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March 1, 2026Open Access

Durability Performance of Self-Sensible Ultra-High Performance Concrete (S2UHPC) for Civil Infrastructure Rehabilitation

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Authors

MPMasoud PasbaniXWXueying WangJAJihad Awad

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Overview

This research evaluates durability and sensing capabilities in self-sensible ultra-high-performance concrete, suggesting advancements for infrastructural rehabilitation.

Key Points

  • The research aims to evaluate the durability and self-sensing capabilities of self-sensible ultra-high-performance concrete (S2UHPC) for civil infrastructure.
  • Analyzed mechanical performance and microstructure of S2UHPC with hybrid steel and carbon fibers.
  • Conducted durability testing for chloride penetrability on OPC and PLC formulations.
  • Assessed self-sensing response under cyclic loading conditions.
  • High carbon fiber content resulted in stable electrical conductivity under stress.
  • Steel-fiber UHPC showed insufficient electrical responses.
  • Chloride penetrability was very low for both OPC and PLC-based S2UHPC formulations.

Cite This Study

Pasbani et al. (2026) studied this question.

synapsesocial.com/papers/69a3d8caec16d51705d2fe4fhttps://doi.org/10.5281/zenodo.18795589
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Also Consider

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  1. 1Optimization of Self-Sensible Louisiana-Sourced Ultra-High Performance Concrete: Balancing Mechanical Strength, Piezoresistivity, and Cost with Hybrid Fiber Reinforcement2025
  2. 2Ultra-High-Performance Concrete (Uhpc): Seismic Behavior, Ductility, and The Design of Slender Structural Elements2026
  3. 3Piezoresistive fiber contributions to the mechanical performance and self sensing functionality of ultra high performance concrete2026
  4. 4Capacitance-based self-sensing response of smart ultra-high-performance concrete under cyclic and monotonic compressive loading2026
  5. 5Compressive self-sensing characteristics and mechanism of UHPC with hybrid steel fiber subjected to combined curing2026