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Tolalarni transportirovkalash kanalidagi havo bosimining yigirilayotgan ip sifatiga ta’sirini tadqiq etish

Fan yo'nalishi:Sanoat va ishlab chiqarish muhandisligi
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O_TJ.2024.03.11_dab5051f.pdf

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MAQOLA ANNOTATSIYASI

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Ipning shakllanishida diskretlovchi barabanchaning diametri hamda tezligi, transportirovka kanalining geometrik ko‘rinishi, kanal uzunligi, kirish va chiqish kengligi, konfuzorning chiqish qismidagi havo bosimiga hamda kanaldagi havo bosimiga ta’sir qiluvchi asosiy ko‘rsatkichlar hisoblanadi. Shu bilan birga, pnevmomexanik ip yigirish usulida olingan ipning mustahkamligi halqali yigirish usulida olingan ipga qaraganda uzilishdagi pishiqligi kamroq ekanligini inkor etib bo‘lmaydi, chunki pnevmomexanik usulda olingan ipdagi tolalarning deyarli 50 foizining uchlari to‘g‘rilanmagan, jingalaksimon, egilgan, chigallashgan va buklangan bo‘ladi. Tolalarning uchlarini to‘g‘rilash, tekisligini oshirish, ipning uzilishdagi pishiqligini va mustahkamligini oshirishning samarali usuli diskret tolalar oqimini yigirish kamerasiga yo‘naltiruvchi transportirovkalash kanali parametrlarini to‘g‘ri tanlash hisoblanadi. Diskret tolalarni transportirovkalash kanalidagi havo bosimi ipning fizik-mexanik xossa ko‘rsatkichlariga, yigirilgan ip sifatiga ta’sirini o‘rganish uchun an’anaviy va takomillashtirilgan usulda ip namunalari yigirib olindi. O‘tkazilgan tadqiqotlar natijasiga ko‘ra ipning pishiqligi yaxshilangan, pishiqligi bo‘yicha notekisligi va tukdorlik darajasi kamaygan, ipda burmalar bir tekis taqsimlanishi hamda ip uzilishlar soni kamayishi hisobiga pnevmomexanik yigirish mashinasining unumdorligini oshirishga va ip sifatini yaxshilanishiga erishilgan.

MUALLIFLAR

N.Kamoliddinzoda

TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI

Teglar

# ip sifati# tukdorlik# pnevmomexanik ip# transportirovkalash kanali# havo bosimi# pishiqlik

O'XSHASH MAQOLALAR

SHU JURNALDAGI BOSHQA MAQOLALAR

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Foydalanilgan adabiyotlar

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.