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November 14, 2025Journal of Composites Science0 citationsOpen Access

Comparative Analysis of Wood Waste Species on the Mechanical Performance of Sustainable Cement-Based Mortars

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DMDorin MaierDMDaniela Lucia ManeaDTDaniela Roxana Tămaș-Gavrea

Key Points

  • Wood addition considerably reduces compressive strength by up to 85%, while density decreases by 20-36%.
  • Oriented strand board exhibited better mechanical performance than porous wood particles, affecting flowability and density.
  • Evaluation involved testing mortars with various wood waste species at multiple ages, highlighting their applications.
  • The findings suggest wood residues can be effective in lightweight, non-structural cement composites, prompting further analysis.

Abstract

The use of wood waste as a component in cementitious composites represents a promising strategy for reducing environmental impact and promoting circular economy principles in the construction sector. This study examines the influence of five types of wood waste, spruce sawdust, spruce shavings, oak, beech, and oriented strand board (OSB), on the properties of Portland cement mortars. A constant 5% by mass of sand was replaced with each wood residue, and mixtures were tested for flowability, density, flexural, and compressive strength at 7, 14, and 28 days. Our results show that wood addition reduces density by 20–36% and compressive strength by 70–85%, depending on species and particle morphology. Denser materials (oak and OSB) resulted in composites with higher mechanical strength, suggesting a more effective particle packing and interfacial interaction compared to porous particles (spruce sawdust, shavings), which led to higher water demand and reduced strength. Beech showed the highest flexural strength, indicating potential for bending-dominated applications. The study demonstrates the feasibility of using selected wood residues for lightweight, non-structural cement composites and outlines the need for future microstructural validation through SEM and porosity analyses.

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Cite This Study

Maier et al. (2025) studied this question.

synapsesocial.com/papers/692519a2c0ce034ddc353e7chttps://doi.org/10.3390/jcs9110634
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Long-Term Performance of Wood–Cement Composites: Stabilization Versus Degradation Driven by Waste Type2025
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  3. 3Wood-Cement Composites: A Sustainable Approach for Mitigating Environmental Impact in Construction2024 · 6 citations
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  5. 5Study of the Effect of Cedar Sawdust Content on Physical and Mechanical Properties of Cement Boards2024 · 5 citations