Effect of physical aging on the microstructure and the crystallization of amorphous poly(aryl ether ether ketone ketone) (PEEKK)


Autoria(s): Tan SS; Su AH; Luo J; Zhou EL; Cheng SZD
Data(s)

1999

Resumo

Physical aging of poly(aryl ether ether ketone ketone) (PEEKK) has been investigated. Heat flow responses were measured after annealing the amorphous samples obtained by quenching the melt into an ice-water bath close to, but below, the glass transition temperature. The extent of aging is related to the supercooling from the glass transition temperature and to the aging time. The activation energy of the aging process, which was estimated by a Williams-Watt expression, is similar in magnitude to that obtained for the cold crystallization for the aged samples. The quenched glass is a metastable glass. The conformation of molecular chains rearranges with physical aging which results in the formation of a denser packing in the amorphous phase. The dense amorphous phase may form an initial nucleus for crystallization. Isothermal cold crystallization of the aged samples was carried out. The Avrami equation was used to determine the kinetic parameters, and the Avrami constant n is about 2. An Arrhenius expression was used to evaluate the activation energy of relaxation upon physical aging and the activation energy of transportation upon isothermal crystallization. The activation energy of relaxation is similar in magnitude to that of crystallization for aged samples. Results obtained are interpreted as kinetic effects associated with the glass formation process.

Identificador

http://202.98.16.49/handle/322003/21527

http://www.irgrid.ac.cn/handle/1471x/155498

Idioma(s)

英语

Fonte

Tan SS;Su AH;Luo J;Zhou EL;Cheng SZD.Effect of physical aging on the microstructure and the crystallization of amorphous poly(aryl ether ether ketone ketone) (PEEKK),MACROMOLECULAR CHEMISTRY AND PHYSICS,1999,200(11):2487-2493

Palavras-Chave #ELECTRON-BEAM IRRADIATION #GLASS-TRANSITION #MECHANICAL RELAXATION #FREE-VOLUME #BEHAVIOR #TEMPERATURE #COPOLYMERS
Tipo

期刊论文