发明名称 METHOD FOR PREPARING HIGHLY CUT-RESISTANT ULTRAHIGH MOLECULAR WEIGHT POLYETHYLENE (UHMWPE) FIBER AND USE THEREOF
摘要 The present invention discloses a highly cut-resistant ultrahigh molecular weight polyethylene fiber, made of a ultrahigh molecular weight polyethylene and an inorganic ultrafine micropowder having a nanocrystalline structural morphology, wherein the inorganic ultrafine micropowder is one of an oxide, carbide, and nitride of aluminium, titanium, silicon, boron, and zirconium, or a combination thereof, and has an average diameter of 0.1-300 μm and a content of 0.1-14% of the total weight of the fiber. The present invention further discloses a method for preparing a highly cut-resistant ultrahigh molecular weight polyethylene fiber, comprising: adding nanocrystalline silicon carbide particles to a solvent, and repeatedly grinding by a sand mill; adding a ultrahigh molecular weight polyethylene, and the silicon carbide nanoparticles to a solvent, and mixing until uniform by stirring by a homogenizer with high shear, to obtain a spinning solution; and subjecting the spinning solution to conventional gelation spinning, and extracting and hot drawing the gel filament spun, to obtain a composite fiber. In the present invention, by introducing the nanocrystalline ultrafine particles into the ultrahigh molecular weight polyethylene fiber, the composite fiber of ultrahigh molecular weight polyethylene/nanocrystalline ultrafine particles has a quite excellent cut-resistant performance.
申请公布号 US2017058431(A1) 申请公布日期 2017.03.02
申请号 US201515120124 申请日期 2015.03.11
申请人 JIANGSU JONNYMA NEW MATERIALS CO., LTD 发明人 SHEN Wendong;ZHU Qingren;CHEN Qingqing
分类号 D01F1/10;D01D1/02;D01D5/06;A41D31/00;D02G3/44;D01D5/12;A41D19/015;D01F6/04;D01D5/04 主分类号 D01F1/10
代理机构 代理人
主权项 1. A highly cut-resistant ultrahigh molecular weight polyethylene fiber, comprising ultrahigh molecular weight polyethylene and an inorganic ultrafine micropowder having a nanocrystalline structural morphology, wherein the inorganic ultrafine micropowder is one of an oxide, carbide, and nitride of aluminium, titanium, silicon, boron, and zirconium, or a combination thereof, and has an average diameter of 0.1-300 μm and a content of 0.1-14% of the total weight of the fiber.
地址 Jiangsu CN