KaharN., DuckettR.A. and WardI.M., Stress optical studies of oriented poly(methyl methacrylate), Polymer, 19, No. 2, 1978, pp. 136–144
2.
BottoP.A., DuckettR.A., WardI.M., The yield and thermoelastic properties of oriented poly(methyl methacrylate), Polymer, 28, No. 2, 1987, pp. 257–262
3.
BeloshenkoV.A., KozlovG.V., VaryukhinV.N., SlobodinaV.G., Properties of ultra-high-molecular polyethylene and related polymerisation-filled compositions produced by solid-state extrusion, Acta Polymerica, 48, Nos. 5–6, 1997, pp. 181–192
4.
BeloshenkoV.A., KozlovG.V., SlobodinaV.G., PrutE.V. and GrinevV.G., Heat shrinkage of extrudates of ultra-high-molecular polyethylene and polymerisation-filled compositions based on it, High-molecular compounds, B, 37, No. 6, 1995, pp. 1089–1092
5.
KorchaginA.G., MartynovM.A. and TsygankovS.A., Structure of high density polyethylene produced by the solid-state hydro-extrusion method, High-molecular compounds A, Vol. 26, 12, 1984, pp. 2529–2533
6.
KozlovG.V., BeloshenkoV.A., SlobodinaV.G. and PrutE.V., Change in the structure of ultra-high-molecular polyethylene during solid-state extrusion, High-molecular compounds, B, Vol. 38, 6, 1996, pp. pp. 1056–1060
7.
CapaccioG., GibsonA.G. and WardI.M., Draw down and hydrostatic extrusion of ultra-high-modulus polymers. In: Ultra-high-modulus polymers. Eds: A. Ciferri and I. Ward, Chemistry, Leningrad, 1983, pp. 12–62
8.
BelousovV.N., KozlovG.V. and LipatovYu. S., Relationship of Mooney-Rivlin equation constants as a measure of short-range order in amorphous and amorphous-crystalline polymers. Proceedings of the USSR Academy of Sciences, Vol. 318, 3, pp. 615–618
9.
KozlovG.V., BeloshenkoV.A., VaryukhinV.N. and GazayevM.A., Fractal model for the heat shrinkage of oriented polymers. Applied Mechanics and industrial Physics, Vol. 39, 1, 1998, pp. 160–163