The effect of electron beam irradiation on the tensile and dynamic mechanical properties of epoxidized natural rubber

Citation
Ct. Ratnam et al., The effect of electron beam irradiation on the tensile and dynamic mechanical properties of epoxidized natural rubber, EUR POLYM J, 37(8), 2001, pp. 1667-1676
Citations number
59
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
EUROPEAN POLYMER JOURNAL
ISSN journal
00143057 → ACNP
Volume
37
Issue
8
Year of publication
2001
Pages
1667 - 1676
Database
ISI
SICI code
0014-3057(200108)37:8<1667:TEOEBI>2.0.ZU;2-O
Abstract
The effect of irradiation on the tensile and dynamic mechanical properties of ENR50 (ENR: epoxidized natural rubber) was investigated. ENR50 was irrad iated using a 3.0 MeV electron beam machine with doses ranging from 20 to 2 00 kGy. The influence of several additives such as trimethylolpropane triac rylate (TMPTA), Irganox1010 and tribasic lead sulfate (TBLS) on the irradia tion-induced changes of ENR50 was investigated. The general improvement on the tensile, as well as dynamic mechanical properties with irradiation indi cates the formation of irradiation-induced crosslinks. An appreciable incre ase in T-g is observed with irradiation while the enhancement in stress at break is found to be marginal. This observation agrees well with the relati vely small increase in storage modulus occurred beyond the T-g of the irrad iated ENR. This in return reveals that only a small degree of crosslinking is achieved through irradiation. Based on these factors it can be inferred that the gradual increase in T-g upon irradiation of ENR50 could be associa ted with the occurrence of irradiation-induced ring opening side chain reac tion of the oxirane group and irradiation-induced oxidation at the cis doub le bond along with the irradiation-induced crosslinking. From the observati on in the properties studied it confirms that TMPTA is efficient in enhanci ng the irradiation-induced crosslinking of ENR50. The addition of Irganox 1 010 and TBLS are found to impart considerable stability to ENR50, although the antioxidant did cause some inhibition of crosslinking. The acceleration of crosslinking by the TMPTA as well as the inhibition of crosslinking the added stabilizing additives were further confirmed by using gel fraction d ata. However, the studies did not reveal the exact nature of irradiation-in duced reactions involved in ENR. (C) 2001 Elsevier Science Ltd. All rights reserved.