A computer programme was developed as a mathematical model of the behaviour of the tail rope of a Koepe winder. The programme uses the experimental values of torque versus tensile load measured on the Universal Wire Rope Fatigue Testing Machine to determine values of C and T of the rope discreet loading conditions. The values of C and T are numerically analysed to determine the torque and twist in the rope under field conditions. A case study to show the effect of varying the swivel friction characteristics is included.
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Univ of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, AustUniv of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, Aust
Williams, J.F.
Stouffer, D.C.
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Univ of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, AustUniv of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, Aust
Stouffer, D.C.
Ilic, S.
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Univ of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, AustUniv of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, Aust
Ilic, S.
Jones, R.
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Univ of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, AustUniv of Melbourne, Dep of Mechanical, & Industrial Engineering,, Melbourne, Aust, Univ of Melbourne, Dep of Mechanical & Industrial Engineering, Melbourne, Aust