Thermal and Mechanical Properties of Epoxy/Polyurethane Blend System Initiated by Cationic Latent Thermal Catalyst

Author:

Park Soo Jin1,Seok Su Ja2,Min Byung Gak3

Affiliation:

1. Inha University

2. Korea Research Institute of Chemical Technology

3. Chungju National University

Abstract

In this work, the blend of diglycidylether of bisphenol A (DGEBA) and modified polyurethane (PU) was prepared and characterized the cure behavior and mechanical interfacial properties. The N-benzylpyrazinium hexafluoroantimonate was used as a cationic initiator for cure, and the content of PU was varied within 0~20 phr. The cure behavior and mechanical interfacial properties were studied by DSC and the critical stress intensity actor (KIC) measurements. Also thermal stabilities were carried out by TMA and TGA analyses. It is found that the cure activation energy (Ea) was slightly increased on increasing the PU content, and a maximum value was noted at 10 phr PU. The mechanical interfacial properties measured from KIC showed a similar behavior with the results of conversion. These results were probably due to the increase of the hydrogen bonding between the hydroxyl groups of DGEBA and isocyanate groups in PU.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference10 articles.

1. C.A. May: Epoxy Resins (Marcel Dekker, New York 1998).

2. H. Lee and K. Nevile: Handbooks of Epoxy Resins (McGraw-Hill, New York 1986).

3. J.Y. Qian, R.A. Pearso, V Shaffer, and M.S. El-Aasser, Polymer, Vol. 38 (1997), p.21.

4. Y. Yanaka: Epoxy Resins Chemistry and Technology (Marcel Dekker, New York 1998).

5. S.J. Park, M.K. Seo, and J.R. Lee, J. Polym. Sci., Vol. 38 (2000), p.2945.

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