Skip to main content

Free energy compositional diagram

 

Free energy compositional diagram for eutectic system


 

                                         Figure 1: Eutectic Phase diagram at atmospheric pressure.

 




                                          Figure 2: Free energy compositional diagram at Temperature T1.  





                                              Figure 3: Free energy compositional diagram at Temperature T2




                                    Figure 4: Free energy compositional diagram at Temperature T3.




                               Figure 5: Free energy compositional diagram at Temperature T4. 

Comments

Popular posts from this blog

Generating Lattice Structures

Lattice structures are getting lots of momentum in various fields due to their eccentric properties [1] . It is very important to have easy method to design these lattice structures. Lattice_Karak [2] helps in getting the work done. It is free software with UI made for students and researchers. Using Lattice_Karak  helps in designing various TPMS structures, export them into stl file for further processing like 3D printing and Finite Element analysis.   Lattice_Karak can be downloaded using the below link. https://drive.google.com/file/d/1WWL-UbPzErFCFVFJqw1as9w0M61aMxB4/view?usp=sharing   Videos on how to further use lattice_karak. https://youtu.be/CuHQwsxPa3I   https://sites.google.com/iith.ac.in/lattice-karak/home   Suggested materials for understanding more about TPMS: 1)      https://doi.org/10.1016/j.addma.2017.12.006 2)      https://doi.org/10.1016/j.matdes.2017.03.018 3)      https://doi.org/10...

Gyroid Structure

The below code written in the MATLAB® can be used for generating the Gyroid structure.  %% Program clc; clear all; n1 = 2;  % Number of cells in x Direction n2 = 2;  % Number of cells in y Direction n3 = 2; % Number of cells in z Direction   a=2*n1*pi; % x direction parameters b=2*n2*pi; % y direction parameters g=2*n3*pi;  % z direction parameters   s=0.01;   [x,y,z]=meshgrid(-0.5:s:0.5,-0.5:s:0.5,-0.5:s:0.5);   % Gyroid Formula u = (sin(a.*x).* cos(b.*y) + sin(b.*y).* cos(g.*z) + sin(g.*z).* cos(a.*x));   % Level Set equation c =0.7; Ts= -(u+c).*(u-c);    % Sheet based Gyroid Tsk= u + c;        % Skeletal based Gyroid Isosurface(x,y,z,Ts,0); Isocaps(x,y,z,Ts,0); %% Program Ends If very less knowledge about coding, then the below software can be used for generating Gyroid and other lattice structures. Using Lattice_Karak  helps in designing v...

Preparation of Bioink

  The below report gives detailed information on the preparation of Bioink. press the below link to access it Click here https://docs.google.com/document/d/1tRARvLOMNCCgVrJRtgExFnajDo-ZFRaM/edit?usp=sharing&ouid=116321863313590654612&rtpof=true&sd=true Image source:  Gopinathan J, Noh I. Recent trends in bioinks for 3D printing. Biomater Res. 2018 Apr 6;22:11. doi: 10.1186/s40824-018-0122-1. PMID: 29636985; PMCID: PMC5889544.   Biofabrication lab @IITH