
Publications of Juan Li
All genres
    
  Journal Article (5)
1.
        
            Journal Article
            
           Quantitative insights into the dislocation source behavior of twin boundaries suggest a new dislocation source mechanism. Journal of Materials Research 36 (10), pp. 2037 - 2046 (2021)
          2.
        
            Journal Article
            
           Does the stacking fault energy affect dislocation multiplication? Materials Characterization 161, 110136 (2020)
          3.
        
            Journal Article
            
           Composition dependence of hardness and elastic modulus of the cubic and hexagonal NbCo2 Laves phase polytypes studied by nanoindentation. Journal of Materials Research 35 (2), pp. 185 - 195 (2020)
          4.
        
            Journal Article
            
           Microstructural origin of the outstanding durability of the high nitrogen bearing steel X30CrMoN15-1. Materials Characterization 159, 110049 (2020)
          5.
        
            Journal Article
            
           How close can indents be placed without risking an erroneous pop-in statistics? Materialia 7, 100378 (2019)
          Talk (2)
6.
        
            Talk
            
           Dislocation source activation by nanoindentation in single crystals and at grain boundaries. E-MRS Spring, Strasbourg, France (2018)
          7.
        
            Talk
            
           Differences in dislocation source activation stress in the grain interior and at twin boundaries using nanoindentation. Nanobruecken 2018, Erlangen, Germany (2018)
          Poster (1)
8.
        
            Poster
            
           Grain Boundaries acting as dislocation sources. Gordon Research Seminar "Thin Film & Small Scale Mechanical Behavior", Lewiston, ME, USA  (2018)
          Thesis - PhD (1)
9.
        
            Thesis - PhD
            
           Probing dislocation nucleation in grains and at Ʃ3 twin boundaries of Cu alloys by nanoindentation. Dissertation, Ruhr-Universität Bochum (2020)