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Electron‐beam processing of nylon 6 and HNBR blends. Part II: development of high strength, heat‐ and oil‐resistant thermoplastic elastomers
Author(s) -
Das PK,
Ambatkar SU,
Sarma KSS,
Sabharwal S,
Banerji MS
Publication year - 2006
Publication title -
polymer international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.592
H-Index - 105
eISSN - 1097-0126
pISSN - 0959-8103
DOI - 10.1002/pi.2033
Subject(s) - materials science , composite material , thermoplastic elastomer , molding (decorative) , elastomer , polymer blend , natural rubber , irradiation , scanning electron microscope , radiation resistance , nitrile rubber , thermoplastic , polymer , copolymer , physics , nuclear physics
The effects of electron‐beam irradiation on morphology, mechanical properties and on the heat and hot oil resistance of the thermoplastic elastomeric blend of 30:70 and 70:30, nylon 6 and hydrogenated nitrile rubber (HNBR) were investigated over the dose range 0–8 Mrad. The insoluble content of blends increased with increase in the radiation dose. The morphology of the blend was studied in scanning electron microscopy, with special reference to the effect of radiation prior to processing via injection molding. Irradiated pellets showed better mechanical properties after injection molding compared with irradiated sheets at low radiation dose. The observed differences in mechanical properties are explained on the basis of morphology of the blend. The blend properties were also found to have a strong dependence on nylon content. It was found that the blends rich in nylon had superior mechanical properties, hot oil and solvent resistance, whereas blends with higher HNBR content had better set and heat resistance. The effect of radiation on interaction in these blends was also evaluated and was found to induce possible inter‐chain crosslinking in the blends. Copyright © 2006 Society of Chemical Industry

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