DYNAMIC-MECHANICAL PROPERTIES OF THERMOSE TTING RESIN ADHESIVES .1.
Citation
K. Umemura et al., DYNAMIC-MECHANICAL PROPERTIES OF THERMOSE TTING RESIN ADHESIVES .1., Mokuzai Gakkaishi, 41(9), 1995, pp. 820-827
Categorie Soggetti
Materials Science, Paper & Wood
SICI code
0021-4795(1995)41:9<820:DPOTTR>2.0.ZU;2-J
Abstract
The effects of preheating (120 or 160 degrees C) treatments on the dyn
amic thermomechanical properties of an aqueous phenol-formaldehyde (PF
) resol resin was studied by using a dynamic mechanical analysis (DMA)
. The results and conclusion are summarized as follows: It appeared th
at the untreated liquid state of PF resin has a distinct gel point wit
h sudden changes of storage modulus (E'), loss modulus (E ''), and tan
delta, whereas, vacuum dried PF resin exhibited different E', E '', a
nd tan delta curves during measurements at elevated temperatures. As t
he preheating time was prolonged, the initial (20 degrees C) E' genera
lly increased with a drop of the peak in tan delta but independent of
the preheating temperature. The gel point of the resin preheated for a
few minutes at 120 degrees C appeared lower than that of resin prehea
ted for the same times at 160 degrees C. These results suggested that
the curing reactions of PF resin were dependent on heating temperature
, and the result of the partially cured resin preheated for few minute
s at 120 degrees C was unstable at an increasing temperature. It also
was observed that the resin preheated for 5 min at 160 degrees C cured
completely with the disappearance of the tan delta peak, whereas resi
n preheated at 120 degrees C cured incompletely with a tan delta peak
independent of the preheating time. In addition, the authors have prop
osed a method of determining the degree of cure for PF resin in mechan
ical aspects, The method is based on the change of the E' of preheated
resin during DMA measurements. Compared with the conventional methods
, such as methanol extraction, this method is affected by a solvent in
cluding resin and is expressed seemingly as a mechanical cure.