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August 22, 2025International Journal of Research and Review0 citationsOpen Access

Comparative Evaluation of Surface Roughness and Wear Resistance of Heat Cured Acrylic Denture Base Resin Subjected to Long Term Immersion in Different TDS Levels of Water - An in-vitro Study

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MMM ManasaPKPawan KumarSNSwathi Nallabapani

Key Points

  • High-impact resin showed lower surface roughness and better wear resistance compared to conventional resin.
  • Significant deterioration occurred in both resin types immersed in hard water, affecting their longevity.
  • Samples were tested post three months of immersion in control, hard, soft, and distilled water types.
  • Water quality, particularly TDS levels, has a crucial impact on the clinical performance of denture resins.

Abstract

Objective: This in-vitro study aimed to compare the surface roughness and wear resistance of conventional and high-impact heat-cured acrylic denture base resins following long-term immersion in water with varying Total Dissolved Solids (TDS) levels. Materials and Methods: A total of 160 samples were divided into two groups: Group A (conventional acrylic resin) and Group B (high-impact acrylic resin). Each group was subdivided based on water type: control, hard, soft, and distilled. Surface roughness was measured using a profilometer, and wear resistance was tested with a pin-on-disc apparatus after three months of immersion. Results: Statistically significant differences were observed between groups and across time points. High-impact resin exhibited lower surface roughness and higher wear resistance than conventional resin across all water types. Hard water resulted in the most significant deterioration in both materials. Conclusion: Water quality, especially TDS level, affects the longevity and clinical performance of denture base resins. High-impact acrylic resin demonstrated superior properties, suggesting its preferable use in varied water environments. Keywords: Surface roughness, Wear resistance, acrylic resin, Denture base, Total Dissolved Solids (TDS), Water immersion, High-impact resin.

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Cite This Study

Manasa et al. (2025) studied this question.

synapsesocial.com/papers/68af59d7ad7bf08b1eade650https://doi.org/10.52403/ijrr.20250836
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