4.7 Article

Shortening Stabilization Time Using Pressurized Air Flow in Manufacturing Mesophase Pitch-Based Carbon Fiber

Journal

POLYMERS
Volume 11, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/polym11121911

Keywords

carbon fiber; mechanical properties; mesophase pitch; oxidation-stabilization; pressurized air flow

Funding

  1. Technology Innovation Program - Ministry of Trade, Industry, & Energy (MOTIE, Korea) [10082582]
  2. Korea Evaluation Institute of Industrial Technology (KEIT) [10082582] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Oxidation-stabilization using pressurized air flows of 0.5 and 1.0 MPa could successfully shorten the total stabilization time to less than 60 min for manufacturing mesophase pitch-based carbon fibers without deteriorating mechanical performance. Notably, the carbonized fiber heat-treated at 1000 degrees C for 30 min, which was oxidative-stabilized at 260 degrees C without soaking time with a heating rate of 2.0 degrees C/min using 100 mL/min of pressurized air flow of 0.5 MPa (total stabilization time: 55 min), showed excellent tensile strength and Young ' s modulus of 3.4 and 177 GPa, respectively, which were higher than those of carbonized fiber oxidation-stabilized at 270 degrees C without soaking time with a heating rate of 0.5 degrees C/min using 100 mL/min of atmospheric air flow (total stabilization time: 300 min). Activation energies for oxidation reactions in stabilization using pressurized air flows were much lower than those of oxidation reactions using atmospheric air flow because of the higher oxidation diffusion from the outer surface into the center part of pitch fibers for the use of the pressurized air flows of 0.5 and 1.0 MPa than the atmospheric one. The higher oxygen diffusivities resulted in a more homogeneous distribution of oxygen weight uptake across the transverse section of mesophase pitch fibers, and allowed the improvement of the mechanical properties.

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