Mechanical Relaxations and Transitions in Polytetrafluoroethylene
- 1 August 1964
- journal article
- Published by IOP Publishing in Japanese Journal of Applied Physics
- Vol. 3 (8)
- https://doi.org/10.1143/jjap.3.436
Abstract
Thermal expansion, ultrasonic and creep behavior of polytetrafluoroethylene are studied in temperatures from -100° to 180°C. The glass transition and primary dispersion of this polymer observed. The assignments of relaxations and transitions described in what follows are found to be quite compatible with experimental data in existing literatures as well as new information in the present study. The γ peak is ascribed to local mode motion in amorphous and paracrystalline phases. The glass transition in amorphous phase is found from -65° to -35°C. The β' peak just above these temperatures is associated with segmental motion in amorphous phase. The β peak above two crystalline transitions at 19° and 30°C is attributed to crystalline relaxation. The transition at 130°C (T α) and the α peak near above T α are associated with two-dimensional brownian motion in paracrystalline phase. The behavior above the melting point (T m ) and the relation between T m and T α are interpreted assuming the melting to be the phase transition from crystal to paracrystal.Keywords
This publication has 35 references indexed in Scilit:
- Transitions and Relaxations in PolytetrafluoroethyleneJournal of Applied Physics, 1961
- Transitions in Polymers by Nuclear Magnetic Resonance and Dynamic Mechanical MethodsReviews of Modern Physics, 1960
- über das elastische Verhalten von PolytetrafluorÄthylenColloid and Polymer Science, 1959
- Glass transition temperatures of fluorirne‐containing polymersJournal of Polymer Science, 1959
- Nuclear magnetic resonance absorption in various polytetrafluoroethylenesJournal of Polymer Science, 1958
- X-ray diffractionJournal of Chemical Education, 1958
- Nuclear Magnetic Relaxation in Polytetrafluoroethylene and PolyethyleneThe Journal of Chemical Physics, 1957
- Thermal expansion of polytetrafluoroethylene (Teflon) from -190 to +300 CJournal of Research of the National Bureau of Standards, 1956
- The Temperature Dependence of Relaxation Mechanisms in Amorphous Polymers and Other Glass-forming LiquidsJournal of the American Chemical Society, 1955
- Volume-Temperature Relationships for the Room Temperature Transition in TeflonJournal of Applied Physics, 1951