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izvor podataka: crosbi

Study of natural rubber crosslinked in the state of uniaxial deformation (CROSBI ID 144254)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Dubrović, Igor ; Klepac, Damir ; Valić, Srećko ; Žauhar, Gordana Study of natural rubber crosslinked in the state of uniaxial deformation // Radiation physics and chemistry (1993), 77 (2008), 6; 811-817. doi: 10.1016/j.radphyschem.2008.02.002

Podaci o odgovornosti

Dubrović, Igor ; Klepac, Damir ; Valić, Srećko ; Žauhar, Gordana

engleski

Study of natural rubber crosslinked in the state of uniaxial deformation

A natural rubber (NR) film with the thickness of about 1 mm was prepared by removing the liquid phase from NR latex. Two types of NR films crosslinked by gamma-irradiation were investigated: (i) samples irradiated in the relaxed state and (ii) samples irradiated in the state of uniaxial deformation. The total irradiation dose varied from 0 kGy (for nonirradiated N R) to 400 kGy and the degree of deformation, defined as lambda = l/l(0) (l(0) and l being the lengths of relaxed and uniaxially deformed sample, respectively), was chosen to be lambda = 1.0 (relaxed state), lambda = 1.5 and lambda = 2.0. The amount of sol and gel phase of NR was determined by extracting the sol component in toluene. A significant decrease in the amount of the sol component (from 14.2% to 33.5%, depending on irradiation dose) was observed by increasing the irradiation dose. It has been shown that the application of deformation during the crossfinking leads to the lower crosslink density. Such an effect can be attributed to the loss of the gel component induced mechanically. The electron spin resonance (ESR) spectra of spin probe diffusing in the NR matrix crosslinked under deformation are influenced by both, the local dynamics of the chain segments and their spacious orientation.

Natural rubber ; Gamma-irradiation ; Uniaxial deformation ; ESR ; Swelling

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Podaci o izdanju

77 (6)

2008.

811-817

objavljeno

0969-806X

10.1016/j.radphyschem.2008.02.002

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Kemija

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