Influence of Intermoluecular Entangelments Upon the Mechanical Properties of High Polymers |
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acetone agreement angle anomaly apparatus appears approximately average ball calculated cause cellulose compliance components concentration constant Continued corresponding coupling creep creep data curve density dependence described determined diameter DIETHYL PHTHALATE distribution dried dynamic effect entanglements equation experimental experiments factor fall Figure flow fractions frequency function further given inches included increase indicates inertia latter log G logarithmic lower maximum means measured mechanical properties ments METHACRYLATE IN DIETHYL method modulus molded molecular weight observed obtained original parallel plate plotted points poly-n-octyl methacrylate polymer polymeric POLYMETHYL METHACRYLATE previously range reduced reduced to 25°c region relaxation removed retardation runs sample coefficient shape shear shift shown similar single slope solution solvent spectra spectrum steel strain stress SUMMARY OF TORSION TABLE temperature tion TORSION PENDULUM DATA values viscosity wire