The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is studied with an improved nanoindentation creep method. Using the dynamic contact stiffness thermal drift influences can be minimized and reliable creep data can be obtained from nanoindentation creep experiments even at enhanced temperatures and up to 10 h. For face-centered cubic (fcc) metals it was found that the creep behavior is strongly influenced by the microstructure, as nanocrystalline (nc) as well as ultrafine-grained (ufg) samples show lower stress exponents when compared with their coarse-grained (cg) counterparts. The indentation creep behavior resembles a power-law behavior with stress exponents n being ∼ 20 at room temperature. Fo...
A nanoindentation strain-rate jump technique has been developed for determining the local strain-rat...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
Scanning electron microscope (SEM) in situ high temperature nanomechanical testing has received a lo...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
Nanoindentation creep behavior and underlying mechanisms of nanocrystalline (NC) Ni and NC Ni-20 wt%...
Creep properties of polycrystalline Tin (Sn) and single crystal Aluminium (Al) were studied by two n...
Nanocrystalline(nc)and ultra fine grain(UFG) nickel was produced by electrode position technique in ...
Nanocrystalline(nc)and ultra fine grain(UFG) nickel was produced by electrode position technique in ...
To overcome the newly found difficulties in estimating the creep exponent through the popular consta...
The size effects on indentation creep were studied on single-crystal Ni3Al, polycrystalline pure Al,...
Nanocrystalline materials with grain size less than 100 nm have been receiving much attention becaus...
Traditionally, time-dependent properties of nanocrystalline metals have been measured on bulk sample...
Nanoindentation creep tests were performed in the depth range from about 28 to 190 nm on nanocrystal...
A nanoindentation strain-rate jump technique has been developed for determining the local strain-rat...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
Scanning electron microscope (SEM) in situ high temperature nanomechanical testing has received a lo...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
Nanoindentation creep behavior and underlying mechanisms of nanocrystalline (NC) Ni and NC Ni-20 wt%...
Creep properties of polycrystalline Tin (Sn) and single crystal Aluminium (Al) were studied by two n...
Nanocrystalline(nc)and ultra fine grain(UFG) nickel was produced by electrode position technique in ...
Nanocrystalline(nc)and ultra fine grain(UFG) nickel was produced by electrode position technique in ...
To overcome the newly found difficulties in estimating the creep exponent through the popular consta...
The size effects on indentation creep were studied on single-crystal Ni3Al, polycrystalline pure Al,...
Nanocrystalline materials with grain size less than 100 nm have been receiving much attention becaus...
Traditionally, time-dependent properties of nanocrystalline metals have been measured on bulk sample...
Nanoindentation creep tests were performed in the depth range from about 28 to 190 nm on nanocrystal...
A nanoindentation strain-rate jump technique has been developed for determining the local strain-rat...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
Scanning electron microscope (SEM) in situ high temperature nanomechanical testing has received a lo...