Two distinguishable effects of thermal exposure of biaxially oriented poly(ethylene terephthalate) (PET) have been observed in the temperature range from room temperature to 140°C. Upon heating above the glass transition temperature T g of the film an irreversible shrinkage of a few percent occurred with a concomitant decrease in the rate of creep. Some loss of orientation in the noncrystalline phase with an attendant slight increase in density is believed to be responsible. Since the film was anisotropic in its plane, different amounts and rates of shrinkage were observed along with differing thermal expansion coefficients in various directions relative to the primary optic axis. Upon cooling the 50% crystalline PET from above T g to lower temperatures, reversible “physical aging” was observed. Creep rates were found to decrease with the residence time below T g . As with purely amorphous polymers, the effects of the aging are removed by heating the specimen above T g where the density of the amorphous phase achieves equilibrium values.
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Vallat et al. (1986) studied this question.
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