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%S-N Graph Plot for Fatigue Testing for the three specimens
%Defined Parameters
disp('The dimensions and parameters of the Test:');
disp('The diameter for each of the specimen, D=5mm');
disp('The distance from the end of the specimen and the minimum diameter of the specimen, L = 78mm');
D = 5; L = 78; N=5;
%The weight that are loaded (kg) are then later converted to Newton (N)
disp('The weight in Newton (N) applied on each of the specimen');
P = [7.580811,9.02244,10.38561,13.20022,14.63204];
disp('Using the Defined Parameters for all the value of (P), the stress is calculated using the formula of stress');
S = [240.8874,286.6965,330.0126,419.4494,464.9469];
%Determining the Number of Cycles done by the three Specimens
disp('The number of cycles done with stress applied and number of trials for Mild Steel');
for f = 1:N
Ms(f)=input(['Load Number:'num2str(f)','Cycles done:']);
f=f+1;
end
disp('The number of cycles done with stress applied of trials for Aluminium');
for d = 1:N
Ali(d)=input(['Load Number:'num2str(d)',Cycles Done:']);
d = d+1;
end
disp('The number of cycles done with stress applied and number of trials for Brass');
for g = 1:N-1
Brs(g)=input(['Load Number:'num2str(g)',Cycles Done: ']);
g = g+1;
end
%Arranging allt he values
disp('The Number Of Cycles taken by Aluminium');
disp(Ali);
disp('The Number Of Cycles taken by Mild Steel');
disp(Ms);
disp('The Number of Cycles taken by Brass');
disp(Brs);
%Plotting the S-N Curve for the three Specimens
%For Aluminium
figure
plot (Ali,S)
title('S-N graph (ALuminium)')
xlabel('Number of Cycles (N)')
ylabel('Stress Applied (N/mm^2)')
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