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Effect-yarn tenacity increases when draw ratio is increased.
The draw ratio was maximum around 55°C.
The draw ratio effect on the mechanical properties was remarkable at low draw ratio, but levelled off soon.
In this regime, the films never shrink back below the draw ratio after necking and a linear relation between the initial draw ratio and the final draw ratio after shrinkage is obtained.
It was observed from the stress-draw ratio curve and density measurement that the strain-induced crystallization occurs at the draw ratio of 2.5.
The main finding was that crosslinking increases the −50°C dynamic storage modulus at intermediate draw ratio (10 1), but not at low or high draw ratio.
Employing only radiative heating enhances the critical draw ratio, and simultaneous heating and convective cooling increase the critical draw ratio even further.
The natural draw ratio displays monotonous decrease with decreasing density that perfectly parallels the ESCR increase.
Core yarn draw ratio: 2.19 at 110°C draw pin temperature.
Effect yarn draw ratio: 1.65 to 1.82 at 70°C draw pin temperature.
The oscillation frequency (film-thickness amplitude) decreases (increases) with draw ratio.
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