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    Castable 3D Printing Resins

    3Dresyns · Castable resins — investment casting patterns at a glance 3DRESYNS · CASTABLE RESINS CASTABLE PATTERNS FOR INVESTMENT CASTING Choose by casting workflow & pattern priority WHICH CASTING WORKFLOW DO YOU NEED? JEWELRY CASTING Fine-detail patterns for jewelry investment casting. PRECISION INDUSTRIAL Dimensional stability & process repeatability. SACRIFICIAL / INDIRECT Sacrificial patterns for indirect manufacturing. FINE-DETAIL GEOMETRIES Complex fine detail with controlled burnout. Remember: castable patterns are process-linked tools. Final results depend on print, investment, burnout & casting workflow. At-a-glance summary · full selection logic & products on the page.

    Castable 3D printing resins organized for investment casting patterns, precision sacrificial workflows and indirect manufacturing in SLA, DLP and LCD/MSLA printing.

    This collection supports comparison of castable pattern materials for jewelry casting, precision industrial casting and complex sacrificial geometries where surface quality, dimensional stability and repeatable burnout positioning are important.

    Navigate by: casting workflow, pattern precision, burnout positioning, indirect manufacturing use or fine-detail priority.

    Investment casting pattern material platform

    This collection is structured for users requiring castable resins for indirect manufacturing workflows based on sacrificial printed patterns with high precision and controlled geometry reproduction.

    It includes materials positioned for jewelry investment casting, precision industrial cast parts and complex detail-rich geometries where repeatable pattern behavior is critical to the downstream process.

    Quick selection by workflow priority

    Material navigation

    Choose your castable resin route

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

    Typical routes

    Key features & benefits

    Material profile

    Castable pattern materials for precision investment casting

    These materials are designed for indirect manufacturing workflows where printed sacrificial patterns must support dimensional control, fine detail reproduction and reliable process repeatability.

    Main advantages
    • Investment casting pattern materials for SLA, DLP and LCD workflows
    • High precision and smooth surface quality
    • Dimensional stability during pattern preparation
    • Controlled burnout positioning depending on grade
    • Repeatable casting workflow support
    • Suitable for fine-detail sacrificial pattern fabrication
    Typical uses

    Typical applications

    These resins are relevant for indirect manufacturing routes where precision sacrificial patterns are required for accurate mold generation and downstream casting reliability.

    Application examples
    • Jewelry investment casting patterns
    • Precision industrial cast parts
    • Sacrificial patterns for indirect manufacturing
    • Complex geometries requiring fine detail
    • Precision pattern production for repeatable casting workflows
    Collection overview

    Products in this collection

    Products in this collection are shown below.

    This collection currently includes castable material routes positioned for investment casting, sacrificial precision pattern production and indirect manufacturing workflows where dimensional fidelity and burnout behavior matter.

    Direct burnout patterns
    Water-soluble pattern route
    Heat-soluble wax routes

    Technical overview table

    Pattern quality, burnout behavior and casting results depend on the interaction between the selected resin, printer type, exposure settings, investment protocol and the downstream burnout and casting procedure.

    Material Printer type Pattern removal Form Key data Typical applications
    Perfect Cast LPP Low power SLA / DLP / LCD Direct burnout Liquid Viscosity <30 cps, residual ash <0.0001%, no expansion during burnout Jewelry casting patterns, dental casting, high-detail micro-casting
    Perfect Cast HPP High power SLA / DLP / monochrome LCD Direct burnout Liquid Viscosity <30 cps, residual ash <0.0001%, ultra high resolution Jewelry casting patterns, dental casting, precision casting components
    Perfect Cast WS1 SLA / DLP / LCD Water or steam dissolution before burnout Liquid Viscosity <30 cps, Shore D80, HDT >100 C Complex hollow geometries, micro-casting with internal evacuation
    Perfect Cast HS1 Bio Top-down SLA / DLP with temperature control Gravity melt-out Bio-based solid wax Negligible ash, very low melt viscosity, full mold evacuation Wax-like casting patterns, relatively thick casting geometries
    Perfect Cast HS2 MF Bio Heated top-down and bottom-up SLA / DLP / LCD Melting or thermal degradation during burnout Bio-based monomer-free liquid Thermoplastic after curing, melting range >100-200 C (workflow dependent) Fine-detail and thick casting geometries, meltable patterns

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

    Selection logic

    Decision guide

    How to choose the right castable resin

    Select the most suitable grade according to whether your priority is jewelry casting detail, industrial precision, sacrificial pattern behavior or complex geometry reproduction.

    Decision guide
    • Need a resin for jewelry investment casting → choose the grade positioned for fine-detail casting patterns
    • Need precision sacrificial patterns for industrial casting → choose the grade aligned with dimensional stability and process repeatability requirements
    • Need support for indirect manufacturing workflows → select the grade optimized for sacrificial pattern use
    • Need complex fine-detail geometries with controlled burnout positioning → choose the most appropriate castable route for the downstream casting process
    Workflow principle

    Castable performance depends on the full pattern-to-casting workflow

    Even with castable pattern materials, final results depend on printer calibration, exposure strategy, washing conditions, post-curing control, investment protocol and the downstream burnout and casting procedure.

    These materials are best interpreted as process-linked tools for indirect manufacturing where printed part quality and casting workflow control must be aligned from the beginning.

    These materials are intended for sacrificial pattern production, investment casting and indirect manufacturing workflows. Final success depends not only on print quality but also on the investment, burnout and casting conditions used after printing.

    These products should be understood as castable photopolymer routes for precision sacrificial applications. Final suitability depends on the printer, exposure strategy, geometry complexity and the exact downstream casting workflow used by the customer.

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