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The solidification behavior of Nb Ni Ti alloys in the primary α-Nb phase region is investigated to reveal the potential solidification paths.
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Several numerical examples are considered to validate the method and examine its potential for modeling solidification of practical alloy systems.
Both spray and freeze drying methods have been found to be potential for the solidification of liquid SMEF.
Increasing the substrate preheating temperatures (from 27 °C to 300 °C) delays solidification but increases the potential of substrate melting.
This economic composite-powder preparation method involving rapid solidification process may have a potential for producing good composite materials.
Increasing the temperature potential enhanced the heat flux during the solidification of first 50% of PCM mass and its effect was more pronounced at higher fill volumes.
After the later stage treatments, like landfill and solidification, waste drilling fluids also have potential detrimental to the environment and health.
Laser engineered net shaping (LENS) technology, due to its ability in melting and solidification of neat ceramic materials, exhibits great potential for direct fabricating net-shaped ceramic structures.
A design map was proposed to predict dendritic growth with and without tip-splitting, offering potential for simulating dendritic growth and microstructure evolution in solidification of alloys.
The refinement in grain size at high cooling rates (>104 K/s) is also attributed to the potential heterogeneous nucleation of grains ahead of the epitaxially growing solidification front.
Each plate was coated with phenanthrene after solidification, and the colonies with clear zones were selected as potential phenanthrene-degrading bacteria.
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