Page 121 - Handbook of Properties of Textile and Technical Fibres
P. 121

102                             Handbook of Properties of Textile and Technical Fibres

         Thompson AN, Hynd PI, Peterson AD, Ritchie AJM: Fibre strength and the proportion of
             discontinuous fibres in relation to staple strength in Merino sheep. In Proc. 9th Int. Wool
             Text. Res. Conf., Biella, 1995, pp 142e151.
         Thorsen WJ: Estimation of cortical components in various wools, Text Res J 28:185e197, 1958.
         Titze IR, Hunter EJ: Normal vibration frequencies of the vocal ligament, J Acoust Soc Am 115:
             2264e2269, 2004.
         Tsobkallo K, Aksakal B, Darvish B: Analysis of the contribution of the microfibrils and matrix
             to the deformation processes in wool fibers, J Appl Polym Sci 125:E168eE179, 2012.
             https://doi.org/10.1002/app.36535.
         Udakhe J, Honade S, Shrivastava N: Recent advances in shrinkproofing of wool, J Text Assoc
             72:171e179, 2011.
         Ukponmwan JO, Mukhopadhyay A, Chatterjee KN: Pilling, Text Prog 28:1e59, 1998.
         Viney C: Fracture of natural polymeric fibers. In Elices M, Llorca J, editors: Fiber fracture,
             Amsterdam, 2002, Elsevier, pp 303e328.
         Voong ETL, Montgomery DJ: Experimental study of stiffness and nonuniformity in the
             vibroscopic determination of fiber cross-sectional area, Text Res J 23:821e830, 1953.
             https://doi.org/10.1177/004051755302301110.
         Wan A, Yu W: Effect of wool fiber modified by ecologically acceptable ozone-assisted treat-
             ment on the pilling of knit fabrics, Text Res J 82:27e36, 2012.
         Wan A, Jiang G, Yu W, Cong H: Fuzzing mechanism and fibre fatigue of wool knit, Indian J
             Fibre Text Res 39:238e243, 2014.
         Wang LJ, Wang X: Diameter and strength distributions of merino wool in early stage processing,
             Textile Res J 68(2):87e93, 1998.
         Wang LJ, Wang X: A study of wool’s tensile strength in early stage processing, Textile Res J
             70(2):98e102, 2000.
         Warburton FL: A direct measurement of the transverse swelling of wool fibres in water vapour,
             J Text Inst 38:T65eT72, 1947.
         Waters PJ, Evans NA: The abrasion-resistance of ultra-violet-irradiated wool e the effect of a
             benzotriazole photostabilizer, J Text Inst 74:99e100, 1983.
         Watt IC: Sorption of water by keratin: VII. Location and properties of sorbed water, J Macromol
             Sci Rev Macromol Chem C18:216e221, 1980.
         Watt IC, D’Arcy RL: Waterevapour adsorption isotherms of wool, J Text Inst 70:298e307,
             1979.
         Whiteley KJ, McMahon PR: Observations on the significance of the natural variations in the
             sulphur content of wool keratin. In Proc. 3rd Int. Wool Text. Res. Conf., Paris, 1965, pp
             539e546.
         Wolfram LJ, Albrecht L: Torsional behavior of human hair, J Soc Cosmet Chem 36:87e99,
             1985.
         Wortmann F-J, Deutz H: Thermal analysis of ortho- and para-cortical cells isolated from wool
             fibres, J Appl Polym Sci 68:1991e1995, 1998.
         Wortmann F-J, Zahn H: The stress/strain curve of a-keratin fibres and the structure of the in-
             termediate filament, Text Res J 64:737e743, 1994.
         Wortmann F-J, Rigby BJ, Phillips DG: Glass transition temperature of wool as a function of
             regain, Text Res J 54:6e8, 1984.
         Wortmann F-J, Wortmann G, Greven R: Mechanical profilometry of wool and mohair fibers,
             Text Res J 70:795e801, 2000.
         Wortmann F-J: Temperature- and humidity-induced transitions in alpha-keratinous materials, Int
             J Sheep Wool Sci 55:1e15, 2007.
   116   117   118   119   120   121   122   123   124   125   126