STB TÒQUV DASTGOHINING BATAN MEXANIZMINI TAKOMILLASHTIRISH ORQALI ISHLAB CHIQARISH SAMARADORLIGINI OSHIRISH
DOI:
https://doi.org/10.5281/zenodo.20505935Keywords:
Weaving loom, sley mechanism, STB, textile industry, efficiency, vibration, mechanism improvement.Abstract
This scientific article is devoted to the analysis and improvement of the sley mechanism of STB weaving looms used at the “NT HOLDING HOME TEXTILE” enterprise. Existing problems in modern sley mechanisms, such as high vibration levels, rapid wear, and limited operating speed, negatively affect production efficiency and product quality. The aim of the study is to identify the weaknesses of the existing mechanism and develop new optimized design solutions to eliminate them. The operating conditions of the mechanism were investigated through kinematic and dynamic analyses, as well as the Finite Element Analysis (FEA) method. Tests of the improved sley mechanism demonstrated a 28% reduction in vibration levels, a 15% increase in weaving speed, and a 60% extension of spare parts service life.References
Smith, A., Johnson, B., & Williams, C. (2018). *Vibration Analysis and Control in High-Speed Textile Machinery*. Journal of Textile Engineering, 45(2), 112-125.
Chen, P. S., Li, Y. W., & Wang, H. L. (2019). *Optimization of Loom Motion Mechanisms for Enhanced Productivity*. International Journal of Mechanical Design, 15(3), 201-215.
Li, J., Zhang, Q., & Liu, X. (2017). *Correlation between Weaving Loom Stability and Fabric Quality Defects*. Textile Research Journal, 87(11), 1380-1392.
O'zbekiston Respublikasi Prezidentining 2020 yil 5 oktyabrdagi PF-6079-sonli Farmoni “Raqamli Oʻzbekiston – 2030” strategiyasini tasdiqlash va uni samarali amalga oshirish chora-tadbirlari toʻgʻrisida.
Saidov, A. A. (2021). *Toʻquv dastgohlari mexanizmlarining dinamik tahlili va takomillashtirish yoʻllari*. Texnika fanlari boʻyicha dissertatsiya avtoreferati.
Ganiev, S. G. (2019). *Tekstil mashinalarining ish unumdorligini oshirishda materialshunoslikning ahamiyati*. Materialshunoslik va texnologiyalar jurnali, 12(1), 55-62.
Kim, D. H., & Park, J. S. (2020). *Design and Analysis of Lightweight Components for High-Speed Weaving Looms*. Journal of Advanced Materials, 32(4), 450-462.
Abduvaliev, N. A. (2022). *Toʻquv dastgohlarida energiya samaradorligini oshirish usullari*. Energetika va resurslarni tejash jurnali, 8(3), 88-95.
Yuldashev, B. T. (2021). *Kompozit materiallarning mashinasozlikdagi qoʻllanilishi*. Oʻzbekiston muhandislik jurnali, 2(1), 30-37.
Wang, F., & Xu, J. (2018). *Impact of Lubrication Systems on Bearing Life in High-Speed Machinery*. Tribology International, 120, 180-188.
Mirzaev, S. M. (2020). *Tekstil sanoatida raqamli texnologiyalarning joriy etilishi*. Raqamli iqtisodiyot va texnologiyalar jurnali, 5(2), 101-110.
Azimov, F. I. (2017). *Toʻquv dastgohlarining ishonchliligi va uzoq umr koʻrishini ta’minlash*. Mashinasozlik texnologiyasi jurnali, 10(4), 210-218.
Kurbanov, R. K. (2023). *Batan mexanizmlarida zarba yuklanishlarini kamaytirish usullari*. Ilmiy-texnik tadqiqotlar jurnali, 1(1), 45-53.
Normatov, U. N. (2022). *Polimer podshipniklarning sanoatda qoʻllanilishi va afzalliklari*. Polimer materiallari va texnologiyalari jurnali, 6(3), 115-122.
Soliev, T. S. (2019). *Toʻquv dastgohlarida mato nuqsonlarini oldini olish*. Tekstil muammolari jurnali, 13(2), 70-78.
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Innovative Academy RSC

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite