Научная статья на тему 'DESIGN OF FINISHED YARN CONVEYING SYSTEM ON DIRECT TWIST'

DESIGN OF FINISHED YARN CONVEYING SYSTEM ON DIRECT TWIST Текст научной статьи по специальности «Медицинские технологии»

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Ключевые слова
automated production line / conveying system / fixed mechanism / design and analysis / 夹布翻转机构 / 传动方案 / 运动分析

Аннотация научной статьи по медицинским технологиям, автор научной работы — Shu X., Yang L., Wang B., Mei S.

In the traditional twisting process of industrial yarns, the yarn bobbins are transported manually, and long-term labor causes great physical damage to the operators. Therefore, the demand for automated production is very urgent.The conveying process of finished yarns after doffing is an essential part of the design of automated production lines. This article analyzes and designs the finished yarn conveying link, determines the structural design of the mechanism by studying the realization of the fixing device, completes the selection of key components and parameter analysis, and analyze the movement path of the conveyor belt and the force of the finished yarn clamping process.The finished yarn conveying system is mainly composed of two parts. The first half is the conveyor belt in the middle of the machine, and the second half is the fixing device at the rear of the car.

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自动袖衩机夹布翻转机构的设计

衬衫属于传统经典服饰, 男士衬衫对细节的把握尤为重要, 袖衩是男士衬 衫的一个重要构成要素, 其结构和工艺形式决定着衬衫的品质和风格. 本文研究 的是一款缝纫机械的执行机构 — 自动袖衩机夹布翻转机构. 夹布翻转机构通过 气动夹爪及步进电机驱动同步带的共同配合完成大袖衩片的翻转及压覆动作, 通过研究折布功能的实现方式, 对夹布翻转机构的运动进行分析, 设计翻转路 径, 设计夹布, 翻转的传动方案, 确定机构的结构形式, 进行部件参数的计算及选 型, 并进行机构仿真.

Текст научной работы на тему «DESIGN OF FINISHED YARN CONVEYING SYSTEM ON DIRECT TWIST»

Для цитирования: Shu Xing, Yang Liye, Wang Bin, Mei Shun-qi. Design of Finished Yarn Conveying System on Direct Twist // [Электронный ресурс] URL: http://rectors.altstu.rU/ru/periodical/archiv/2020/2/articles/2_3.pdf DOI: 10.25712/ASTU.2410-485X.2020.02.007

УДК 677.05

(Design of Finished Yarn Conveying System on Direct Twist)

112 1 Shu Xing ,Yang Liye , Wang Bin , Mei Shun-qi

1 Hubei Digital Textile Equipment Key Laboratory, School of Mechanical Engineering and Automation,

Wuhan Textile University, Wuhan 430073, China 2 Yichang Jingwei Textile Machinery Co.Ltd., Hubei Yichang, 443001,China [email protected] ; [email protected]

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1 .Creel roller tension device 2.Crecl

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9. Yarn controller

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Figure 4. Conveyor belt continuous running speed time curve (left); Conveyor belt intermittent

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61 ВЫПУСК

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[1] plc -mm^mm^mmm [J]. rnrnx^, 2017,7(2^77-80.

[2] [M]. ^M: 2011.

[3] mnm. «^iif^«^ [J]. 2019,(3):77-78.

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[5] mm, m. ^jmmxrm&mum^min [J].

2013,48(6):29-32.

[6] sf=i fx-2n mm plc [J].

2018,15(2):76-77. References

[1] Fan Yunlong. PLC and frequency converter realize the synchronous control of the conveyor belt [J]. New Industrialization, 2017, 7(2): 77-80.

[2] Hang Yongzhi. Mechanical parts and transmission structure [M]. Beijing: Machinery Industry Press, 2011.

[3] Mei Xuefeng. Research on the design method of machine tool fixture [J]. Modern Manufacturing Technology and Equipment, 2019, (3): 77-78.

[4] Li Liangjun. Mechanical Design[M]. Beijing: Higher Education Press, 2010.

[5] Feng Ke, Zhang Xianglin, Liu Xin, et al. The overall design of the automation transformation of small and medium-sized stamping production lines [J]. Forging Equipment and Manufacturing Technology, 2013, 48(6): 29-32.

[6] Hou Fang, Li Zidu. Four-section conveyor belt simulation control design based on Mitsubishi FX-2N series PLC[J]. Wireless Internet Technology, 2018, 15(2): 76-77.

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