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    Bio based 3D resins

    Bio-based 3D resins organized for renewable-content prototyping, functional development and reduced fossil-based workflows in SLA, DLP and LCD/MSLA printing.

    This collection supports comparison of bio-based resin grades for environmentally conscious prototyping, engineering development and industrial applications where renewable feedstock positioning matters.

    Navigate by: renewable feedstock content, mechanical profile, functional testing, professional application or workflow priority.

    Bio-based material platform for prototyping and functional development

    This collection is structured for users prioritizing renewable feedstock content, reduced fossil-based content and reliable printing performance across a range of rigid, tough and flexible resin grades.

    It includes bio-based materials for functional testing, industrial components, engineering prototypes and application development where process repeatability and sustainability positioning are both relevant.

    Quick selection by workflow priority

    Material navigation

    Choose your bio-based resin route

    Use the routes below to access the most relevant resin family in this collection.

    Typical routes

    Key features & benefits

    Material profile

    Bio-based resins for prototyping and functional components

    These materials are designed for renewable-content workflows where reliable printing performance, stable post-cured properties and consistent handling are required across different mechanical profiles.

    Main advantages
    • Renewable feedstock content and reduced fossil-based content
    • Reliable printing performance and consistent printability
    • Stable post-cured properties and high bio-content components derived from renewable sources
    • Rigid, tough and flexible mechanical profiles depending on grade
    • Low shrinkage options, high resolution and reliable surface quality
    • Dimensional accuracy, process repeatability and SLA, DLP and LCD/MSLA compatibility
    Typical uses

    Typical applications

    These resins are relevant for development workflows where renewable-content positioning, engineering performance and reduced fossil-based content are more important than conventional petrochemical-only material routes.

    Application examples
    • Environmentally conscious prototyping
    • Functional testing and engineering prototypes
    • Industrial components and consumer products
    • Research projects and application development
    • Indirect manufacturing tools and functional components where reduced fossil-based content is a priority
    Collection overview

    Products in this collection

    Products in this collection are shown below.

    This collection currently includes bio-based resin grades positioned for prototyping, engineering development, industrial applications and functional component workflows depending on the selected mechanical profile and application need.

    Selection logic

    Decision guide

    How to choose the right bio-based resin

    Select the most suitable grade according to whether your priority is renewable-content prototyping, functional performance, industrial application fit or reduced fossil-based material positioning.

    Decision guide
    • Need a renewable-content route for prototypes and concept validation → choose the prototyping-oriented bio-based grade
    • Need functional testing and engineering development performance → choose the grade aligned with the required mechanical profile
    • Need industrial or consumer product application suitability → choose the grade positioned for component use
    • Need reduced fossil-based content as a key selection factor → choose the most appropriate bio-based route for the target workflow
    Workflow principle

    Final performance depends on process control and grade selection

    Even with bio-based material platforms, final results depend on printer calibration, layer settings, exposure strategy, washing conditions and post-curing control.

    These materials are best interpreted as application-specific tools where renewable-content positioning, mechanical profile and process repeatability must all be aligned with the intended end use.

    Bio-based resin comparison table

    Use the table below to compare the currently visible products in this collection by positioning, safety profile and typical use.

    Product Positioning Regulatory & safety profile Optical profile Typical priority Typical use
    Bio-based resin grade Renewable-content prototyping Bio-based / reduced fossil-based content Depends on grade Environmentally conscious development Prototyping, concept validation and application development where renewable feedstock content is relevant
    Bio-based engineering grade Functional testing Bio-based engineering profile Depends on grade Mechanical performance alignment Engineering prototypes, functional testing and development parts requiring controlled repeatability
    Bio-based industrial grade Industrial and consumer product use Bio-based functional positioning Depends on grade Industrial application fit Industrial components, consumer products and indirect manufacturing tools depending on resin grade
    Bio-based reduced fossil-content route Reduced fossil-based priority Renewable-source oriented Depends on grade Material sustainability positioning Functional components and development workflows where reduced fossil-based content is a primary selection factor

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

    These materials are intended for prototyping, functional testing, industrial development and application-oriented workflows. Final part quality still depends on calibration, washing and post-curing conditions, regardless of renewable-content positioning.

    These products should be understood as bio-based resin platforms for reduced fossil-based workflows. Final suitability depends on the printer, exposure strategy, mechanical requirements, sustainability preference and intended application function.

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