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Seminar: Numerical Modeling for the Design of UHPFRC Structures Full Recording
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This is the full recording of the interactive seminar from June 23, 2021.
DIANA and the Institute of Concrete and Science Technology (ICITECH) at Universitat Politècnica de València (UPV) came together to discuss all the latest innovations in this cutting edge concrete product.
Ultra-High Performance Fiber Reinforced Concrete ("UHPFRC") is very quickly proving itself to be the building material of the future.
Not to be confused with Ultra-High-Performance Concrete (UHPC) or Fiber-Reinforced Concrete (FRC), the combination of UHPC and fiber reinforcements creates a material with high tensile strength and ductile behavior. This combination has been proven to exhibit superior mechanical properties and energy absorption capacity.
Initially, the high material cost, energy consumption during creation, and embedded CO2 emissions of UHPFRC were not aligned with global efforts to conserve energy and reduce environmental impact. However, a decade of research has led to optimized binder and fiber applications, along with efficient packing models, making the product more sustainable and cost-effective.
DIANA and the Institute of Concrete and Science Technology (ICITECH) at Universitat Politècnica de València (UPV) came together to discuss all the latest innovations in this cutting edge concrete product.
Ultra-High Performance Fiber Reinforced Concrete ("UHPFRC") is very quickly proving itself to be the building material of the future.
Not to be confused with Ultra-High-Performance Concrete (UHPC) or Fiber-Reinforced Concrete (FRC), the combination of UHPC and fiber reinforcements creates a material with high tensile strength and ductile behavior. This combination has been proven to exhibit superior mechanical properties and energy absorption capacity.
Initially, the high material cost, energy consumption during creation, and embedded CO2 emissions of UHPFRC were not aligned with global efforts to conserve energy and reduce environmental impact. However, a decade of research has led to optimized binder and fiber applications, along with efficient packing models, making the product more sustainable and cost-effective.
Seminar: Numerical Modeling for the Design of UHPFRC Structures Teaser
Seminar: Numerical Modeling for the Design of UHPFRC Structures Full Recording
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