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Nondestructive testing of defects in adhesive joints

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higher than that <strong>of</strong> prist<strong>in</strong>e PVC. The glass transition temperature <strong>of</strong> both the composites was also<br />

slightly higher than prist<strong>in</strong>e PVC. Further the onset degradation temperature <strong>of</strong> PVC/nano-CaCO3<br />

composites was marg<strong>in</strong>ally higher than microcomposites and prist<strong>in</strong>e PVC. Thus this study shows<br />

that there is poor <strong>in</strong>teraction between PVC and the nano-CaCO3 filler. There is a need to modify<br />

<strong>in</strong>teraction between PVC and nano-CaCO3.<br />

Acknowledgement<br />

Authors thank the University Grants Commissions, New Delhi for provid<strong>in</strong>g f<strong>in</strong>ancial assistance<br />

under grants <strong>of</strong> Special Assistance Programme (SAP) at Departmental Research Support (DRS)<br />

Level.<br />

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