Crosslinked PTFE
The present application relates generally to tubes, such as thin walled catheter liners with small wall thicknesses (e.g., less than 1 mm), including crosslinked fluoropolymers, e.g., crosslinked poly(tetrafluoroethylene). The disclosure further provides methods of manufacturing such tubes and systems for manufacturing such tubes.
1. A tube having a wall thickness of less than 1 mm,
wherein the tube consists essentially of crosslinked poly(tetrafluoroethylene), at least a portion of which is chemically modified with at least one reactive species such that at least a part of an inner surface and/or outer surface of the tube comprises crosslinked poly(tetrafluoroethylene) chemically modified with at least one reactive species;
wherein the crosslinked poly(tetrafluoroethylene) has been crosslinked in a continuous process by irradiation with a gamma source under an inert atmosphere containing a reactive species; and
wherein the reactive species activates at least a part of the inner surface and/or outer surface of the tube to provide reactive sites on those surfaces.
2. The tube of claim 1 , wherein irradiation with a gamma source is conducted at a temperature range between 320-360° C.
3. The tube of claim 2 , wherein the irradiation is provided by an X-ray source.
4. The tube of claim 2 , wherein the irradiation is provided by an electron beam unit.
5. The tube of claim 1 , wherein only the inner surface of the tube comprises the crosslinked poly(tetrafluoroethylene) chemically modified with at least one reactive species.
6. The tube of claim 1 , wherein only the outer surface of the tube comprises the crosslinked poly(tetrafluoroethylene) chemically modified with at least one reactive species.
7. The tube of claim 1 , wherein the irradiation is at a dose of between 500 and 2500 kGy.
8. A tube having a wall thickness of less than 1 mm, comprising a crosslinked fluoropolymer, wherein the fluoropolymer has been crosslinked in a continuous process by irradiation with a gamma source under the following conditions:
a. a temperature range corresponding to a range of a melting endotherm of the fluoropolymer in a differential scanning calorimeter (DSC) scan;
b. a dosage between 500 and 2500 kGy; and
c. an inert atmosphere or vacuum,
wherein at least a part of an inner surface and/or outer surface of the tube comprises crosslinked poly(tetrafluoroethylene) chemically modified with at least one reactive species.
9. The tube of claim 8 , wherein irradiation is provided by an X-ray source.
10. The tube of claim 8 , wherein irradiation is provided by an electron beam unit.
11. The tube of claim 8 , wherein only the inner surface of the tube comprises the crosslinked poly(tetrafluoroethylene) chemically modified with at least one reactive species.
12. The tube of claim 8 , wherein only the outer surface of the tube comprises the crosslinked poly(tetrafluoroethylene) chemically modified with at least one reactive species.