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The chemistry, manufacture, and tensile behavior of polyamide fibers  419

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           Further reading

           Averett RD: Fracture mechanics of high performance nylon fibres (M.Sc. thesis). Georgia,
               2004, Georgia Institute of Technology.
           Benham PP, Crawford RJ, Armstrong CG: Mechanics of engineering materials, London, 1996,
               Longman Group Ltd.
           Cottrell AH: Dislocations and plastic flow in crystals, Oxford, 1953, Clarendon Press.
           Hertzberg RW, Manson JA: Fatigue of engineering plastics, New York, 1980, Academic Press
               Inc.
           Huevel HM, Huisman R, Lind KCJB: Quantitative information from x-ray diffraction of nylon-6
               yarns. I. Development of a model for the analytical description of equatorial x-ray profiles,
               J Polym Sci B 14:921e940, 1976.
           Perepelkin KE: Principles and methods of modification of fibres and fibre materials, Fibre Chem
               37:123e140, 2005.
           Peterlin A: Structural model of mechanical properties and failure of crystalline polymer solids
               with fibrous structure, Int J Fracture 11(5):761e780, 1975.
           Newell JA, Edie DD: Factors limiting the tensile strength of PBO-based carbon fibres, Carbon
               34(5):551e560, 1996.
           Treloar RLG: Calculations of elastic moduli of polymer crystals: I. Polyethylene and nylon 66,
               Polymer 1:95e103, 1960.
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