• 专利标题:   Preparing one-dimensional nano-material multi-layer coating continuous high-conductivity organic fiber, comprises e.g. passing pre-treated organic fiber core material and filling group of glue tank with conductive adhesive slurry.
  • 专利号:   CN113322670-A
  • 发明人:   LU H, YANG Z, BA L
  • 专利权人:   HUANGSHAN LIANYU TEXTILE NEW MATERIAL
  • 国际专利分类:   D02G003/44, D06M101/20, D06M101/32, D06M101/34, D06M011/47, D06M011/49, D06M011/74, D06M011/83, D06M015/263, D06M015/564
  • 专利详细信息:   CN113322670-A 31 Aug 2021 D06M-011/74 202179 Pages: 10 Chinese
  • 申请详细信息:   CN113322670-A CN10588654 28 May 2021
  • 优先权号:   CN10588654

▎ 摘  要

NOVELTY - Preparing one-dimensional nano-material multi-layer coating continuous high-conductivity organic fiber comprises orderly passing the pre-treated organic fiber core material through multiple glue pool, where the diameter of the outlet liquid drop of the glue pool is not less than 3D, D is the diameter of the organic fiber core material, and the organic fiber core material before entering the glue pool drying process; at least comprising two groups of glue pool, filling group of glue tank with conductive adhesive slurry, filling the other group of glue tank with one-dimensional conductive nano material slurry. USE - The fiber is useful in intelligent textile, aerospace, and national defense industry. ADVANTAGE - The fiber has good physical characteristics (wear resistance, extension stability), realizes high-speed continuous production, solves the problem that the existing high conductive fiber has good conductivity, strain conductivity stability, bending resistance, anti-friction, low cost and high production efficiency be comprehensively provided. DETAILED DESCRIPTION - INDEPENDENT CLAIMS are also included for: (1) one-dimensional nano-material multi-layer coating continuous high-conductivity organic fiber prepared according to above mentioned method; (2) conductive yarn, comprising the one-dimensional nanomaterial multi-layer coated continuous high-conductivity organic fiber; and (3) conductive fiber structure.