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Nondestructive testing of defects in adhesive joints

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GLASS TRANSITION TEMPERATURE (Tg) VALUES OF MODIFIED AND UNMODIFIED<br />

EPOXY-SILICA HYBRID MATERIALS<br />

Glass Transition temperature <strong>of</strong> Epoxy-Silica hybrid materials<br />

S.No Specimens (Tg) deg Celsius<br />

1 Neat(Without<br />

Siloxane)<br />

2 TEOS 80<br />

106.92<br />

3 TEOS+DDS 106.09<br />

Glass Transition temperature <strong>of</strong> Am<strong>in</strong>e conta<strong>in</strong><strong>in</strong>g PDMS modified Epoxy-Silica hybrid materials<br />

MER-PDMS modified epoxy res<strong>in</strong>. IMER-<strong>in</strong>-situ silica precipitated PDMS modified epoxy res<strong>in</strong>.<br />

IMERC-<strong>in</strong>-situ silica precipitated PDMS modified epoxy res<strong>in</strong>.<br />

The glass transition temperature <strong>of</strong> the materials was studied by us<strong>in</strong>g Differential<br />

scann<strong>in</strong>g calorimetry. TA Qseries equipment was used. The test was carried out with a heat<strong>in</strong>g<br />

rate <strong>of</strong> 20°C/m<strong>in</strong> from 30°C to 200°C <strong>in</strong> the nitrogen atmosphere. The glass transition temperature

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