LOW RELATIVE CRYSTALLINITY DIE DRAWING PROCESS FOR A CAVITATED FILLED ORIENTED POLYMER COMPOSITION
Drawing a filled polymer composition through a drawing die at a critical drawing temperature that is below the polymer composition's melting temperature yet above the polymer composition's crystallization temperature allows production of cavitated filled oriented polymer compositions by drawing from a low crystalline polymer state.
1 . A process for producing a filled oriented polymer article comprising the steps:
(a) blending at least one semi-crystalline thermoplastic polymer with a filler at a blending temperature to form a filled polymer composition having a melting temperature (T m ) and a crystallization temperature (T c );
(b) cooling the filled polymer composition at a cooling rate to a drawing temperature (T d ) without cooling below the filled polymer composition's T c ;
(c) drawing the filled polymer composition through a drawing die at a drawing rate, thereby inducing polymer orientation and cavitation; and
(d) cooling the filled polymer composition to a temperature below its T c to form a cavitated filled oriented polymer article;
wherein, the blending temperature is at or above the filled polymer composition's T m , T d is higher than the filled polymer composition's T c yet lower than the temperature at which crystallization begins to occur as the filled polymer composition is cooled from above its T m down to below its T c at the cooling rate of step (b), and drawing in step (c) is initiated while the polymer composition has a relative crystallinity of 50% or less and one percent or more and while the polymer composition has a cross section that has a temperature at any point on the cross section within ten degrees Celsius from T d .
2 . The process of claim 1 , wherein T d is one to five degrees Celsius above T c for the filled polymer composition.
3 . The process of claim 1 , wherein the drawing die in step (c) has a nominal draw ratio greater than 1:1.
4 . The process of claim 1 , wherein the drawing die has at least one semi-angle greater than one degree.
5 . The process of claim 1 , wherein the semi-crystalline thermoplastic polymer is one or a blend of more than one polymer selected from a group consisting of polymers based on polyethylene, polypropylene, polyvinyl chloride and polyester polymers.
6 . The process of claim 1 , wherein all polymers in the filled polymer composition have a weight-averaged molecular weight of less than one million grams per mole.
7 . The process of claim 1 , wherein blowing agents are present at a concentration of less than three weight-percent based on total weight of filled polymer composition.
8 . The process of claim 1 , wherein the filled polymer composition in step (c) is free of blowing agents.
9 . The process of claim 1 , wherein the drawing die has an exit opening having a smallest cross sectional dimension greater than 1.5 millimeters.
10 . The process of claim 1 , wherein drawing in step (c) is initiated while the polymer composition has a relative crystallinity of one percent or more and 20 percent or less.
11 . The process of claim 1 , wherein drawing in step (c) is initiated while the polymer composition has a relative crystallinity of one percent or more and ten percent or less.
12 . The process of claim 1 , wherein all semi-crystalline polymers in the filled polymer composition are free from having a weight-averaged molecular weight component that is greater than one million grams per mole.