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The effect of grain size on the effective thermal conductivity of porous alumina ceramics has been investigated.
We study the effect of grain size, strain rate and pressure on the local and effective behavior of nanostructured fcc materials with parameters obtained from experiments and atomistic simulations.
This confirms the difficulty of the alternative deformation modes and suggests a negligible suppressive effect of grain size on twinning in the case of the strongly textured fine-grained alloy.
Walter, L. M. & Morse, J. W. Reactive surface area of skeletal carbonates during dissolution: effect of grain size.
We also examined the effect of grain size and temperature.
Among the factors affecting grain boundary character distribution, literature data showed definitive effect of grain size and texture.
Regarding this function, the effect of grain size appears to be small.
This work quantifies the effect of grain size on grain boundary diffusivity.
In this study, fused samples were used to make homogeneous samples free from the effect of grain size and porosity.
The effect of grain size on dimensional accuracy, microstructure evolution and fracture behavior in microforming is also studied.
The effect of grain size and strain rate was also investigated and compared with monotonic tension.
More suggestions(15)
effect of field size
effect of firm size
effect of device size
effect of ensemble size
effect of pore size
effect of block size
effect of grain breakage
effect of population size
effect of particle size
effect of nanoparticle size
effect of grain orientation
effect of batch size
effect of window size
effect of micropore size
effect of crystal size
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