TY - JOUR AB - Although geopolymers can significantly reduce carbon dioxide emissions, their widespread application is limited due to the requirement for alkaline activation solutions. The recently developed ?one-part geopolymer? overcomes this limitation by using a solid alkaline activator, thereby enhancing construction convenience while maintaining performance comparable to conventional alkaline solution activated geopolymers or cement-based materials. In this study, a split Hopkinson pressure bar (SHPB) was employed to investigate the dynamic properties of one-part fiber-reinforced geopolymer concrete (OP-FRGC), focusing on different types of fibers. The compressive dynamic increase factor (CDIF), energy absorption capacity, and failure modes of OP-FRGC under dynamic loading were analyzed. The results indicate that the incorporation of fibers changes the failure mode of OP-FRGC from brittle to ductile, significantly enhancing its toughness. OP-FRGC exhibited strain rate sensitivity, with the CDIF showing an approximate logarithmic increase with the strain rate. In addition, a comprehensive evaluation of OP-FRGC incorporating different fiber types was conducted, considering mechanical properties, sustainability, and cost. This study offers a useful reference for understanding the dynamic behavior of OP-FRGC, thereby promoting its potential in practical engineering applications. AU - Shi, H AU - Zang, Q AU - Wang, Y AU - Qian, H AU - Zong, Z AU - Cai, J AU - Li, M AU - Lin, Y DA - 2025/07/01 DO - 10.1016/j.cscm.2025.e04503 JO - Case Studies in Construction Materials PB - Elsevier PY - 2025/07/01 SP - e04503 TI - Comparative study on dynamic compressive properties and sustainability assessment of one-part fiber-reinforced geopolymer composites VL - 22 Y1 - 2025/07/01 Y2 - 2026/08/14 ER -