International Scientific Publications
© 2007-2026 Science Events Ltd
Termeni de utilizare  ·  Politica de confidențialitate
Language English French Polish Romanian Bulgarian
Conference room
Materials, Methods & Technologies 2026, 28th International Conference
13-16 August, Burgas, Bulgaria
Call for Papers

Materials, Methods & Technologies, Volume 14, 2020

A FINITE ELEMENT METHOD FOR PREDICTION OF MACROSEGREGATION WITH SOLIDIFICATION COLUMNAR
Qipeng Chen, Houfa Shen
Pagini: 1-8
Publicat: 12 Sep 2020
Vizualizări: 2,193
Descărcări: 313
Rezumat: A finite element method (FEM) was developed to predict macrosegregation during alloys solidification with columnar structure. A fractional step method was employed to solve the thermosolutal convection in the mushy zone with a damping convection. The velocity and pressure were decoupled and interpolated by equal-order linear triangular elements. The time derivative terms were discretized by a fully implicit Euler backward method. The convection-diffusion equations of energy, solute and momentum were spatially discretized by the consistent SUPG method, and the terms of convection, diffusion, pressure gradient, Darcy drag, and buoyancy were integrated using the second-order Crank-Nicolson method. A solution procedure was designed to couple the resolutions of conservations of energy, solute and momentum, as well as the microsegregation model at an overall computational efficiency and accuracy. The FEM was applied to predict macrosegregation during solidification of Pb-18wt%Sn alloy in a rectangular mold. The macrosegregation maps, temperature fields, velocity fields and liquid fraction fields, as well as evolutions of liquid fraction, average mass concentration and velocity magnitude were presented.
Cuvinte cheie: finite element, macrosegregation, solidification, fractional step, equal-order element
Citează acest articol: Qipeng Chen, Houfa Shen. A FINITE ELEMENT METHOD FOR PREDICTION OF MACROSEGREGATION WITH SOLIDIFICATION COLUMNAR. Journal of International Scientific Publications: Materials, Methods & Technologies 14, 1-8 (2020). https://www.scientific-publications.net/en/article/1002042/
Înapoi la cuprinsul volumului

Submit Feedback

We value your input! Use this form to report any concerns or provide feedback on our published articles. All submissions will be kept confidential.

Prin utilizarea acestui site, sunteți de acord cu Politica noastră de confidențialitate și Termenii și condițiile de utilizare. Folosim cookie-uri, inclusiv pentru analiză, personalizare și reclame.