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    Technical Bulletin — Cure Kinetics & Jacobs Working Curve (405 nm)

    Technical Scope

    This technical bulletin provides the quantitative basis for the applied engineering interpretation of FT1 and LB1 Bio fine-tuning strategies.

    Applied Engineering Analysis – FT1 & LB1 Bio (405 nm)

    Material system: 3Dresyn PEEK-like with FT1 and LB1 Bio fine-tuning additives.
    Optical conditions: 405 nm; irradiance levels of 2.2, 4, 6, and 8 mW/cm².
    Methodology: Cure-depth mapping, dose-based normalization, and Jacobs working-curve modeling.

    How This Bulletin Fits Within the 3Dresyns Framework

    Engineering Interpretation

    • FT1 (photo-accelerant): shifts cure onset toward lower dose by reducing the apparent critical exposure (Ec). It is used primarily to increase printing speed.
    • LB1 Bio (resolution modifier): improves optical confinement, reducing light bleeding and overcure. It supports higher XY detail and improved dimensional stability.
    • Dose control is critical: Dose (mJ/cm²) = irradiance (mW/cm²) × exposure time (s). Real irradiance at 405 nm should be verified for reproducible results.

    Cure Depth vs. Time (405 nm)

    Cure Depth vs. Time at 2.2 mW/cm² (405 nm)

    Cure depth vs time at 2.2 mW/cm², 405 nm

    Cure Depth vs. Time at 4 mW/cm² (405 nm)

    Cure depth vs time at 4 mW/cm², 405 nm

    Cure Depth vs. Time at 6 mW/cm² (405 nm)

    Cure depth vs time at 6 mW/cm², 405 nm

    Cure Depth vs. Time at 8 mW/cm² (405 nm)

    Cure depth vs time at 8 mW/cm², 405 nm

    Cure Depth vs. Time for Different FT1 and LB1 Bio Concentrations

    Cure depth vs time for 2% FT1 and 5% LB1 Bio

    Cure depth vs time for 2% FT1 and 10% LB1 Bio

    Cure depth vs time for 4% FT1 and 5% LB1 Bio

    Dose-Based Analysis (Power–Time Reciprocity)

    Dose-based normalization can support first-order cross-printer comparison under matched optical and kinetic conditions.

    Dose (mJ/cm²) = irradiance (mW/cm²) × exposure time (s)

    Cure depth vs dose at 405 nm

    Jacobs Working Curve (Ec and Dp Extraction)

    Model: Cd = Dp · ln(E / Ec)

    Jacobs working curve at 405 nm

    Extracted Parameters (Updated Dataset)

    Formulation Ec (mJ/cm²) Dp (µm)
    2% FT1 + 10% LB1 Bio 19.09 148.25 0.669
    4% FT1 + 5% LB1 Bio 19.96 190.21 0.813
    2% FT1 + 5% LB1 Bio 23.23 184.20 0.803

    Note: These working-curve fits are intended for engineering comparison. Fit quality depends on formulation behavior and the tested dose window.

    Validation and Calibration

    To translate cure kinetics into real-world dimensional performance, validate the material using calibration geometry and consistent post-processing conditions.

    Technical support: info@3dresyns.com