Claims
- 1. An article of manufacture comprising a UHMV polymer having a melt viscosity too high for conventional melt processing and with a pressure-expanded shape in a stable stressed condition that is capable of heat-shrinking in at least one dimension under the application of mild heating to release the stressed condition.
- 2. The article of claim 1 wherein said UHMV polymer is capable of heat-shrinking by being mildly heated at a temperature below 300° F.
- 3. The article of claim 1 wherein said UHMV polymer is capable of expansion to said pressure-expanded shape in a stable stressed condition by being initially heated at a temperature in the range from about 190° F. to about 250° F., being expanded under pressure to the pressure-expanded shape, and brought to ambient temperature under pressure while maintaining the pressure-expanded shape whereby a sufficiently stable stressed condition expanded UHMV polymer article results that is capable of subsequent heat shrinking under the application of said mild heating to an approximate unexpanded shape.
- 4. The article of claim 3 wherein said pressure-expanded shape UHMV polymer article is capable of heat shrinking under mild heating at a temperature somewhat above said initially heated temperature.
- 5. The article of claim 1 wherein said UHMV polymer comprises a material selected from the group consisting of fully sintered polytetraflurorethylene (PTFE), modified polytetraflurorethylene (TFM), and UHMW polyethylene [(UHMWPE)].
- 6. The article of claim 1 wherein said pressure-expanded shape of said UHMW polymer is a tube.
- 7. The article of claim 6 further comprising a roll and wherein said tube is shrunk about and covers said roll.
- 8. The article of claim 7 wherein said roll covered by said tube is formed as a machinery roller.
- 9. The article of claim 1 wherein said pressure-expanded shape of said UHMW polymer is a sheet or film.
- 10. The article of claim 1 wherein said article is a film of UHMW polyethylene.
- 11. The article of claim 1 containing an additive and wherein said additive comprises a material selected from the group consisting of carbon, material providing electrical conductivity, material providing improved abrasion resistance, material providing improved wear resistance, material providing improved load carrying, material providing improved compressive strength, and material providing reduced thermal expansion to said shaped article, and combinations of said materials.
- 12. A process for producing an article of manufacture comprising an article of an ultra-high melt viscosity (UHMV) polymer which is heat-shrinkable in at least one dimension under the application of mild heating to a desired shape, comprising the steps of:
providing a supply of UHMV polymer; initially mildly heating said supply of UHMV polymer; applying pressure to the heated supply to expand it generally to the form of the desired shape; and bringing said expanded supply to ambient temperature under pressure to maintain the expanded form of the shaped article and produce a sufficiently stable expanded UHMV polymer article capable of subsequent heat shrinking into the desired shape of said article.
- 13. The process of claim 12 wherein said supply of UHMV polymer is initially heated at a temperature in the range from about 190° F. to about 250° F.
- 14. The process as in claim 13 wherein said sufficiently stable expanded UHMV polymer article is mildly heated at a temperature somewhat above said initially heated temperature.
- 15. The process of claim 12 comprising the further step at heating said sufficiently stable expanded UHMV polymer article at a medium temperature below about 250° F. to shrink it about an object.
- 16. A process for producing a heat-shrinkable tube (HST) useful as a roll cover comprising the steps of:
providing a tube of UHMV polymer; inserting said tube into an expansion housing and heating said tube to a temperature below the gel temperature of said UHMV polymer; applying pressure to the heated tube to expand its diameter to that of the interior of the housing; and bringing said expanded diameter tube to ambient temperature under pressure to maintain the expanded diameter and produce a sufficiently stable expanded UHMV polymer tube capable of subsequent use as an HST roll cover by shrinking onto a roll with mild heating.
- 17. A process as in claim 16 further comprising the steps of:
placing said sufficiently stable expanded UHMV polymer tube about the surface of a roll; and heating said tube to a mildly heating temperature to shrink it into tight contact with said surface of said roll as a roll cover.
- 18. The process of claim 16 wherein raid mildly heating temperature is in the range from about 190° F. to about 250° F.
- 19. A process as in claim 16 wherein said UHMV polymer comprises a material selected from the group consisting of polytetraflurorethylene (PTFE), modified polytetraflurorethylene (TFM), and UHMW polyethylene (UHMWPE).
- 20. A process as in claim 16 further comprising the step of reinforcing said UHMV polymer with an additive and wherein said additive comprises a material selected from the group consisting of an electrically conductive additive, an abrasion resistance improving additive, a wear resistance improving additive, a load carrying improving additive, a compressive strength improving additive, carbon, and combinations thereof.
CLAIM OF PRIORITY BASED ON CO-PENDING PROVISIONAL APPLICATION
[0001] The present application is related to co-pending Provisional patent application U.S. Ser. No. 60/019,438 of Frank M. and Randall F. Chapman, filed Jun. 10, 1996, entitled “HEAT-SHRINKABLE UHMV POLYMER FILM, TUBING, AND ROLL COVERS”, and based on which priority is herewith claimed under 35 U.S.C. 119(e), and any other applicable statute or Convention, and the disclosure of which is incorporated herein by reference in its entirety.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US97/10091 |
6/9/1997 |
WO |
|