THE IMPACT OF VARIOUS DEFECTS IN DETERMINING IP QUALITY
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Keywords

defects, luminosity, capacity, mass, unevenness, motor, air pressure, mechanism.

How to Cite

THE IMPACT OF VARIOUS DEFECTS IN DETERMINING IP QUALITY. (2025). Journal of Science-Innovative Research in Uzbekistan, 3(5), 421-426. https://universalpublishings.com/index.php/jsiru/article/view/11927

Abstract

This article analyzes the impact of various types of defects on yarns. The formation of thickened yarns due to sliver breakage in natural and synthetic fibers is discussed. Such defects mainly result from improper reconnection of the sliver after it breaks. The study investigates the causes of these breakages and evaluates preventive measures aimed at reducing their occurrence. The results provide insights into improving yarn quality by minimizing sliver breakage through optimized mechanical adjustments and process control.

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References

1. Pelos, T. P. (2010). Spinning technology and equipment. [Textbook].

2. G‘aniyev, T. A. (1995). Occupational safety in the textile industry. Uzbekistan.

3. Hasanov, B. K., & Sodiqova, N. R. (2004). Theory and technology of preparing yarns for weaving. Uzbekistan.

4. Mahmudova, G., Siddiqov, A., Karimov, A., & Sarimsaqov, O. (2021). Study of the movement of cotton particles and heavy impurities in the working chamber of a pneumatic cleaner. UNIVERSUM: Technical Sciences, February 2021. https://7universum.com

5. Mahmudova, G., & Toshmirzayev, Q. (2021). About automation of loading and unloading of cotton raw materials at cotton factory stations. Academicia: An International Multidisciplinary Research Journal, October 2021. https://saarj.com

6. Mahmudova, G., Yo‘ldashev, X., & Qurbanov, D. (2021). Investigation of foreign lint cleaning system technologies. PEDAGOGLAR Journal, December 2021. www.pedagoglar.uz

7. Ubaydullaev, M. M., & Mahmudova, G. O. (2022). Defoliation – high yield. Journal of Advanced Research and Stability, May 2022. www.sciencebox.uz

8. Ubaydullaev, M. M., & Mahmudova, G. O. (2022). Medium fiber S-8290 and S-6775 cotton agrotechnics of sowing varieties. European International Journal of Multidisciplinary Research and Management Studies, May 2022. https://eipublication.com/index.php/eijmrms/article/view/163

9. Babaeva, M. N., Islomova, G. O., Karimov, N. M., & Sarimsaqov, O. Sh. (2020). Theoretical study of air density and speed changes in cotton pneumatic transport pipelines. FarPI Scientific-Technical Journal, May 2020. ISSN 2181-7200.

10. Maxmudova, G. O. (2022). Analysis of automation in the cotton raw material reception system at cotton factories. Journal of Science and Technological Development, Bukhara, No. 6/2022. ISSN 2181-8193. https://journal.bmti.uz/

11. Maxmudova, G. O. (2022). Analysis of the dynamics of moving cotton in pipes. European Journal of Emerging Technology and Discoveries, JIF 8.925. ISSN (E) 2938-3617. https://europeanscience.org/index.php/1/article/view/95

12. Turg‘unov, D. U., & Maxmudova, G. O. (2023). Analysis of the dynamic model of seed movement in cotton seed transportation. FarPI Scientific-Technical Journal, No. 2, 2023. ISSN 2181-7200.

13. Turg‘unov, D. U., & Maxmudova, G. O. (2023). Analysis of spinnability indicators of new working body designs for cotton separators. FarPI Scientific-Technical Journal, No. 6, 2023. ISSN 2181-7200.

14. Maxmudova, G. O. (2023). Development of aerodynamic cotton seed transportation process. FarPI Scientific-Technical Journal, No. 8, 2023. ISSN 2181-7200.

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