O_TJ.2024.03.11_dab5051f.pdf
N.Kamoliddinzoda
TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI
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Kwasniak J. An investigation of a new method to produce fancy yarns by rotor spinning. J Text Inst 2000; 87: 321–334 p.
Matsumoto YI, Fushimi S, Saito H, et al. Twisting mechanisms of open-end rotor spun hybrid yarns. Text Res J 2002; 72: 735–740 p.
Cheng KB and Murray R. Effects of spinning conditions on structure and properties of open-end cover-spun yarns. Text Res J 2000; 70: 690–695 p.
Sherzod Korabayev; Kamol Akhmedov; Saypila Matismailov; Alisher Yuldashev. Analysis of forces affecting fiber breakage of opening roller saw teeth of rotor spinning machine. Research article | march-11.2024. 030018-1 p.
Sherzod Korabayev; Kamol Akhmedov; Husanhon Bobojanov; Saypila Matismailov. A Method for Researching the Aerodynamic Properties of Cotton Fiber in a Rotor Spinning Machine Separator. Research article | march-11.2024. 050010-1 p.
Nuriddin Kamoliddinzoda; Sherzod Korabayev; Saypilla Matismailov; Shoira Makhkamova. Optimization of production of the mixed open-end yarn Research article | march-11.2024. 030082-1 p.
Tursunbayevich, Yuldashev & Atambayev, Dilmuhammad & Korabayev, Sherzod & Lolashbayevich, Matismailov. (2020). 3460 Study Of Fiber Movement Outside The Crater Of Pnevmomechanical Spinning Machine. 63. 3460-3466.
Lawrence CA and Chen KZ. A study of the fibre-transfer-channel design in rotor-spinning. Part II: optimization of the transfer-channel design. J Text Inst 1988; 79: 393–408.
Lawrence CA and Chen KZ. A study of the fibre-transfer-channel design in rotor-spinning. Part I: the fibre trajectory. J Text Inst 1988; 79: 367–392.
Zhang LH and Zhang BX. A study of fiber transfer channel in rotor spinning. J China Text Uni. 1991; 17: 16–26.
Kong LX and Platfoot RA. Two-dimensional simulation of air flow in the transfer channel of open-end rotor spinning machines. Text Res J 1996; 66: 641–650.
Kong LX and Platfoot RA. Fibre transportation in confined channel with recirculations. Comput Struct 2000; 78: 237–245.
Lin H, Zeng Y and Wang J. Computational simulation of air flow in the rotor spinning unit. Text Res J 2016; 86: 115–126 p.
Lei L, Hu XD and Chen HL. Wear of high-speed suction spinning rotor. Text Mach 2012; 6:43–46 p.
Zou PD, Chen HL, Li XM, et al. Study on influence of flow field state on piecing behavior of rotor spinning. Adv Text Technol 2014; 3: 1–4 p.
Yang RH and Wang SY. Effects of spinning conditions on convergent point in rotor-spun composite-yarn spinning process. J Text Inst 2009; 100: 654–656 p.
Kong LX and Platfoot RA. Fiber transportation in confined channel with recirculation. Comput Struct 2000; 78: 237–245 p.
SH.Qoraboyev. “Pnevmomexanik yigirish mashinalarida ipning shakllanish jarayonlari nazariyasi va amaliyoti” Texnika fanlari doktori (DSc) ilmiy darajasini olish uchun yozilgan dissertatsiyasi. Namangan-2023 y. 18-20 b.
A.Pirmatov. Yigirish texnologiyasi. Toshkent 2021 y. 293-294 p.
Lin HT, Wang J and Zeng YC. Numerical study on effect of geometric parameters of transfer channel on airflow in rotor spinning. J Text Res 2015; 36: 98–104 p.