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Curved Beam - VTU e-Learning

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Assume the load line passes through the centre of hook. Draw the<br />

critical section as shown in the figure.<br />

Inner radius of curved beam ri = 59.5mm<br />

Outer radius of curved beam ro = 59.5+111 = 170.5mm<br />

Radius of neutral axis rn =<br />

=<br />

<br />

<br />

<br />

<br />

..<br />

<br />

= 98.095mm<br />

<br />

<br />

<br />

<br />

.<br />

<br />

.<br />

Distance of centroidal axis from inner fiber c1 = <br />

Radius of centroidal axis rc = ri + c1<br />

= <br />

<br />

<br />

<br />

= 47.465+59.5= 106.965 mm<br />

Distance of neutral axis to centroidal axis e = rc - rn<br />

=106.965-98.095 =8.87mm<br />

Distance of neutral axis to inner radius ci = rn - ri<br />

= 98.095-59.5=38.595mm<br />

Distance of neutral axis to outer radius co = ro - rn<br />

= 170.5-98.095=72.0405mm<br />

Distance from centroidal axis to force l = rc -106.965<br />

= 47.465mm

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