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February 14, 2026Russian Journal of Building Construction and Architecture0 citationsOpen Access

Experimental Study on Sound Absorption and Insulation Characteristics of Hemp-Perlite Fibre-Reinforced Concrete

SNS. NandhiniKEK.S. ElangoASA. Shalini

Key Points

  • The work aims to evaluate the mechanical and acoustic properties of hemp fibre and perlite in lightweight concrete.
  • Developed five mixed proportions with varying amounts of perlite and hemp fibre.
  • Conducted impedance tests to measure sound absorption coefficients at specific frequencies.
  • Evaluated compressive strength, density, and water absorption for mechanical properties.
  • Compressive strength decreased with higher fibre and perlite content due to increased porosity.
  • Density gradually reduced with the modified mixture proportions for lightweight concrete.
  • Sound absorption coefficient peaked at 0.35 at 1000Hz with 1.5% hemp fibre addition.

Abstract

Statement of Problem. The increasing demand for sustainable and energy-efficient materials has prompted the evaluation of lightweight fibre-reinforced concrete, which exhibits notable acoustic and mechanical performance. The work aims to study the mechanical and acoustic properties of hemp fibre integrated as a natural reinforcement and perlite granules as a lightweight aggregate. Five mixed proportions are developed with a conventional mix and others with 7 % perlite replacement and hemp fibre addition of (0.5, 1.0, and 1.5 % by volume). Mechanical behaviour, density and water absorption are evaluated to evaluate the effect of material modification. An impedance test is conducted to determine the sound absorption coefficient at frequencies of 250, 500, 1000, and 2000 Hz. Result. Results showed that compressive strength decreased with increasing fibre and perlite content, attributed to increased porosity and disrupted matrix compaction. The density decreased gradually with the material of altered proportions, and the reason was to use lightweight concrete. Sound absorption was increased reaching a peak of 0.35 at 1000Hz with a 1.5 % addition of hemp. Conclusion. The study introduces the efficacy of the mixture of hemp fibres and perlite granules and powder together to improve the acoustic performance and strength to be applicable in non-structural sound-sensitive conditions. The results are used in the creation of environmentally-friendly, acoustic materials that are lightweight and designed to meet the contemporary construction demands.

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Cite This Study

Nandhini et al. (2026) studied this question.

synapsesocial.com/papers/699011712ccff479cfe5816bhttps://doi.org/10.36622/2542-0526.2026.69.1.008
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