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April 12, 2026Buildings1 citationsOpen Access

Effect of Paraffin and Vinyl Acetate Ethylene (VAE) Emulsions on the Waterproofing and Mechanical Properties of Fiber-Reinforced Modified Gypsum (FRMG) Matrix

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ZLZ. Merrick LiZLZ. Merrick LiSRShaohua Rao

Key Points

  • The central aim is to assess the impact of various waterproofing emulsions on the performance of fiber-reinforced modified gypsum (FRMG).
  • Analyzed three waterproofing methods: surface coating with paraffin emulsion, internal incorporation of paraffin and VAE emulsions.
  • Assessed workability, water absorption, mechanical properties, contact angle, and microstructure of FRMG.
  • Evaluated the effects of different dosages of emulsions on performance.
  • Surface coating had limited, short-term waterproofing effects.
  • Internal incorporation of paraffin emulsion reduced water absorption but decreased mechanical strength.
  • VAE emulsion significantly lowered water absorption while enhancing both flexural and compressive strength, with optimal results at 6% dosage.

Abstract

Gypsum-based materials are widely used in construction but suffer from poor water resistance and durability, limiting their application in moisture-prone environments. While fiber-reinforced modified gypsum (FRMG) improves mechanical performance, the lack of systematic research on waterproofing strategies and their influence on both durability and strength remains a key challenge. This study investigated three waterproofing methods: surface coating with paraffin emulsion, internal incorporation of paraffin emulsion, and internal incorporation of vinyl acetate ethylene (VAE) emulsion. The workability, water absorption, mechanical properties, contact angle, and microstructure of the FRMG matrix were analyzed. The results showed that surface coating provided only short-term waterproofing. Internal incorporation of paraffin emulsion reduced water absorption but weakened mechanical performance. In contrast, VAE emulsion formed continuous polymer films that filled pores, significantly reducing water absorption while improving flexural and compressive strength, with optimal performance observed at a 6% dosage. In addition, increasing emulsion content enhanced hydrophobicity. These results indicate that VAE-based internal modification is an effective approach to improving the durability and performance of gypsum-based materials, providing guidance for their application in interior wall systems and prefabricated building components.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69db380f4fe01fead37c62bfhttps://doi.org/10.3390/buildings16081491
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