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And Winslow, F. , J. Polymer Sci. 62 291 (1962). Bassett, D. , Polymer, London, 5 457 (1964). Bair, H. , Salovey, R. and Huseby, T. , Polymer, London, ~ 9 (1967). Mandelkern, L. , A. , Polymer Letters 4 447 (1966). , A. L. , J. Pnysical Chern. 72 309 (1968). , Hayashi, S. , J. Physical Chern. 72 178 (1968). Bair, H. E. , J. Sci. B3(l) 3 (1969). Hoffman, J. , Society of Plastics Engineers Trans. 4 315 (1964). Hellmuth, E. , J. Appl. Phys. 36 3039 (1965). , J. Polym. Sci. 61 463 (1962). -Salovey, R.

Kosaka, J. Polym. Sci. A-2, ~, 153 (1970). K. H. Illers, European Polym. J. Supplement, p. 133 (1969). C. W. Bunn and H. S. Peiser, Nature 159,161 (1947). B. -L. E. Nielsen, J. Polym. Sci. 42, 357 (1960). J. Schaefer, J. Phys. Chem. 70,1975 (1966). F. P. Reding, J. A. Faucher and R. D. Whitman, J. Polym. Sci. , 483 (1962). R. K. Tubbs, J. Polym. Sci. A3, 4181 (1965). L. A. Wood, J. Polym. Sci. 2~ 319 (1950). D. Bodily and B. Wunderlich-,-J. Polym. Sci~ A-2. i. 25 (1966). L. E. Nielsen, Mechanical Properties of Polymers, Reinhold.

The comparison is done with data obtained at low temperature where plastic deformation is negligible. od agreement; the ultimate tensile strength, however, is slightly higher in the rolled sample than in the drawn material. A similar behavior is found in FF, when the values of the drawn material of high draw ratio extrapolated to low A are compared to those of the rolled FF. The disagreement in the tensile strength indicates that, despite a great many similarities in the basic deformation process during drawing and rolling, some CALORIMETRY OF POLYETHYLENE 23 differences in the structure and properties exist between the two cases.

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