TY - JOUR
T1 - Dielectric and viscoelastic relaxations in poly(dicyclohexyl itaconate)
AU - Díaz‐Calleja, Ricardo
AU - Gargallo, Ligia
AU - Radic, Deodato
PY - 1992
Y1 - 1992
N2 - The relaxation spectrum of poly(dicyclohexyl itaconate) (PDCHI) was studied by dynamic mechanical, DC dielectric and thermally stimulated current measurements. Four relaxations, α, β, γ and δ, were obtained. The only method by which all four peaks were observed is that of dynamic dielectric measurements because of the broad range of frequencies employed. The β, γ and δ relaxations were characterized by the activation energy in a relaxation map. A tentative explanation of the molecular origin of each absorption is proposed. In the case of the α relaxation we have used two transformations, one from the permittivity to polarizability and the second from compliance to deformability in order to make evident the existence of this relaxation.
AB - The relaxation spectrum of poly(dicyclohexyl itaconate) (PDCHI) was studied by dynamic mechanical, DC dielectric and thermally stimulated current measurements. Four relaxations, α, β, γ and δ, were obtained. The only method by which all four peaks were observed is that of dynamic dielectric measurements because of the broad range of frequencies employed. The β, γ and δ relaxations were characterized by the activation energy in a relaxation map. A tentative explanation of the molecular origin of each absorption is proposed. In the case of the α relaxation we have used two transformations, one from the permittivity to polarizability and the second from compliance to deformability in order to make evident the existence of this relaxation.
KW - activation energy
KW - deformability
KW - dielectric relaxation
KW - polarizability
KW - poly(dicyclohexyl itaconate)
KW - viscoelastic relaxation
UR - https://www.scopus.com/pages/publications/0027073041
U2 - 10.1002/pi.4990290302
DO - 10.1002/pi.4990290302
M3 - Article
AN - SCOPUS:0027073041
SN - 0959-8103
VL - 29
SP - 159
EP - 164
JO - Polymer International
JF - Polymer International
IS - 3
ER -