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Recent advances in materials and technologies have significantly enhanced the performance of reinforced concrete structures. The integration of fiber-reinforced concrete improves tensile strength and crack resistance, while self-healing concrete extends service life by autonomously repairing microcracks. Ultra-high performance concrete (UHPC) offers superior durability and strength, allowing for slimmer, more efficient structural elements. The use of fiber-reinforced polymers (FRP) as a replacement for traditional steel reinforcement reduces corrosion risks, especially in aggressive…mehr

Produktbeschreibung
Recent advances in materials and technologies have significantly enhanced the performance of reinforced concrete structures. The integration of fiber-reinforced concrete improves tensile strength and crack resistance, while self-healing concrete extends service life by autonomously repairing microcracks. Ultra-high performance concrete (UHPC) offers superior durability and strength, allowing for slimmer, more efficient structural elements. The use of fiber-reinforced polymers (FRP) as a replacement for traditional steel reinforcement reduces corrosion risks, especially in aggressive environments. Additionally, 3D concrete printing enables precise and rapid construction of complex shapes with reduced material waste. Combined with smart technologies such as embedded sensors, these innovations contribute to the creation of intelligent, sustainable, and long-lasting concrete infrastructure.
Autorenporträt
Dr. Ali Shahriar Manteghi Fassaie was born in 1965 in Tehran. He studied medicine in India, then civil engineering and architecture in Iran, and earned a Ph.D. in Sociology. He is the CEO of his engineering firm and lectures in civil engineering and sociology at Azad University in Tehran and Shahriar.