纺织学报 ›› 2026, Vol. 47 ›› Issue (06): 233-241.doi: 10.13475/j.fzxb.20250802801
YUAN Ruwang1,2(
), MA Jinghan1, BIAN Haiqing3
摘要:
为解决提刀架传动系统动程可调、复动式开口与高效率等问题,根据提花开口工艺需求,构建了一种多平行连杆传动机构构型,提出了基于刚体导引与急回特性相结合的设计方法,并建立了其传动函数模型与工艺评价指标模型。从开口动程、2次综平一致性与传动效率3个方面,对3种不同门幅下传动系统的评价指标进行仿真及实验验证。结果表明:开口动程是影响传动系统评价指标的主要参数;不同门幅下传动系统,可满足多种动程调节,动程偏差率随开口动程的增大总体均呈现先下降后上升的趋势,其最大值为0.062%;可实现复动式开口,其2次综平一致性的偏差率随开口动程的增大而增大,随门幅的增加而减小,其最大值为6.28%;最小传动角随开口动程的增大而减小,且最小值大于70°,有较高效率;通过实验平台对2种开口动程下传动系统的工艺指标进行验证,其均满足提花开口工艺的设计需求。
中图分类号:
| [1] | 许玉桂, 涂宣文. 一种针织机的提花机构: CN112410994B[P]. 2022-04-08. |
| XU Yugui, TU Xuanwen. A jacquard mechanism of knitting machine:CN112410994B[P]. 2022-04-08. | |
| [2] | QIU H F, CHEN M, LI F Y, et al. Innovative design and experimental verification of cam shedding for high-speed looms[J]. Alexandria Engineering Journal, 2025, 112: 26-36. |
| [3] | 肖志涛, 尹洪环, 于鸿彬, 等. 多臂机旋转变速机构凸轮廓线建模与重构[J]. 纺织学报, 2020, 41(5): 159-166. |
| XIAO Zhitao, YIN Honghuan, YU Hongbin, et al. Modeling and reconstruction of cam profile for dobby modulator[J]. Journal of Textile Research, 2020, 41(5): 159-166. | |
| [4] | 彭来湖, 王罗俊, 胡旭东, 等. 磁保持电子选针器及串行总线提花系统设计[J]. 纺织学报, 2019, 40(1): 136-141. |
| PENG Laihu, WANG Luojun, HU Xudong, et al. Magnetic holding electronic needle selector and serial bus jacquard control system for circular knitting machine[J]. Journal of Textile Research, 2019, 40(1): 136-141. | |
| [5] | 文中伟. 范德威尔多款新品树行业新标[J]. 纺织机械, 2014(4): 29. |
| WEN Zhongwei. Vandewell's new products and new standards in the industry[J]. Textile Machinery, 2014(4): 29. | |
| [6] | 杨军. 基于高速提花机传动机构的分析与研究[J]. 装备机械, 2015(4): 52-60. |
| YANG Jun. Analysis and research on the transmission mechanism of high-speed jacquard machine[J]. The Magazine on Equipment Machinery, 2015(4): 52-60. | |
| [7] | 翁国才, 查显峰, 彭声东, 等. 一种具有引导系统的凸轮传动提花机: CN119711016A[P]. 2025-03-28. |
| WENG Guocai, ZHA Xianfeng, PENG Shengdong, et al. A cam-driven jacquard machine with a guide system: CN119711016A[P]. 2025-03-28. | |
| [8] | 赵琨, 张弛, 郭帅, 等. 电磁直驱与传统电子提花机动力学分析和效率对比[J]. 西南民族大学学报(自然科学版), 2022, 48(3): 340-345. |
| ZHAO Kun, ZHANG Chi, GUO Shuai, et al. Dynamic analysis and efficiency comparison of electromagnetic direct-drive and traditional electronic jacquard machine[J]. Journal of Southwest Minzu University (Natural Science Edition), 2022, 48(3): 340-345. | |
| [9] | 宋怡佳, 孙少伟. 一种提花机: CN222540965U[P]. 2025-02-28. |
| SONG Yijia, SUN Shaowei. A jacquard loom: CN222540965U[P]. 2025-02-28. | |
| [10] | EREN R, AYDEMIR A. Kinematic design method for sin-bar linkage sley drive mechanisms in weaving[J]. Indian Journal of Fibre and Textile Research, 2005, 30(3): 243-251. |
| [11] | 车林仙, 何兵. 按许用传动角综合单曲柄双摇杆式翻板机驱动机构[J]. 机械传动, 2021, 45(11): 79-84. |
| CHE Linxian, HE Bing. Synthesis for driving linkage of single-crank and bi-rocker in plate turnover machine by allowable transmission angle[J]. Journal of Mechanical Transmission, 2021, 45(11): 79-84. | |
| [12] | MYSZKA D H, MURRAY A P. Pole arrangements that introduce prismatic joints into the design space of four- and five-position rigid-body synthesis[J]. Mechanism and Machine Theory, 2010, 45(9): 1314-1325. |
| [13] | WANG Z X, YU H Y, TANG D W, et al. Study on rigid-body guidance synthesis of planar linkage[J]. Mechanism and Machine Theory, 2002, 37(7): 673-684. |
| [14] | 季海彬, 周香琴, 成小军. 基于开口工艺要求的多臂机机构参数分析[J]. 浙江理工大学学报(自然科学版), 2016, 35(2): 205-210. |
| JI Haibin, ZHOU Xiangqin, CHENG Xiaojun. Analysis on mechanism parameters of dobby based on requirement of opening process[J]. Journal of Zhejiang Sci-Tech University(Natural Sciences), 2016, 35(2): 205-210. | |
| [15] | 袁汝旺, 陈瑞, 蒋秀明, 等. 碳纤维多层织机打纬机构运动学分析与尺度综合[J]. 纺织学报, 2017, 38(11): 137-142. |
| YUAN Ruwang, CHEN Rui, JIANG Xiuming, et al. Kinematics analysis and dimension synthesis of beating-up mechanism for carbon fiber multi-layer loom[J]. Journal of Textile Research, 2017, 38(11): 137-142. | |
| [16] | 袁汝旺, 魏晓. 变速驱动下电子开口机构运动学建模及工艺优化[J]. 天津工业大学学报, 2023, 42(1): 81-88. |
| YUAN Ruwang, WEI Xiao. Modeling and craft optimization of electronic shedding mechanism under variable speed drive[J]. Journal of Tiangong University, 2023, 42(1): 81-88. | |
| [17] | JIRÁSKO PETR. Special mechanisms and their drives[M]. Liberec: Research Institute of Textile Machinery, 2018:118-125. |
| [1] | 郭敏, 高卫东, 朱博, 刘建立, 郭明瑞. 模拟织造状态下的浆纱耐磨性能测试方法[J]. 纺织学报, 2021, 42(11): 46-50. |
|
||