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December 8, 2025Materials3 citationsOpen Access

Comprehensive Review on Mechanical Performance of Concrete Reinforced with Fibers and Waste Materials

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JUJiří Urban

Key Points

  • To assess the mechanical performance of concrete reinforced with various fibers and waste materials.
  • Conducted a comprehensive literature review on fiber-reinforced concrete
  • Evaluated the impact of fibers on concrete's mechanical properties
  • Applied SWOT analysis for fiber-reinforced concrete
  • Discussed biodegradable and non-biodegradable waste material usage in concrete
  • Identified improvements in durability and tensile strength with fiber reinforcement
  • Noted carbon fiber-reinforced concrete as stronger but costlier than alternatives
  • Found optimal fiber content for performance is about 1%
  • Confirmed waste materials can effectively replace fine aggregates while enhancing properties

Abstract

Concrete is one of the most important and most widely used materials for construction activities around the world. However, it has inherent deficiencies, e.g., brittleness, low impact resistance, low tensile strength, low fire resistance, low durability, and lower resistance to crack formation. Fibers and waste materials of different types are added as partial replacement of cement and aggregates in concrete to improve performance properties and reduce environmental pollution. In the present study, a thorough review of the use of various types of fibers with high and low elastic moduli in concrete to improve mechanical performance and reduce environmental pollution issues has been conducted. This review paper also provides comprehensive information on the different types of waste materials, e.g., biodegradable and non-biodegradable, which are used in concrete. The use of waste materials in concrete reduces the amount of waste sent to landfill and, in addition, improves some mechanical properties of concrete. This review is aimed at evaluating and understanding the strengths and weaknesses of fiber-reinforced concrete by using SWOT (Strengths, Weaknesses, Opportunities, Threats) analysis. Moreover, this study also concluded that carbon fiber-reinforced concrete proves to be stronger and more durable but more expensive than other fibers. An ideal percentage of natural origin fibers used in concrete can greatly improve the mechanical performance. This study also discussed that waste from polymeric materials can be used in concrete as a partial replacement of cement and other components, e.g., coarse aggregates. It can be inferred that the optimum content of fibers that gives effective results is about 1%, and the reinforcement of concrete with different varieties of wastes as a replacement for fine aggregates should not be more than 2%. Parametric optimization of fiber content will be necessary for the best possible combination of performance properties.

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Cite This Study

Jiří Urban (2025) studied this question.

synapsesocial.com/papers/693624c34fa91c937236cce7https://doi.org/10.3390/ma18235419
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