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April 30, 2026Journal of Applied Polymer Science0 citations

Identification of Pore‐Forming Development in PTFE Microporous Membranes Under Thermo‐Mechanical Stretching

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HLHaiyang LinZTZhipeng TangYSYucai Shen

Key Points

  • To identify and optimize the pore-forming mechanism of PTFE microporous membranes through thermo-mechanical stretching.
  • Prepared PTFE microporous membranes via thermo-mechanical stretching under varying conditions.
  • Monitored microcrack initiation and formation during stretching using mechanical characterization and scanning electron microscopy analysis.
  • Established the correlation between stress–strain curves and pore-forming points.
  • Identified microcrack initiation at early stretching stages.
  • Pore-forming points were found to coincide with the yield point on stress–strain curves.
  • Increased stretching ratios enhanced membrane porosity and hydrophobicity significantly.

Abstract

ABSTRACT Polytetrafluoroethylene (PTFE) is widely used for membrane preparation due to superior thermal stability, chemical inertness, and high fracture toughness. Elucidating the stretching mechanism is essential for the cost‐effective production of PTFE microporous membrane with optimized structure and performance. In this study, a series of PTFE microporous membranes were prepared via thermo‐mechanical stretching under various processing conditions. The results showed that the microcrack initiation occurred at the early stage of stretching. The specific point on the stress–strain curve where microcrack formation commences was identified as the stretching induced pore‐forming point. Through mechanical characterization and scanning electron microscopy (SEM) analysis, this pore‐forming point was established to coincide with the yield point. Notably, a rightward shift of this pore‐forming point on the stress–strain curve promotes microcrack development, and its displacement trend enables prediction of microstructural evolution in the membranes. Furthermore, increasing the stretching ratio significantly enhances membrane porosity and hydrophobicity.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/69f2a4f18c0f03fd67764241https://doi.org/10.1002/app.70821
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