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ARIF K. NAIKWADE THIRD YEAR TEXTILE TECHNOLOGY D.K.T.E TEXTILE AND ENGG. INSTITUTE ICHALKARANJI. MAHARASTRA STATE. INDIA.

REFERENCES MADE FOR PROJECT WORK

Literature Cited
1. Adanur, S., "Air-Jet Filling Insertion: Velocity Measurement and Influence of Yarn Structure", M.S. Thesis, North Carolina State University, Raleigh, NC, 1985.
2. Adanur, S., "Air-Jet Dynamic Analysis of Single NozzleAir_Jet Filling Insertion", Ph.D. Thesis, North Carolina State University, Raleigh, NC, 1989.
3. Adanur, S., and Mohamed, M. H., Analysis of Air Flow in Air-Jet Filling Insertion, Text. Res. J., 61(5), 253-258 (1991).
4. Adanur, S., and Bakhtiyarov, S., Analysis of Air Flow in Single Nozzle Air-Jet Filling Insertion: Corrugated Channel Model, Text. Res. J., 66(6), 401-406 (1996).
5. Adanur, S., and Turel, T., Effects of Air and Yarn Characteristics in Air-Jet Filling Insertion Part II: Yarn Velocity Measurements with a Profiled Reed, Text. Res. J., 74(8), 657-661 (2004).
6. Mohamed, M. H., and Salama, M., Mechanics of a Single Nozzle Air-Jet Filling Insertion System Part I: Nozzle Design and Performance, Text. Res. J., 56(11), 683-690 (1986).
7. Krause, H. W., "The Air-Jet Weaving Machine in Practical Use", Melliand Textilberichte (Eng. Ed.), September, 1980.
8. Kissling, U., "Experimental and Theoretical Analysis of Weft Insertion by Air-Jet", Melliand Textilberichte (Eng. Ed.), February, 1985.
9. Ishida, T, "Air-Jet Loom, Present and Future, Part 5: Technical Problems Caused by Air-Jet", JTN, November, 1982.
10. Hasegawa, J., et al., A Study of Weft Insertion System on Air-Jet Loom, in "ASME Textile Engineering Conference, Raleigh, NC", 1981.
11. Poppe, T., "The Influence of Rotor Yarn Properties on Air Consumption in Air Jet Weaving", Master's Thesis, Institute of Textile and Process Technology, University of Stuttgart, 1995.
12. Wahhoud, A., "Investigations into the Behavior of Yarns in Pneumatic Weft Insertion", Melliand Textilberichte (Eng. Ed.), April, 1983.
13. Tarabadkar, S. A., Sharma, H. M., and Yadav, D. H., "Assessment of Compressed Air Requirement for Spinning and Weaving Machines", Vol. XXXI, No. 3, The Bombay Textile Research Association, September, 2001.
14. Ishida, M., and Okajima, A., Flow Characteristics of the Main Nozzle in an Air-Jet Loom Part I: Measuring Flow in the Main Nozzle, Text. Res. J., 64(1), 10-20 (1994).More Articles of Interest
15. Ishida, M., and Okajima, A., Flow Characteristics of the Main Nozzle in an Air-Jet Loom Part II: Measuring High Speed Jet Flows from the Main Nozzle and Weft Drag Forces, Text. Res. J., 64(2), 88-100 (1994).
16. Jeong, S. Y., Kim, K. H., Choi, J. H., and Lee, C. K., Design of the Main Nozzle with Different Acceleration Tube and Diameter in an Air-Jet Loom, Int. J. Precision Eng. Manufact., 6(1), 23-30 (2005).
17. Picanol NV, "The Air Index, a New Reference for Yarn Evaluation", Picanol News, October, 8-11 (2001).
18. Picanol NV, Picanol News, June, 17-27 (2006).
19. www.lindauer-dornier.com (date of access: 21.09.2007)
20. www.sultex.com/15500-e.pdf (date of access: 21.09.2007)
21. www.toyota-industries.com/textile/products/weaving_jat710 (date of access: 21.09.2007)
22. www.tsudakoma.co.jp/textile/english/product/1000.html (date of access: 21.09.2007)
23. Adanur, S., "Handbook of Weaving", Technomic Publishing Company, Inc., U.S.A., 2001.
24. Ajmeri, J. R., and Ajmeri, C. J., Electronic Controls for Efficient Filling Insertion, Pakistan Textile J., June, 2004.

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