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  • 中国标准连:ISSN1005-2895
  • 续出版物号: CN 33-1180/TH
  • 主管单位:轻工业杭州机电设计研究院有限公司
  • 主办单位:轻工业杭州机电设计研究院有限公司、中国轻工机械协会、中国轻工业机械总公司
  • 社  长:刘安江
  • 主  编:黄丽珍
  • 地  址:杭州市余杭区高教路970号西溪联合科技广场4-711
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杨磊, 苗杨杨, 王欣豪.片式多源引纬技术组合流场特性分析[J].轻工机械,2025,43(1):7-13
片式多源引纬技术组合流场特性分析
Characteristic Analysis of Combined Flow Field with Sheet Type Multi Source Weft Insertion Technology
  
DOI:10.3969/j.issn.1005 2895.2025.01.002
中文关键词:  喷气织机  引纬  辅助喷嘴  异形筘  ANSYS FLUENT软件
英文关键词:air jet loom  weft insertion  auxiliary nozzle  special reed  ANSYS FLUENT
基金项目:
作者单位
杨磊, 苗杨杨, 王欣豪 西安工程大学 机电工程学院 陕西 西安710600 
摘要点击次数: 9
全文下载次数: 9
中文摘要:
      喷气织机的异形筘与辅助喷嘴结合产生的半敞开式流场会导致气体严重损耗,课题组提出了一种片式多源引纬技术,通过创新设计引纬通道,形成近似封闭的流场,从而提高引纬效率并降低气体损耗。采用ANSYS FLUENT软件对复合引纬片的组合流场进行数值模拟分析,研究了多个复合引纬片的间距及数量对流场特性的影响。结果表明:当复合引纬片间距为57 mm时,气流衰减较慢且气体损耗减少;3个复合引纬片共同作用时,气流引纬的稳定性最佳。该技术在保证引纬效果的同时有效降低气体损耗,为减少喷气织机气体损耗提供了新的方法。
英文摘要:
      The jet loom is widely employed in the textile industry because of its high efficiency and wide width. However, the semi open flow field formed by the combination of the profiled reed and the auxiliary nozzles can cause significant gas loss. To address this issue, the research group presents a sheet type multi source weft insertion technology. Through innovative design of the weft insertion channel, an approximately closed flow field is formed, thereby enhancing the weft insertion efficiency and reducing gas consumption. Numerical simulation and analysis of the combined flow field of the composite weft insertion sheet were conducted using ANSYS FLUENT software to investigate the influence of the spacing and quantity of multiple composite weft insertion sheets on the flow field characteristics. The results indicate that when the spacing of the composite weft insertion sheets is 57 mm, the airflow attenuation is slower and gas loss and consumption is reduced. When three composite weft insertion sheets act jointly, the stability of airflow weft insertion is optimal. This technology effectively reduces gas loss and consumption while ensuring the weft insertion effect, providing new methods and theoretical support for reducing gas loss in jet looms.
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