The proposed project focuses on developing a reproducible TFP manufacturing process for CFRP bow risers targeting premium/elite archery bows, overcoming the limitations of hand-laid carbon fiber risers and enabling competitive pricing and reliability. Current methods suffer from manual layup variability, inconsistent resin flow, high costs, and surface defects requiring extensive post-processing, limiting quality and scalability. The project unites complementary expertise: KCARBON provides structural analysis and process validation, IPF contributes advanced TFP pattern design and simulation, GKE supports manufacturing scalability and market knowledge, Me-go evaluates quality, and nr21 focuses on aesthetics, ergonomics, and sustainability. This synergy enables variable-axial fiber alignment for stiffness optimization, mass reduction, and matrix zoning for vibration damping, ensuring superior performance compared to hand-layup composites and aluminum risers. TFP addresses current limitations by simplifying workflows, enabling uniform mechanical properties, pre-simulation to minimize trials, and continuous fiber reinforcement for design flexibility. Validated TFP patterns, optimized forming (press/RTM), and demonstrated mass-production feasibility for premium/elite bows will drive IP creation and export growth in TFP sports equipment.