[1] Briscoe B J, Mahgerefteh H, Suga S. The effect of gamma irradiation on the pressure dependence of the room temperature transition in PTFE [J]. Polymer,2003, 44(3): 783-791.[2] Galante A M S, Galante O L, Campos L L. Study on application of PTFE, FEP and PFA fluoropolymers on radiation dosimetry [J]. Nuclear Instruments and Methods in Physical Research A, 2010, 619(1-3): 177-180.[3] Pugmire D L, Wetteland C J, Duncan W S, et al.Cross-linking of polytetrafluoroethylene during roomtemperature irradiation [J]. Polymer Degradation and Stability, 2009, 94(9): 1533-1541.[4] Oshima A, Ikeda S, Seguchi T, et al. Improvement of radiation resistance for polytetrafluoroethylene (PTFE) by radiation croosslinking [J]. Radiation Physics and Chemistry, 1997, 49(2): 279-284.[5] Oshima A, Ikeda S, Katoh E, et al. Chemical structure and physical properties of radiation-induced crosslinking of polytetrafluoroethylene [J]. Radiation Physics and Chemistry, 2001, 62(1): 39-45.[6] Li J Y, Sato K, Ichiduri S, et al. Preirradiation induced grafting of styrene into crosslinked and noncrosslinked polytetrafluoroethylene films for polymer electrolyte fuel cell applications. I. Influence of styrene grafting conditions [J]. European Polymer Journal,2004, 40(4): 775-783.[7] Sato K, Ikeda S, Iida M, et al. Study on polyelectrolyte membrane of crosslinked PTFE by radiationgrafting [J]. Nuclear Instruments and Methods in Physical Research Section B, 2003, 208: 424-428.[8] Adem E, Avalos-borja M, Bucio E, et al. Surface characterization of binary grafting of AAc/NIPAAm onto poly(tetrafluoroethylene) (PTFE) [J]. Nuclear Instruments and Methods in Physical Research Section B, 2005, 234(4): 471-476.[9] Bucio E, Burillo G. Radiation grafting of pH and thermosensitive N-isopropylacrylamide and acrylic acid onto PTFE films by two-steps process [J]. Radiation Physics and Chemistry, 2007, 76(11-12): 1724-1727.[10] Allayarov S R, Konovalikhin S V, Olkhov Y A,et al. Degradation of γ-irradiated linear perfluoroalkanes at high dosage [J]. Journal of Fluorine Chemistry,2007, 128(6): 575-586.[11] Oshima A, Murata K, Oka T, et al. Heavy ion beam induced phenomena in polytetrafluoroethylene [J]. Nuclear Instruments and Methods in Physical Research Section B, 2007, 265(1): 314-319.[12] Kudoh H, Sasuga T, Seguchi T. High energy ion irradiation effects on mechanical properties of polymeric materials [J]. Radiation Physics and Chemistry, 1996,48(5): 545-548.[13] Briskman B A. Be careful when using X-ray exposure analysis for polymers [J]. Nuclear Instruments and Methods in Physical Research Section B, 2007, 265(1):276-280.[14] Briscoe B J, Evans P D, Pelillo E, et al. Scratching maps for polymers [J]. Wear, 1996, 200(1-2): 137-147.[15] Oshima A, Seguchi T, Tabata Y. ESR study on free radicals trapped in crosslinked polytetrafluoroethylene (PTFE) [J]. Radiation Physics and Chemistry, 1997,50(6): 601-606.[16] Menzel B, Blanchet T A. Enhanced wear resistance of gamma-irradiated PTFE and FEP polymers and the effect of post-irradiation environmental handling [J].Wear, 2005, 258 (5-6): 935-941.[17] Bahadur S, Tabor D. The wear of filled polytetrafluoroethylene[J]. Wear, 1984, 98(1): 1-13.[18] Blanchet T A, Kennedy F E. Sliding wear mechanisms of polytetrafluoroethylene (PTFE) and PTFE composites [J]. Wear, 1992, 153(1): 229-243.[19] Briscoe B J, Ni Z. The friction and wear of γ-irradiated polytetrafluoroethylene [J]. Wear, 1984,100(1-3): 221-242.[20] Yuan X D, Yang X J. A study on friction and wear properties of PTFE coatings under vacuum conditions[J]. Wear, 2010, 269(3-4): 291-297. |