[5] White P A (2002), Improvements in Processing of Tencel Fibres and Fabrics, Lenzinger Berichte,

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1 REFERENCES [1] Pan N and Postle R (1995), Strength of twisted blend fibrous structures: theoretical prediction of the hybrid effects, J Text Inst, 86, [2] Pan N, Chen K, Monego C J and Backer S (2000), Studying the mechanical properties of blended fibrous structures using a simple model, Text. Res. J., 70, [3] Marom G, Fischer S, Tuler F R and Wagner H D (1978), Hybrid effects in composites: conditions for positive or negative effects versus rule of mixtures, J Mat Sc, 13, [4] Loubinoux D and Chounis S (1985), An experimental approach of spinning new cellulose fibres with NMMO (N-Methylmorpholine-oxide) as solvent of cellulose, Lenzinger Berichte, August, [5] White P A (2002), Improvements in Processing of Tencel Fibres and Fabrics, Lenzinger Berichte, [6] Teli M D, Paul R and Pardeshi P D (2000), Tencel, the new generation, Indian Text J, 110(12), 13. [7] Samanta A K (2000), Benefits of Tencel, Indian Text J, 110(6), [8] Murthy H V S, Kuiti C K (1999), Lyocell- A new generation ecofriendly fibre from nature for next millennium, Man-made Text India, 42(11), [9] Kreze T and Malej S (2003), Structural Characteristics of New and Conventional Regenerated Cellulosic Fibres, Text Res J, 73, [10] Cole D and Jones A (1990), Solvent-Spun Fibre A New Member of the Cellulose Fibre Family, Lenzinger Berichte, 69, [11] Wooding C (2001), Regenerated Cellulosic Fibres, Woodhead publishing Limited, Cambridge, [12] Ward D T (1998), Lyocell: The Fibre Industry s Most Promising Innovation, Int Text Bulletin, 3, [13] Schuster K C, Aldred P, Villa M, Baron M, Loidl R, Biganska O, Patlazhan S, Navard P, Ruf H and Jericha E (2003), Characterising the Emerging Lyocell Fibres Structures by Ultra Small Angle Neutron Scattering, Lenzinger Berichte, 82,

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6 [68] Tyagi G K, Goyal Ashvani and Kherdekar (2010), Properties of regenerated cellulose (bamboo)-cotton MJS yarns, Melliand Int, 1-2, [69] Tyagi G K and Salhotra K R (1996), Influence of process parameters on characteristics of MJS yarns, Indian J Fibre Text Res, 21, [70] Tyagi G K, Kaushik R C D and Salhotra K R (2000), Mechanical characteristics of jet-spun acrylic-cotton yarns, Indian J Fibre Text Res, 25, [71] Punj S K, Behra B K and Sen Abhijit (1996), Polyester-viscose variations, Text Asia, 27(4), [72] Tyagi G K and Dhamija S (1998), Bulk and related properties of acryliccotton Jet spun Yarns, Indian J Fibre Text Res, 25, [73] Tyagi G K and Dhamija S (1998), Response of polyester-viscose jet-spun yarns to repeated extension, Indian J Fibre Text Res, 23, [74] Sreenivasan K and Shankaranarayana K S (1961), Twist and tension as factors in yarn characteristics, Text Res J, 31, [75] Morris P J, Merkin J H and Rennell R W (1990), Modelling of yarn properties from fibre properties, J Text Inst, 90, [76] Tyagi G K, Mehta Anup, Dalal Surender and Jain Kulbhushan (1995), Acrylic-polyester yarns: An overview, Indian Text J, 105(8), [77] Tyagi G K, Malik A P, Lal A and Jindal B M (1987), Influence of twist and thermal treatment on characteristics of acrylic-polypropylene blended yarns, Indian J Fibre Text Res, 12, [78] Tyagi G K (1991), Silk in blends with polyester fibres, Indian Text J, 102(2), [79] Tyagi G K and Chatterjee K N (1991), Physical characteristics of polyesterviscose and polyester-cotton yarns spun on ring- and rotor-spinning systems, Indian J Fibre Text Res, 16, [80] Kaushik R C D and Tyagi G K (1993), Properties of polyester-viscose ringand rotor-spun yarns in relation to polyester fibre denier and twist, Indian J Fibre Text Res, 18, [81] Tyagi G K, Bhowmick Manik, Bhattacharya S and Kumar R (2010), Effect of spinning conditions on mechanical and performance characteristics of cotton ring- and compact- spun yarns, Indian J Fibre Text Res, 35,

