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受限空间下打纬机构力矩平衡分析及其调控策略

袁汝旺 艾明

天津工业大学学报2024,Vol.43Issue(4):82-88,7.
天津工业大学学报2024,Vol.43Issue(4):82-88,7.DOI:10.3969/j.issn.1671-024x.2024.04.013

受限空间下打纬机构力矩平衡分析及其调控策略

Analysis of moment balance in beating-up mechanism and its regulation strategies under restricted space

袁汝旺 1艾明1

作者信息

  • 1. 天津工业大学 机械工程学院,天津 300387||天津工业大学天津市现代机电装备重点实验室,天津 300387
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摘要

Abstract

In order to deal with the adverse effects caused by the imbalance of inertia beating force and beating resistance of beating-up mechanism,the mechanical model of beating-up mechanism is established,and the adjustment method for the structural direction of beating-up mechanism is determined by taking the four-link beating-up mechanism as an example,and the quantitative simulation analysis is carried out under the consideration of space limitation.Comparative analysis is conducted on the effects of different adjustment schemes on driving torgue and output torque,and the motion characteristics brought about by different rod length design parameters are analyzed.The simulation results show that the inertia beating-up force can be effectively regulated by adding balancing members and changing the rod length ratio.When the beating-up force is insufficient,the beating torque is increased by about 14.5%and 3%after rotational inertia and scale adjustment respectively,and in-creased by about 17.8%after joint adjustment.When the beating-up force is too large,the torque is reduced by about 7.6%after scale adjustment.The rotational inertia and angular acceleration are the main control variables of the inertia beating force,which can be adjusted to meet the requirements of weaving process under different conditions,and provide theoretical reference for the scale and structure design of the beating-up mechanism.

关键词

惯性打纬力/转动惯量/角加速度/驱动力矩/四连杆打纬机构

Key words

inertia beating-up force/rotational of inertia/angular acceleration/driving moment/four-link beating-up mechanism

分类

轻工纺织

引用本文复制引用

袁汝旺,艾明..受限空间下打纬机构力矩平衡分析及其调控策略[J].天津工业大学学报,2024,43(4):82-88,7.

基金项目

天津市自然科学基金资助项目(18JCYBJC20200) (18JCYBJC20200)

中国纺织工业联合会应用基础研究项目(J202003) (J202003)

天津工业大学学报

OA北大核心CSTPCD

1671-024X

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