• Title of article

    Ultra-high molecular weight polypropylene (UHMWPP): Synthesis and fiber processing

  • Author/Authors

    Trivedi ، Parthiv M. Polymer Synthesis Catalysis Division - Reliance Research Development Centre - Reliance Industries Limited , Patil ، Sandip E-Spin Nanotech Pvt. Ltd. - IIT Kanpur , Gupta ، Virendra Kumar Polymer Synthesis Catalysis Division - Reliance Research Development Centre - Reliance Industries Limited

  • From page
    21
  • To page
    28
  • Abstract
    Ultra-high molecular weight polyolefin (UHMWPO) has enormous potential applications due to its excellent mechanical properties such as tensile strength, flexural modulus, toughness and outstanding chemical resistance. But the processing of polyolefin, in particular UHMWPO fibers, cannot be processed by conventional methods due to its very high melt viscosity. In this work, we synthesized isotactic ultra-high molecular weight polypropylene (UHMWPP) resin and studied the processability of UHMWPP fibers using gel spinning and investigated physicomechanical properties. UHMWPP gel was made at various concentrations in decalin solvent at 150°C to produce consistent spinning dope solutions. The 7 wt.% concentration of UHMWPP was deemed best for fiber creation, compared to 3 wt.% and 5 wt.%. A rheological time sweep was done to ensure the gel s stability at 170°C before the spinning process. The UHMWPP s gelation and fiber formation were studied by tweaking the gel concentration and adjusting the processing temperature. The resulting UHMWPP monofilament had a measure of 220-250 denier. The hot stretched fibers were analyzed with scanning electron microscopy (SEM) to understand the surface morphology of the fibers. The crystal morphology of UHMWPP fibers was measured with wide-angle X-ray diffractometry (WAXS) and DSC. The X-ray patterns of hot stretched UHMWPP fibers showed crystalline peaks compared to those without stretched fibers.
  • Keywords
    Polyolefin , UHMWPP fibers , gel , spinning process , fiber stretching
  • Journal title
    Polyolefins Journal
  • Journal title
    Polyolefins Journal
  • Record number

    2763438