7 [82] Ratnam T V, Shankaranarayana K S, Underwood C and Govindarajulu K (1968), Prediction of the quality of blended yarns from that of the individual components, Text Res J, 38, [83] Barella A, Vega P A A and Castro L (1989), Yarn Attrition by Abrasion: A Comparison of Polyester-fibre/Cotton Blended-fibre Yarns Spun by Different Spinning Processes, J Text Inst, 80, [84] Barella A, Manich A, Castro L and Hunter L (1984), Diameter and hairiness of ring and rotor polyester-cotton blended spun yarns, Text Res J, 54, [85] Tyagi G K, Sharma K R, Goyal A and Singh Mandeep (2004), Variation in polyester-viscose and polyester-cotton ring and rotor yarn characteristics as a consequence of fibre cross-section, Indian J Fibre Text Res, 29, [86] Kothari V K, Ishtiaque S M and Ogale V G (2004), Hairiness properties of polyester-cotton blended yarns, Indian J Fibre Text Res, 29, [87] Kaushik R C D, Tyagi G K and Chatterjee K N (1990), Contribution of fibre profile and twist factor to flexural rigidity and elastic recovery of polyester fibre yarns, Indian J Fibre Text Res, 15, [88] Thierron W (1985), The flexural rigidity of polyester-fibre-cotton yarns produced on the ring-, rotor-, and friction- spinning systems, J Text Inst, 76, [89] Tyagi G K and Chatterjee K N (1992), Flexural rigidity and elastic recovery of polyester-viscose ring- and rotor-spun yarns in relation to some processing factors, Indian J Fibre Text Res, 17, [90] Tyagi G K, Choudhary A K and Salhotra K R (1996), Characteristics of acrylic-cotton yarns produced on ring and rotor spinning systems, Indian J Fibre Text Res, 21, [91] Mohamed M H, Lord P R and Saleh H A (1975), A comparison of the hairiness and diameter of ring and open-end yarns, Text Res J, 45, [92] Kaushik R C D, Salhotra K R and Tyagi G K (1992), Response of polyesterviscose blends to air-jet spinning, Indian J Fibre Text Res, 17, [93] Tyagi G K, Punj S K and Sharma R (1997), Mechanical properties of ring and jet-spun yarns as a function of thermal treatment, Asian Text J, 6(4), [94] Tyagi G K (1992), Air-jet spinning, Indian Text J, 103(3),

8 [95] Tyagi G K, Kaushik R C D and Salhotra K R (1998), Response of polyesterviscose ring and MJS yarns to heat treatment under relaxed condition, Indian J Fibre Text Res, 23, [96] Tyagi G K, Gopal A and Gon D P (2007), Contribution of fibre profile to performance characteristics of polyester-viscose and polyester-cotton ring and MJS yarns, Indian J Fibre Text Res, 32, [97] Tyagi G K, Goyal Ashvani and Murmu Golapi Goparani (2011), Structure and properties of yarn made from bamboo-cotton blend, Text Asia, 42(7), [98] Tyagi G K, Kaushik R C D and Salhotra K R (1997), Properties of OE rotor and MJS yarns spun at high spinning speeds, Indian J Fibre Text Res, 22, [99] Nikolic M, Cerkvick J and Stjepanovic Z (1994), Influence of spinning process on spun yarn quality and economy of yarn production, Int J Clothing Sc Tech, 6 (4) 34-40, [100] Tyagi G K (2010), Yarn structure and properties from different spinning techniques, in Lawrence C A, Advances in yarn spinning technology, Cambridge, Woodhead Publishing Limited, [101] Rajamanickam R, Hansen S M and Jayaraman S (1997), A computer simulation approach for engineering Air-jet spun yarns, Text Res J, 67, [102] Basu A (2000), Air-jet spun yarns: Structure-properties relationship, Asian Text J, 9 (10), [103] Park J W and Oh A G (2006), Bending rigidity of yarns, Text Res J, 76, [104] Hamburger J W (1949), The industrial applications of the stress-strain relationship, J Text Inst, 40, [105] Kemp A and Owen J D (1955), The strength and behaviour of nylon/cotton blended yarns undergoing strain, J Text Inst, 46, T684-T698. [106] Owen J D (1962), The strength and stress-strain behaviour of blended yarns, J Text Inst, 53, T144-T167. [107] Monego C J and Backer S (1968), Tensile rupture of blended yarns, Text Res J, 38,

9 [108] Machida K (1963), Mechanics of Rupture in Blended Yarns, Master s Thesis, Massachusetts Institute of Technology, Cambridge, MA, USA. [109] Aghasian S, Gharehaghaji A A, Ghane M and Parsian A (2008), Investigation on the properties of blended rotor-spun cotton/polyester yarn using a hybrid model, J Text Inst, 99, [110] Owen J D and Riding G (1964), The weighted-ring stiffness test, J Text Inst, 55, T [111] Mark C M, Yuen C W M, Ku S K and Tao X M (2004), A new cellulose in the market, Text Asia, 35(8), [112] Kilic G B and Sular V (2012), Frictional properties of cotton-tencel yarns spun in different spinning systems, Text Res J, 82, [113] Punj S K, Sharma K R and Agarwal M K (2004), Effect of blend ratio on tencel/polyester fabric, Indian Text J, 115(1), [114] Kumar A, Salhotra K R and Ishtiaque S M (2006), Analysis of spinning process using the Taguchi method. Part IV: Effect of spinning process variables on tensile properties of ring, rotor and air-jet yarns, J Text Inst, 97, [115] Kumar A, Salhotra K R and Ishtiaque S M (2006), Analysis of spinning process using the Taguchi method. Part V: Effect of spinning process variables on physical properties of ring, rotor and air-jet yarns, J Text Inst, 97, [116] Soe A K, Takahashi M, Nakajima M, Matsuo T and Matsumoto T (2004), Structure and properties of mvs yarns in comparison with ring yarns and openend rotor spun yarns, Textile Res J, 74, [117] Jackowska-Strumillo L, Cyniak D, Czekalski J and Jackowski (2007), Quality of cotton yarns spun using ring-, compact-, and rotor-spinning machines as a function of selected spinning process parameters, Fibres Text Eastern Eur, 60(1) [118] Erdumlu N, Ozipek B, Oztuna A S and Cetinkaya S (2009), Investigation of vortex spun yarn properties in comparison with conventional ring and openend rotor spun yarns, Textile Res J, 79, [119] Basal G and Oxenham W (2003), Vortex spun yarn vs. air-jet spun yarn, Autex Res J, 3(3),

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