logo
calendar27 Iyun 2025
view5
Main language:Uzbek

Study on Optimization of Parameters of a False Twist Device in Low-Twist Yarn Spinning

Field of Science:Industrial and Manufacturing Engineering
pdf

O_TJ.2025.02.15_4ae402a1.pdf

PDF

ARTICLE ANNOTATION

quote
This article examines the implementation of a false-twist device in the production process of low-twist yarn using the ring spinning method. The influence of the device's rotation speed and its position relative to the delivery rollers of the ring spinning machine drafting system on the yarn tenacity and hairiness was studied. The false-twist device was installed on a Zinser 350 ring spinning machine, and its optimal parameters were determined based on full factorial experiments. Using regression equations, the main factors affecting yarn quality were identified, and their optimal combination was determined. It was shown that increased fiber migration in the twisting triangle enhances the structural stability of the yarn. The results obtained allow for improved quality in the production of low-twist yarn.

AUTHORS

M.Raximberdiyev

TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI

Tags

# quality indicators# spun yarn# false twist device# low twist# full-factor experiments

SIMILAR ARTICLES

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

ROI:

Not Available

DOI:

Not Available

References

O‘zbekiston Respublikasi Prezidentining 2024-yil 1-maydagi PF-71-son “Tо‘qimachilik va tikuv – trikotaj sanoatini rivojlantirishni yangi borqichga olib chiqish chora-tadbirlari tо‘g‘risida”gi farmoni.

Rong Yin. Spinning dynamics and performances of Modified ring spun yarns. A thesis submitted in partial fulfilment of the requirements for the degree of Doctor of Philosophy.The Hong Kong Polytechnic University (2018). https://theses.lib.polyu.edu.hk/bitstream/200/9334/1/991022090659203411.pdf

M.Khan, H.Begum, M.Sheikh. An overview on the spinning triangle based modifications of ring frame to reduce the staple yarn hairiness // Journal of textile science and technology. Vol. 6. 2020-yil. 4-b.

Murugesan, M., Senthilkumar, T. and Nayar, R.C. (2017) Prediction of the Spinning Triangle Height in Ring Frame Using Artificial Neural Networks. IOSR Journal of Polymer and Textile Engineering, 4, 1-7. https://doi.org/10.9790/019X-04030107

Noman Haleem. Dynamics of Spinning Triangle Geometry and Its Effects on Yarn Quality. Submitted in fulfilment of the requirements for the degree of Doctor of Philosophy. Deakin University (2017). https://dro.deakin.edu.au/eserv/DU:30103750/haleem-dynamicsof2017.pdf

Noman Haleem, Xin Liu, Christopher Hurren, Stuart Gordon, Saeed S Najar3 and Xungai Wang. Investigating the cotton ring spun yarn structure using micro computerized tomography and digital image processing techniques. Textile Research Journal. 2019, Vol. 89(15). https://journals.sagepub.com/doi/pdf/10.1177/0040517518805387

Murat Demir, Musa Kilic, Serdar Sayin. Design of three-strand compact spinning system and numerical flow-field simulation for different structures of air-suction guides and suction inserts. First Published January 27, 2021. https://journals.sagepub.com/doi/10.1177/0040517520987521

Parvaneh Kheirkhah Barzoki, Morteza Vadood, and Majid Safar Johari. Investigating the RoCos Core Spun Compact Yarn Properties. Journal of textiles and polymers, vol. 5, no. 2, june 2017. https://www.itast.ir/article_50197_9132e6220d7b53407c5d0ea0dbbc6855.pdf

https://www.rieter.com/services/customer-magazines/spinnovation

Wang, K.Y., Xue, W.L. and Cheng, L.D. (2018) Nozzle Based Compact Spinning. Journal of Textile Engineering & Fashion Technology, 4, 137-139. https://doi.org/10.15406/jteft.2018.04.00136

Liu, X.J., Zhang, H. and Su, X.Z. (2016) Comparative Analysis on Pneumatic Compact Spinning Systems. International Journal of Clothing Science and Technology, 28, 400-419.

Liu, X.J., Liu, W.L., Zhang, H. and Su, X.Z. (2015) Research on Pneumatic Compact Spun Yarn Quality. The Journal of The Textile Institute, 106, 431-442. https://doi.org/10.1080/00405000.2014.925198

Textile Excellence (2018) Impact FX for Spinning. https://www.textileexcellence.com/news/machinery-and-technology/saurer-ushers-in-gennext-impact-fx-for-spinning/

https://www.woolwise.com/wp-content/uploads/2017/07/Wool-482-582-08-T-15.pdf

Suessen-Compacteasy-Brochure. https://www.rieter.com/fileadmin/user_upload/products/documents/systems/end-spinning/suessen-compacteasy-brochure-93211-en.pdf

M.R.Raximberdiyev, Sh.R.Fayzullayev. Modifikatsiyalangan ip ishlab chiqarish istiqbollari. O‘zbekiston to‘qimachilik jurnali. 2022-yil, 1-son. 52-b.

M.R.Raximberdiyev, Sh.R.Fayzullayev, H.T.Bobojanov, J.Z.Soloxiddinov, A.A.Yusupov. Modifikatsiyalangan halqali yigirish usulining kompakt tizimi avfzaligi va kamchiliklari tahlili. Farg'ona politexnika instituti ilmiy-texnika jurnali. 2022-yil, 26-tom, 6-son, 108-b.

C.M.Murrells, X.M.Tao, B.G.Xu, K.P.Cheng. An artificial neural network model for the prediction of spirality of fully relaxed single jersey fabrics // Textile research journal. Vol. 79 (3). 2009-yil. 227-b.

Beltran Rafael, L.J.Wang, X.G.Wang. A controlled experimental on yarn hairiness and fabric pilling // Textile research journal. Vol. 77 (3). 2007-yil. 179-b.

K.P.S.Cheng, C.H.L.Li. Jet-ring spinning and its influence on yarn hairiness. Textile research journal. Vol. 72. 2002-yil. 1079-b.

A.R.Kalyanaraman. A process to control hairiness in yarn. Textile research journal. Vol. 83 (3). 1992-yil. 407-b.

M.R.Raximberdiyev, K.I.Ahmedov, Sh.R.Fayzullayev. A Theoretical Study On The Effect Of A False Twister On The Spinning Triangle In Yarn Formation On A Ring Frame. Eurasian Journal of Engineering and Technology. Volume 28. March 2024. https://geniusjournals.org/index.php/ejet/article/view/5750. 57-b.

M.R.Raximberdiyev, Sh.R.Fayzullayev, Sh.F.Maxkamova. Sovershenstvovaniye kolsepryadeniya putem modifikatsionnix ustroystv. 57-y Mejdunarodnoy nauchno-texnicheskoy konferensii prepodavateley i studentov. 18 aprelya 2024 goda. 70-b.