AI-Powered SLA 3D Printing for Detailed Prototypes

Our AI manages every step of the SLA printing process, delivering high-quality photopolymer components faster and more efficiently than ever.

AI-Powered SLA 3D Printing for Ultra-Precise Parts & Detailed Prototypes

Our AI manages every step of the SLA printing process, delivering high-quality photopolymer components faster and more efficiently than ever.

“Our AI-powered platform takes full control of your Stereolithography projects, acting as your dedicated Single Point of Contact. From optimizing laser parameters to ensuring flawless surface finish, our AI works 24/7 to deliver precision resin components on time and within budget.”

End-to-End Production Management

Requirement Capturing

Our AI captures your project specifications through an intuitive interface, ensuring resin selection, resolution requirements, and optical properties are understood from the start.

Automatic part analysis and exposure parameter selection

Machine & Resin Selection

Our AI selects the optimal SLA equipment based on part geometry, detail requirements, and material performance needs.

Intelligent resin selection and laser curing parameter optimization

Design for Printability

The AI optimizes your design for SLA manufacturing, analyzing features for support structures, resin drainage, and potential curing distortions.

Real-time DFP with orientation analysis and support strategy planning

Project Monitoring

Track printing operations in real-time with AI-powered updates on laser curing quality, resin level, and dimensional accuracy

Live monitoring of vat conditions and laser scanning precision

Follow-ups & Reporting

Stay informed with automated follow-ups and detailed reports on material properties, dimensional verification, and optical testing.

Comprehensive build completion documentation

Quality Assurance

AI coordinates dimensional inspection and surface finish verification, ensuring parts meet specifications with minimal post-processing.

Automated optical clarity assessment and dimensional validation

Risk Analysis

The AI identifies printing risks like support failures, overcuring, or shrinkage issues and implements compensating strategies proactively.

Predictive exposure adjustments and support structure optimization

Logistics Coordination

From support removal and UV post-curing to surface finishing and delivery, the AI optimizes the post-printing workflow for speed and cost.

Seamless coordination of secondary operations

Why Choose Our
AI Platform

24/7 Production Capability

Our AI never sleeps, managing your SLA projects across multiple machines and materials.

Unmatched Detail

Optimized laser parameters and intelligent support structures mean finer details and smoother surfaces.

Exceptional Precision

AI compensates for resin behaviors and curing characteristics, delivering consistent dimensional accuracy.

Cost-Effective Manufacturing

Smart part orientation, optimized support design, and reduced post-processing offer competitive pricing.

Proactive Solutions

Material variations, curing anomalies, and support issues are detected and addressed before they affect part quality.

Human Expertise When You Need It

Our experts complement AI capabilities with specialized knowledge and hands-on experience

Meet Our SLA Specialists and Photopolymer Materials Engineers

20+ Years Combined Experience

Human Expertise When You Need It

Our experts complement AI capabilities with specialized knowledge and hands-on experience

Complex project consultation and custom solutions design

Technical support for specialized materials and finishing requirements

Quality assurance reviews for critical applications

On-demand engineering support and design optimization

Meet Our SLA Specialists and Photopolymer Materials Engineers

20+ Years Combined Experience

Proven Results

Selective Laser Sintering

Jennifer Reeves

Innovation Director, OptiTech Solutions

65% faster production on optical components

The AI-driven SLA process transformed our prototype production. The intelligent support optimization and adaptive laser parameters delivered incredibly detailed components with excellent optical clarity, accelerating our product development timeline.

polyjet 3d prining

Marcus Wong,

Product Development Manager, ConsumerDesign International

99.6% first-time-right rate on precision housings

The accuracy and surface quality we’ve achieved with Wefab.ai’s Stereolithography platform have been crucial for our consumer products. The AI’s ability to optimize curing depth while maintaining dimensional accuracy has dramatically improved our design validation process.

3d Printing Capabilities

Ready to experience the future of Stereolithography (SLA) 3D printing?

Let our AI work for you and transform your product development process with intelligent curing strategies and unmatched detail reproduction.

Frequently Asked Questions

Our AI optimizes part orientation, support structures, and laser parameters, reducing build time and enhancing surface quality. It continuously learns from past builds to minimize warping and predict optimal exposure settings for each resin type.

We process standard, clear, tough, flexible, castable, dental, and biocompatible resins. Our AI automatically adjusts laser power, scanning speed, and post-curing for each material’s unique photopolymerization properties.

Simple components can be completed in 1-3 days, while complex parts requiring specialized resins and extensive post-processing may take 3-6 business days. The AI optimizes build schedules to maintain quality while maximizing throughput.

Our AI employs laser calibration, resin aging compensation, and strategic part orientation. Each component undergoes dimensional inspection, with capability for holding tolerances to ±0.002″ on critical features, depending on geometry and resin type.

We accept STL, OBJ, STEP, and other standard 3D model formats. Our AI can also analyze designs for optimal SLA production and recommend modifications to improve surface finish and detail reproduction.

Expert manufacturing solutions for hardware innovators. From prototypes to high-volume production.

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