Modified polytetrafluoroethylene fine powder and uniaxially stretched porous body
US-2016289361-A1 · Oct 6, 2016 · US
US2018036936A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2018036936-A1 |
| Application number | US-201615228787-A |
| Country | US |
| Kind code | A1 |
| Filing date | Aug 4, 2016 |
| Priority date | Aug 4, 2016 |
| Publication date | Feb 8, 2018 |
| Grant date | — |
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A method of processing a continuous sheet of polymer material. The method includes routing the continuous sheet of polymer material from a first spool and along at least a first heated roller and a second heated roller, heating the continuous sheet of polymer material to a first temperature on the first heated roller and the second heated roller, and controlling a rotational speed of the first heated roller and the second heated roller such that the continuous sheet of polymer material is stretched when routed from the second heated roller to the first heated roller.
Opening claim text (preview).
What is claimed is: 1 . A method of processing a continuous sheet of polymer material, said method comprising: routing the continuous sheet of polymer material from a first spool and along at least a first heated roller and a second heated roller; heating the continuous sheet of polymer material to a first temperature on the first heated roller and the second heated roller; and controlling a rotational speed of the first heated roller and the second heated roller such that the continuous sheet of polymer material is stretched when routed from the second heated roller to the first heated roller. 2 . The method in accordance with claim 1 , wherein heating the continuous sheet of polymer material comprises heating the continuous sheet of polymer material to the first temperature that is greater than a glass transition temperature of the polymer material. 3 . The method in accordance with claim 1 , wherein routing the continuous sheet of polymer material comprises routing the continuous sheet of polymer material from the first spool having an unprocessed portion of the continuous sheet of polymer material wound thereon. 4 . The method in accordance with claim 1 further comprising collecting a processed portion of the continuous sheet of polymer material on a second spool. 5 . The method in accordance with claim 1 further comprising: preheating the continuous sheet of polymer material to a second temperature lower than the first temperature, the continuous sheet preheated on a third heated roller; and routing the continuous sheet of polymer material from the third heated roller to the second heated roller. 6 . The method in accordance with claim 5 , wherein preheating the continuous sheet of polymer material comprises heating the second heated roller and the third heated roller such that a temperature difference therebetween is less than a predetermined threshold. 7 . The method in accordance with claim 1 further comprising: routing the continuous sheet of polymer material from the first heated roller to a first cooled roller; and annealing the continuous sheet of polymer material on the first cooled roller to a third temperature lower than the first temperature. 8 . The method in accordance with claim 7 further comprising: routing the continuous sheet of polymer material from the first cooled roller to a second cooled roller; and cooling the continuous sheet of polymer material on the second cooled roller to a fourth temperature lower than the third temperature. 9 . The method in accordance with claim 1 , wherein controlling a rotational speed of the first heated roller and the second heated roller comprises rotating the first heated roller at a greater rotational speed than the second heated roller. 10 . The method in accordance with claim 1 , wherein controlling a rotational speed of the first heated roller and the second heated roller comprises stretching the continuous sheet of polymer material to a thickness of less than or equal to about 4 microns. 11 . An apparatus for use in processing a continuous sheet of polymer material, said apparatus comprising: a first spool mount configured to receive a first spool having an unprocessed portion of the continuous sheet of polymer material wound thereon; a first heated roller; a second heated roller, the continuous sheet of polymer material routed from said first spool mount and along at least said first heated roller and said second heated roller; a heating system thermally coupled with at least one of said first heated roller and said second heated roller, said heating system configured to heat the continuous sheet of polymer material on said first heated roller and said second heated roller to a first temperature; and a drive system configured to actuate said first heated roller and said second heated roller, said drive system configured to control a rotational speed of said first heated roller and said second heated roller such that the continuous sheet of polymer material is stretched when routed from said second heated roller to said first heated roller. 12 . The apparatus in accordance with claim 11 , wherein said heating system is configured to heat the continuous sheet of polymer material to the first temperature that is greater than a glass transition temperature of the polymer material. 13 . The apparatus in accordance with claim 11 , wherein said first spool has the continuous sheet of an amorphous polymer material wound thereon. 14 . The apparatus in accordance with claim 11 further comprising a second spool mount configured to receive a second spool thereon, said second spool configured to collect a processed portion of the continuous sheet of polymer material. 15 . The apparatus in accordance with claim 11 further comprising a third heated roller configured to route the continuous sheet of polymer material to the second heated roller, wherein said heating system is thermally coupled with said third heated roller, said heating system configured to preheat the continuous sheet of polymer material on said third heated roller to a second temperature lower than the first temperature. 16 . The apparatus in accordance with claim 15 , wherein said heating system is further configured to heat said second heated roller and said third heated roller such that a temperature difference therebetween is less than a predetermined threshold. 17 . The apparatus in accordance with claim 11 further comprising: a first cooled roller configured to receive the continuous sheet of polymer material routed from said first heated roller; and a cooling system thermally coupled with said first cooled roller, said cooling system configured to anneal the continuous sheet of polymer material on said first cooled roller to a third temperature lower than the first temperature. 18 . The apparatus in accordance with claim 17 further comprising a second cooled roller configured to receive the continuous sheet of polymer material routed from said first cooled roller, wherein said cooling system is configured to cool the continuous sheet of polymer material on said second cooled roller to a fourth temperature lower than the third temperature. 19 . The apparatus in accordance with claim 11 , wherein said drive system is configured to rotate said first heated roller at a greater rotational speed than said second heated roller. 20 . The apparatus in accordance with claim 11 , wherein said drive system is configured to control the rotational speed of at least one of said first heated roller and said second heated roller such that the continuous sheet of polymer material is stretched to a thickness of less than or equal to about 4 microns.
Annealing · CPC title
Insulating · CPC title
parallel with the direction of feed · CPC title
Components, e.g. resistors · CPC title
Thermal after-treatment {(B29C71/0063 and B29C71/0072 take precedence)} · CPC title
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