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Dental 3D Printing Solutions for Dental Labs & Clinics

Implement accurate, efficient, and scalable dental 3D printing with validated workflows, professional printers, biocompatible resin materials, and optimized post-processing—all in one complete solution.

This Dental 3D Printing Solution Hub brings together everything needed to evaluate and implement digital dental manufacturing. Explore clinical applications, production workflows, dental 3D printers, certified resin materials, post-processing, and expert guidance to build a reliable, high-quality digital workflow for modern dental laboratories and clinics.
iFun Dent Giant compact dental LCD 3D printer for precision dental models
Standard Operating Protocols

Validated End-to-End Digital Ecosystem

Achieving legal in-vivo biocompatibility is strictly dependent on cross-platform verification. Our dynamic process architecture accepts unmodified standard .STL or .PLY output boundaries directly from 3Shape and exocad suites, transitioning seamlessly into rigorous chemistry post-processing protocols.
01

CAD Data & Scan

Import standard .STL/.PLY intraoral digital impressions. Direct software matching protocol preserves structural boundaries without geometry manipulation.

02

Slicing Optimization

Apply pre-configured material parameter files (.cfg) inside Chitubox or Formware engines to calculate anti-aliasing pixel offsets.

03

Additive Light-Curing

Execute continuous light projection over calibrated monochrome matrices. Bottom-up separation layers control structural peel forces.

04

Automated Wash

Agitate component matrices within chemical-grade Isopropyl Alcohol (IPA ≥99%) to completely strip raw unpolymerized surface residuals.

05

UV Post-Curing

Expose models to balanced light energies across specific electromagnetic ranges (385nm/405nm) to fix polymer conversion rates.

Technical Application Matrix

Engineered Parameters for 10 Common Clinical Indications

Select an application module below to inspect targeted layer thickness metrics, validated baseline material designations, and printer compatibility arrays.
Surgical Guide
High-Throughput Prosthetics

Master & Working Dental Models

Engineered explicitly for ultra-precise crown and bridge restorations, removable dies, and orthodontic diagnostic checks. Demands high surface smoothness and absolute zero contraction behavior across cooling phases.
Mandatory Industry Standards
Biocompatibility Matrix
Non-Clinical Industrial-grade laboratory chemical and physical safety baseline.- Lab Safety Benchmark
Mechanical Benchmarks
≥ 60MPa Must withstand repetitive friction and insertion/removal of master dies.- ASTM D1781 / D1929
Clinical & Precision Specs
< 0.2% Linear shrinkage threshold to survive clear aligner vacuum thermoforming.- Precision Transfer
High-Throughput Prosthetics

Implantology Surgical Guides

High-clarity polymer structures designed to support stainless steel drill sleeves safely during computer-guided implant surgeries. Must withstand extreme torsional strain profiles without cracking.
Mandatory Industry Standards
Biocompatibility Matrix
Medical Grade Rigorous non-toxic leaching evaluation for direct blood/bone contact.- ISO 10993 Standard
Mechanical Benchmarks
≥ 50MPa High structural rigidity recommendation to completely avoid intraoperative fracturing.- ASTM D1781 Standard
Clinical & Precision Specs
< 0.5% Linear shrinkage threshold for seating fit; high optical transmittance.- Digital Seating & Vision
High-Throughput Prosthetics

Permanent Crowns & Definitive Restorations

Designed to revolutionize single-visit dentistry and lean laboratory production by delivering precise, final-stage prosthetic applications. This workflow minimizes post-processing labor and zero-out block waste, allowing clinicians and technicians to achieve predictable anatomy, ideal contact points, and long-term functional stability directly from the 3D printer to the patient’s mouth.
Mandatory Industry Standards
Biocompatibility Matrix
Type 2 Certified Subchronic toxicity free for continuous load-bearing intraoral residence.- ISO 4049 Type 2
Mechanical Benchmarks
≥ 80MPa Hard baseline for posterior occlusal surface flexural strength.- ISO 4049 / 10477
Clinical & Precision Specs
≥ 3000MPa High modulus & density (≥2.0 g/cm³) for radiopacity & wear resistance.- Ceramic Filler Principle
High-Throughput Prosthetics

Temporary Single Crowns

Highly filled micro-hybrid ceramic resins designed for realistic esthetic temporary single-tooth restorations. Must exhibit structural resistance against oral load conditions.
Mandatory Industry Standards
Biocompatibility Matrix
< 30 Days Safe Cytotoxicity & mucosal irritation cleared for short-term oral residence.- ISO 10993-1 / -10
Mechanical Benchmarks
≥ 50MPa Minimum flexural strength required for polymer-based restorations.- ISO 10477 / 4049
Clinical & Precision Specs
Strict Limit Water absorption & solubility limits to prevent degradation and staining.- ASTM D570 Standard
High-Throughput Prosthetics

Custom Impression Trays

Designed for ultra-rapid production of individualized patient trays. Maximized print speed configurations allow labs to bypass conventional stock options rapidly.
Mandatory Industry Standards
Biocompatibility Matrix
Transient Safe Basic biological safety for tools with transient oral mucosal contact.- ISO 10993-1 / -10
Mechanical Benchmarks
≥ 1500MPa Elastic modulus threshold ensuring zero bending under insertion force.- ISO 178 / ASTM D5041
Clinical & Precision Specs
24-Hour Control Volumetric shrinkage control to prevent margin flaring and transfer distortion.- ISO 4823 Impression
High-Throughput Prosthetics

