M. Lambla et M. Seadan, REACTIVE BLENDING OF POLYMERS BY INTERFACIAL FREE-RADICAL GRAFTING, Die Makromolekulare Chemie. Macromolecular symposia, 69, 1993, pp. 99-123
In blends of immiscible polymers, amphiphilic species are needed for b
oth morphological stabilization and improvement of the mechanical prop
erties throughout successive processing steps. In order to obtain the
required concentration of amphiphilic copolymer at the interface, it s
eemed of interest to test the possibility of creating these species by
in situ reactivity at the interface, for instance by condensation rea
ctions occurring between functionalized polymers. There is another pos
sibility based on the fact that most of the polymers are hydrocarbon c
ompounds, so they are subjected to free-radical reactivity by hydrogen
abstraction on the different hydrocarbon sites. The created free-radi
cal polymeric species may react together leading to the well known rea
ctions of crosslinking, grafting and lor chain degradation. Therefore,
this work deals with reciprocal free-radical reactivity of two kinds
of semi-crystalline polymers, namely one polyolefin (LDPE, HDPE, PP or
EPR) associated with a polyamide (PA-11 or PA-6). The reaction has to
occur mainly at the interface, where the resulting grafted copolymers
have to be anchored for final stabilization of the biphasic system. T
he level of interfacial grafting and the resulting properties of-the r
eacted blends were characterized carefully, confirming the efficiency
of the interpolymeric grafting.