By A I Sviridewok, A F Kilmovich, V N Kestelman
A number of sensible difficulties attached to triboelectric phenomena stay unsolved in either the fabrication and behaviour of polymer threads and materials in quite a few commercial articles. utilizing the result of distinctive experiments conducted within the international locations of the previous Soviet Union, this quantity fills a spot within the technological know-how of tribology, offering basic info at the nature of actual and chemical procedures governing and accompanying tribodeformation and tribodisintegration of polymers. info on electrophysical phenomena akin to touch electrification and emergence of the electret kingdom in polymer fabrics also are supplied.
Read Online or Download Electrophysical Phenomena in the Tribology of Polymers (Polymer Science and Engineering Monographs, a State-of-the-Art Tutorial Series , Vol 5) PDF
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Extra resources for Electrophysical Phenomena in the Tribology of Polymers (Polymer Science and Engineering Monographs, a State-of-the-Art Tutorial Series , Vol 5)
29. D. ‘Energy of Friction and Wear of Machine Parts’ (in Russian), Moscow, 1963. 30. I. I. Treatment of Materials with Electrons, 1967, 16, no. 4, 67–69. 31. M. l, 1137–1157. 32. S. ‘Molecular Physics of Boundary Friction’ (in Russian), Moscow, 1963. 33. Bowden, F. and Tabor, D. ‘The Friction and Lubrication of Solids’í. II, Clarendon Press, Oxford, 1964. 34. V. ‘Friction and Wear’, Elmsford, 1982. 35. V. ’ (in Russian), Moscow, 1963. 36. V. A.. ‘Adhesion’ (in Russian), Moscow, 1949. 37. Helmpolts, H.
P. and Tabor, D. ‘Friction and Lubrication of Solids’ (Russian translation), Moscow, 1968. 89. Wahlin, A. and Beckstron, G.. Appl. , 1974, 45, n 5, 2058#150;2084. 90. , Tsupki, H. and Tsutida, E. Koche Kachaku Dzassu (Russian translation), 1970, 33, no. 7, 1460–1467. 91. Sasaki, K. and Fuiko, S. Kobunsi Kachaku (Russian translation), 1971, 28, no. 313, 415–122. 92. Ohara, K.. J Electrostatics, 1978, 4, 233–246. 93. I. I. in ‘Static Electricity in Polymers’ (in Russian), Leningrad, 1968, p. 95. 94.
The underlying polymer film is wound around the “grounded” copper cylinder, and the hole is pierced in it to fit the hole in the cylinder. When the cylinder rotates, an electrical charge is generated on the polymer film due to friction of the polymer – base – polymer film. It is registered using an electrical measuring probe that consists of an electrode, a protective ring, and an electrometer. The friction coefficient is determined from the formula where T0 is the initial tension of the polymer film; T is the final tension of the polymer film; and Q is the angle of enclosure of the cylinder by the polymer film.