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◆ Theoretical and Applied Fracture Mechanics2025-12-15· Materials science

Dynamic fracture behavior of 3D-printed composites reinforced with continuous fibers

Mohammad Reza Khosravani, Sankalp Patil, Payam Soltani, Georg Ganzenmüller, Stefan Hiermaier, Tamara Reinicke

原始摘要(英文原文)· Original abstract
This study aims to analyze the influence of continuous fiber reinforcement on the dynamic behavior of 3D-printed composites. To this end, semicircular bending (SCB) test coupons were designed and printed using the fused filament fabrication (FFF) technique. Particularly, nylon material was used as a matrix in all specimens, while fiberglass was utilized as the reinforced material. Since printing orientation has a significant influence on the mechanical behavior of 3D-printed components, the samples were printed in different directions. In a series of tests, the SCB specimens were impacted using a split Hopkinson pressure bar (SHPB) with a strain rate of 100 s −1 . In this research, a high-speed photograph system was used with a focus on the SCB specimens to capture their deformation behaviors. The results of dynamic three-point bending tests indicate that the maximum force increased by 190.2% and 238.1% in the specimens printed in ZY and YZ orientations, respectively, as a result of fiber reinforcing. The documented outcomes can be used for the design and production of 3D-printed composites with enhanced structural performance and customized mechanical strength.
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Dynamic fracture behavior of 3D-printed composites reinforced with continuous fibers — 科研速览 Science Skim