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The rod growth rate and area density were ∼ 2.0 2.5 nm/s, and ∼ 3 × 107 cm− 2, respectively.
A small amount of AgNO3 is put into the growth solution before seed addition to direct the rod growth and adjust the aspect ratio.
The analysis is numerically illustrated for the static menisci occurring in the NdYAG laser single crystal rod growth from the melt by edge-defined film-fed growth (E.F.G).
This kind of problems appears in semiconductor single-crystal rod growth from a melt by edge-defined film-fed growth (EFG) technique.
The obtained results can be useful in experiment planning and technology design of single-crystal rod growth by the EFG method.
This kind of results is useful in the experiment planning and technology design of single crystal rod growth from the melt by edge-defined film-fed growth (EFG) method.
Similar(48)
A theoretical model of rod eutectic growth is developed in this paper, which quantitatively evaluates the system and growth parameters that will give rise to large undercooling at the interface.
Moreover, the significant parameters for ZnO rod arrays growth and their optimal regions were also determined.
Rod eutectic growth in succinonitrile–(d camphor is investigated experimentally using directional solidification with specimen thicknesses ranging from 20 to 200 μm.
For a 6 mm diameter rod specimen, growth rates were slightly higher than the standard if correlated in terms of ΔK but, fall in line with the standard, if crack closure was taken into account.
It is concluded that this type of analysis is required for meaningful interpretation of experimental results regarding rod eutectic growth, even in the apparent thick-slab or "bulk" regime.
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