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    Degradation additives

    3Dresyns Degradation Additives — choose your degradation route by mechanism 3DRESYNS · DEGRADATION ADDITIVES ADDITIVES FOR CONTROLLED BIODEGRADATION Choose by degradation mechanism — enzymatic or oxo-degradable WHICH DEGRADATION ROUTE DO YOU NEED? ENZYMATIC EBC1 Enzymatic catalyst for biodegradation of 3D prints. OXO-DEGRADABLE ODC1 Prodegradant for faster biodegradation of prints. ⚠ Remember: formulation additives — not ready-to-print resins. Validate under your resin chemistry, additive loading & exposure conditions. At-a-glance summary · full comparison table & product details on the page.

    Degradation additives for tuning long-term stability, aging response and controlled biodegradation behaviour in advanced 3D-printing resin systems.

    3Dresyns® degradation additives in this collection are positioned for formulation projects where durability, aging control or accelerated biodegradation response must be engineered into the final material system.

    Navigate by: biodegradation catalyst route, oxo-degradable route and long-term stability objective.

    Degradation-control platform

    This collection groups 3Dresyns® degradation additives developed for long-term stability tuning, aging-resistance strategies and controlled degradation concepts in photopolymer workflows.

    These materials are intended for formulation protection, stability upgrades and degradation-oriented design depending on the targeted use case and environmental exposure profile.

    Key features & benefits

    Material navigation

    Choose your degradation-additive route

    Use the routes below to navigate the collection by stability logic and degradation mechanism.

    Material routes
    Collection strengths
    • Anti-degradation additive toolbox for formulation tuning and protection.
    • Improved long-term stability and aging resistance depending on the selected route.
    • Reduced property drift over time and enhanced durability under environmental exposure.
    • Supports both stability-focused workflows and fast-biodegradation design concepts.

    Typical applications

    Application logic

    Typical use scenarios across the collection

    This collection is relevant for projects where long-term behaviour, aging profile or degradation response are critical design parameters.

    • Long-term functional prototypes: parts requiring improved stability over time.
    • Stability upgrades for production workflows: formulation support for more durable use conditions.
    • Aging and durability studies: evaluation projects involving long-term exposure and performance retention.
    • Outdoor or light-exposed components: workflows where environmental exposure matters.
    • Formulation stabilization or degradation-design projects: depending on whether the target is protection or faster end-of-life breakdown.

    Why choose this collection

    Selection logic

    How to choose the right degradation additive

    Select the most suitable route according to whether the project is focused on long-term formulation protection or accelerated biodegradation behaviour.

    Decision guide
    • Need an enzymatic biodegradation route → choose 3Dresyn-ase EBC1
    • Need an oxo-degradable prodegradant route for faster biodegradation → choose ODC1
    Workflow preference
    • Prioritise biodegradation through enzymatic catalyst logic → start with EBC1
    • Prioritise oxo-degradable prodegradant behaviour → start with ODC1
    • Prioritise stability studies and controlled aging design → compare both routes against the intended end-of-life objective
    Engineering rule

    Decision tree summary

    Use this simplified engineering logic before detailed formulation validation.

    Decision steps
    • Need enzymatic biodegradation catalyst logic → EBC1
    • Need oxo-degradable prodegradant logic → ODC1

    Then validate the final route under the intended resin chemistry, additive loading, exposure conditions and long-term durability or degradation target.

    Products in this collection

    Enzymatic route

    Enzymatic bio catalyst for biodegradation

    For workflows that require an enzymatic catalyst route to support biodegradation-oriented design concepts in printed parts.

    Product
    Oxo-degradable route

    Prodegradant additive for fast biodegradation

    For workflows that require an oxo-degradable catalyst route to support faster biodegradation behaviour in printed parts.

    Product

    Technical overview table

    Workflow-dependent performance

    Long-term stability, durability retention, degradation response and end-of-life behaviour depend on the interaction between the selected additive, the base resin, additive concentration and the environmental exposure conditions. :contentReference[oaicite:1]{index=1}

    Successful implementation therefore requires alignment between additive selection, degradation objective, formulation strategy and qualified exposure workflow.

    Material Primary role Core concept Main behavior Typical positioning Target workflow
    3Dresyn-ase EBC1 Enzymatic bio catalyst Biodegradation catalyst route Supports biodegradation-oriented design logic in printed parts Aging studies, biodegradation-focused projects and long-term material-behaviour design Engineering & prototyping workflows with degradation-control targets
    Oxo-Degradable Catalyst ODC1 Prodegradant additive Fast biodegradation route Supports oxo-degradable and faster biodegradation concepts Outdoor or exposure-related workflows and degradation-design projects Engineering & prototyping workflows with prodegradant targets

    Mobile: scroll horizontally to view all columns. The first column remains visible while scrolling.

    Portfolio overview

    Portfolio structure

    A focused degradation-control platform rather than a broad additives page

    This collection is compact and clearly structured around two degradation-design routes: one enzymatic and one oxo-degradable. :contentReference[oaicite:2]{index=2}

    • 3Dresyn-ase EBC1 covers the enzymatic biodegradation catalyst route.
    • ODC1 covers the oxo-degradable prodegradant route.
    • Together, they support long-term aging design, biodegradation studies and degradation-oriented formulation projects.

    Workflow note

    System-based degradation principle

    The right degradation route depends on the end-of-life target, not only on the additive name

    These additives are most useful when the project objective is clearly defined first: whether the priority is improved long-term stability, controlled aging behaviour or faster biodegradation at end of life.

    In practice, the correct path is to define the degradation objective first, then validate the additive under the intended resin chemistry, exposure conditions and durability target.

    Technical and commercial support

    Support framework

    Documentation, technical selection help and workflow support

    Use the resources below to move from degradation-additive preselection to formulation planning, exposure validation or broader technical support.

    Support resources
    Next step

    Select the right degradation additive and validate the final long-term behaviour workflow

    Use the route-based navigation above to identify the most relevant degradation additive, compare candidates in the technical overview table, and move forward with formulation-specific validation for durability, aging resistance or biodegradation design.

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