MyJournals Home  

RSS FeedsMaterials, Vol. 13, Pages 966: Investigation of Peritectic Solidification Morphologies by Using the Binary Organic Model System TRIS-NPG (Materials)

 
 

21 february 2020 19:03:47

 
Materials, Vol. 13, Pages 966: Investigation of Peritectic Solidification Morphologies by Using the Binary Organic Model System TRIS-NPG (Materials)
 


Under pure diffusive growth conditions, layered peritectic solidification is possible. In reality, the competitive growth of the primary α-phase and the peritectic β-phase revealed some complex peritectic solidification morphologies due to thermo-solutal convection. The binary organic components Tris-(hydroxylmenthyl) aminomethane-(Neopentylglycol) were used as a model system for metal-like solidification. The transparency of the high-temperature non-faceted phases allows for the studying of the dynamic of the solid/liquid interface that lead to peritectic solidification morphologies. Investigations were carried out by using the Bridgman technic for process conditions where one or both phases solidify in a non-planar manner. Different growth conditions were observed, leeding to competitive peritectic growth morphologies. Additionally, the competitive growth was solved numerically to interpret the observed transparent solidification patterns.


 
188 viewsCategory: Chemistry, Physics
 
Materials, Vol. 13, Pages 965: Structural Properties and Water Uptake of SrTi1-xFexO3-x/2-? (Materials)
Materials, Vol. 13, Pages 968: Effect of Recrystallization on ? to ?-Sn Allotropic Transition in 99.3Sn-0.7Cu wt. % Solder Alloy Inoculated with InSb (Materials)
 
 
blog comments powered by Disqus


MyJournals.org
The latest issues of all your favorite science journals on one page

Username:
Password:

Register | Retrieve

Search:

Physics


Copyright © 2008 - 2024 Indigonet Services B.V.. Contact: Tim Hulsen. Read here our privacy notice.
Other websites of Indigonet Services B.V.: Nieuws Vacatures News Tweets Nachrichten