Method for obtaining carbon black microscopic morphology enlarging entity through 3D printing
A technology of microscopic morphology and 3D printing, which is applied in the field of transforming the microscopic morphology of carbon black into macroscopic entities, can solve problems that no one has raised, and achieve the effect of precise entity structure
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Embodiment 1
[0053] As an optional way, in the above method, the 3D printing is carried out at room temperature, and the material used is photosensitive resin. It uses photosensitive resin printing at room temperature, which saves energy and increases controllability. It is to macroscopically and accurately print out microscopic carbon black, which truly reflects the morphology and structure of carbon black.
[0054] Example 2:
Embodiment 2
[0056] 1) Disperse carbon black in absolute ethanol by ultrasonic (0.1mg carbon black, 200ml absolute ethanol), ultrasonic 20min;
[0057] 2) Drop the sonicated carbon black anhydrous ethanol solution on the clean mica sheet and dry it. Put the mica sheet into the sample chamber of the scanning probe microscope and scan it to obtain the microscopic topography of carbon black (nanoscale);
[0058] 3) Convert the microscopic morphology of carbon black from .xqd to .xqt, and then export the .exl data (256×256 points);
[0059] 4) Use MATLAB software to develop a program to process the .exl data:
[0060] clear
[0061] clc;
[0062] mm=xlsread('dat.xlsx');
[0063] mn=size(mm);
[0064] k=1;
[0065] for i=1:1:mn(1)
[0066] for j=1:1:mn(2)
[0067] xx(k,:)=[mm(1,j),mm(i,1),mm(i,j)];
[0068] k=k+1;
[0069] end
[0070] end
[0071] xlswrite('sj.xlsx',xx)
[0072] Import the database and get
[0073] x 1 the y 1 z 1
[0074] x 2 the y 2 z 2
[0075...
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