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Design and Stress Analysis of Extraterrestrial ... - The Black Vault

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Solving the last equation relative to oG, we obtain .the<br />

equation <strong>of</strong> strain compatibility<br />

ir<br />

r-atdr+A r 1<br />

Ra (3.84)<br />

Here<br />

(I, a 1 +E (3.85)<br />

From a system <strong>of</strong> two integral equations (3.82) <strong>and</strong> ( 3 .84)<br />

stresses<br />

ar <strong>and</strong> aT are determined by the method <strong>of</strong> successive approximations.<br />

Let us show the procedure for these calculations.<br />

To determine the first approximation <strong>of</strong> ar we assume in equation<br />

(3.84) (ar)/(E) = const. <strong>The</strong>n thie equation (3.811) is easily<br />

integrated <strong>and</strong> becomes<br />

where B is the new integration constant.<br />

ri•• Orat*r - - al -L B E<br />

r Srl+;& t (3.86)<br />

Ra<br />

After we substitute from equation (3.86) the approximate value<br />

<strong>of</strong> difference (a, - ar) into the equation <strong>of</strong> equilibrium (3.82),<br />

we find the first approximation for a.:<br />

1 (0 +P) E rkatdr- Eat h] dr-- O rhdr-+<br />

SRar<br />

336

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