Stereolithography prototyping (SLA)3D printing technology is a photosensitive resin material, usually ABS-like white (Accura Xtreme White 200), ABS-like gray (Accura Xtreme gray), ABS-like black (Accura 7820) ABS-like translucent/transparent (WaterShed XC 11122), MicroFine™ (gray and green), PP-like translucent white (Somos9120)
Stereolithography prototyping (SLA)3D printing technology is a photosensitive resin material, usually ABS-like white (Accura Xtreme White 200), ABS-like gray (Accura Xtreme gray), ABS-like black (Accura 7820) ABS-like translucent/transparent (WaterShed XC 11122), MicroFine™ (gray and green), PP-like translucent white (Somos9120)

Stereolithography prototyping (SLA)3D printing technology is a photosensitive resin material, usually ABS-like white (Accura Xtreme White 200), ABS-like gray (Accura Xtreme gray), ABS-like black (Accura 7820)
ABS-like translucent/transparent (WaterShed XC 11122), MicroFine™ (gray and green), PP-like translucent white (Somos9120)


PC-like advanced high temperature (Accura 5530), PC-like translucent/transparent (Accura 60), Ceramic Advanced High Temperature (PerFORM), True Silicone:

The following is a classification of resin materials:
Standard resin: Suitable for most applications, providing good mechanical properties and detail resolution.
Engineering resin: Simulates the mechanical properties of engineering plastics such as ABS, PC, etc., suitable for functional testing and durable parts.

Flexible resin: Flexible, suitable for applications that require bending or impact.
High temperature resistant resin: Able to withstand higher temperatures, suitable for parts in high temperature environments.

Transparent resin: Provides high transparency, suitable for parts that require optical clarity.
Silicone resin: Simulates the softness and touch of silicone, suitable for making flexible parts and seals.
Anti-static resin Grease: used in the electronics industry to reduce static electricity accumulation.
Biocompatible resin: suitable for medical and dental applications, meeting biocompatibility requirements.
Polyurethane resin: has excellent durability and stability, suitable for high-performance parts.
Ceramic resin: used to make parts with ceramic properties, such as high hardness and high temperature resistance.

Choosing the right material depends on the application needs of the final part, the mechanical performance requirements, and the convenience of post-processing. For example, if you need to make durable mechanical parts, you can choose engineering resins; if you need a transparent display model, you can choose clear resins. In addition, some materials may require specific post-processing steps, such as curing, cleaning, or polishing, to achieve optimal performance and appearance

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