Tesis
Uso do método do trabalho essencial de fratura (EWF) para avaliar a tenacidade de blendas poliméricas.
Fecha
2005-03-11Registro en:
YAMAKAWA, Roberto Seiji. The use of essential work of fracture (EWF)method to evaluate the toughness of polymeric blends.. 2005. 166 f. Tese (Doutorado em Ciências Exatas e da Terra) - Universidade Federal de São Carlos, São Carlos, 2005.
Autor
Yamakawa, Roberto Seiji
Institución
Resumen
Initially it was made a well elaborated study on the essential work
of fracture method (EWF) using the polyamide 6 (PA6) because this polymer
shows high difficult to evaluate its toughness. The PA6 is a semi-crystalline
polymer, so its mechanical properties are highly affects by the specimen
processing conditions. This material is also highly susceptible to the notch, so it
is necessary to study how the conditions to obtain the notch and pre-crack can
affect the applicability of the EWF method. The best specimen dimension to
work in plane stress condition was determined for the uniaxial tensile test. This
first study allowed determining the best specimen condition to apply the EWF
method. The EWF method was used to evaluate the toughness of polymeric
blends. One of the blend was prepared with a semi-crystalline matrix (PA6/ABS)
and other with amorphous matrix (PC/ABS). It was also studied the efficiency of
the MMA-MA compatibilizer on the PA6/ABS blend toughness. The results
allowed concluding that the EWF method was able to verify the improvement of
toughness in the blends when compared with the pure polymers as well as the
improvement of toughness when the compatibilizer is added to the blend. It was
also studied the influence of specimen thickness, strain rate and injection
molding conditions like injection speed and mold temperature on the
parameters of EWF method. The results allowed concluding that all variables
affected the specific essential work of fracture, we, while the specific nonessential
work of fracture, βwp, was not affect by that variables, except in the
highest test speed for PA6 and in the different thickness for the PA6 and
PA6/ABS/MMA-MA blend.