J.; Herbig, M. et al.; Lu, W.; Dehm, G.; Li, Z.; Raabe, D.: Crystal–Glass High-Entropy Nanocomposites with Near Theoretical Compressive Strength and Large Deformability. Advanced Materials, 2002619 (2020)
60.
Journal Article
Ming, K.; Li, L.; Li, Z.; Bi, X.; Wang, J.: Grain boundary decohesion by nanoclustering Ni and Cr separately in CrMnFeCoNi high-entropy alloys. Science Advances 5 (12), eaay0639 (2019)
Go to Editor View