Full & Partial Denture Bases

Advanced base materials formulated for total water-absorption immunity, maintaining accurate long-term alveolar fit without tissue-irritating dimension shifts.
Mandatory Industry Standards
Biocompatibility Matrix
Type-IV Safe Strictly bars residual monomer leaching to avoid chemical stomatitis.- ISO 10993 Hypersens
Mechanical Benchmarks
70 ~ 80D Surface hardness & long-term volumetric stability baseline.- ISO 20795-1 (Type 5)
Clinical & Precision Specs
High Toughness Structural integrity to survive accidental drops during patient cleaning.- Impact & Drop Standard
Industrial Hardware Integration

Monochrome Photopolymerization Systems

Our hardware engineering lines encompass chairside digital dental units, industrial lab-scale high-throughput printing arrays, automated solvent extraction units, and synchronized multi-spectrum radiant thermal finalization arrays. Pre-loaded parameter configurations drive 100% calibration reliability out-of-the-box.

Mini Giant Pro 9K

Engineered for high-efficiency clinical chairside immediate manufacturing. Compact yet powerful, designed to meet the demands of direct digital restorative dentistry with ultra-high precision.

  • Light Uniformity: ≥ 96% uniform optical path | Restricts batch weight errors to ±0.03g.

  • XY Resolution & Precision: 18 μm native pixel size (9K Mono LCD, 8520×4320) | ±0.05 mm tolerance for 1:1 anatomical restoration.

  • Thermal Management: Built-in heating maintains resin at 25°C – 30°C | Eliminates environment-driven print failures.

  • Z-Axis & Release Tech: Stable vertical motion + industrial nFEP film | Minimizes peel force for layer-line-free surfaces.

Request Hardware Spec Sheet

DENT PRO 14K

A high-resolution, professional-grade dental printer built for lab-scale volume production. Highly optimized to reproduce fine dental anatomy—such as gingival margins, cusp tips, and interdental spaces—with exceptional clarity.

  • Light Uniformity: 90% physical uniformity | Factory-calibrated with individual manual light path tuning.

  • Precision Z-Axis: ≤ 0.002 mm precision | Ground ball screw linear module for layer-line-free surfaces.

  • Throughput & Accuracy: 91.46% CAD coincidence (±0.05 mm) | High-yield batching: up to 6 models or 190 crowns in 44 mins.

  • Environmental Control: 120W chamber heating (up to 35°C) | Integrated modular odor purification system.

Request Hardware Spec Sheet

Dental Curing Unit

A high-powered secondary post-curing device engineered for the thorough solidification of dental casting resins (like white wax) and high-performance dental polymers to ensure maximum mechanical strength.

  • Curing Power: 800W intensive output | Deep light penetration accelerates post-processing and guarantees premium casting outcomes.
  • Curing Capacity: 310×358×170 mm chamber | Simultaneously cures 6 batches of 10.1-inch build plate models.
  • Specialized Dry Mode: Active Dry Mode | Removes surface moisture and alcohol residues before final curing to optimize biocompatibility.
Request Hardware Spec Sheet
Material Science Architecture

Empirical Photopolymer Engineering Data

This data sheet addresses photopolymer dental resin properties for precise clinical applications. High-rigidity form-fitting dental model resins (e.g., 3160/3160A) feature a Shore D hardness exceeding 80D to ensure seamless crown/bridge insertions without chipping edges. Biocompatible configurations comply fully with ISO 10993 standard protocols, ensuring risk-free processing for intraoral splints, surgical templates, and definitive temporary restorations.
Material SKU / NameLiquid Viscosity
(mPa·s / 25℃)
Flexural Modulus
(MPa)
Shore D Hardness
(Post-Cured)
Tensile Strength
(MPa)
Density
(g/cm³)
Linear Shrinkage
(%)
Dental Model IF3160A30080D117.21.119 0.17%
Permanent Crown IF31803,61292D1192.320.25%
Dental Model IF3160380 – 400≥82D> 601.200< 0.5%
Gingiva Mask IF316140 – 60D< 1.0%
Dental Occlusal Splint IF3162330 – 3501,00075D501.1500.5% – 1.0%
Dental Casting IF3163280 – 35065063D251.090< 0.5%
Temporary Crown IF3164350 – 4201,60085D551.250< 0.5%
Surgical Guide IF3165330 – 35078D651.150< 0.5%
Denture Base IF3166450 – 75070 – 80D> 601.050 – 1.150< 1.0%
Dental Tray IF3167380 – 4001,70075D72< 1.0%
Regulatory & Clinical Framework

Medical-Grade Material Biocompatibility Assurance

Strict execution of absolute toxicology screening ensures uncompromised intraoral appliance safety.

Official Document Previews

ISO 10993-5 test report for dental materials showing in vitro cytotoxicity test compliance.CNAS / MA Verified

In Vitro Cytotoxicity Evaluation

Official verification report issued under ISO 10993-5 protocols confirming quantitative cellular safety limits.

RoHS Certificate of Conformity for IFUN dental series and casting series materials.CE / RoHS Compliant

RoHS Certificate of Conformity

Compliance reporting covering hazardous substance restrictions for specialized photopolymer resin families.

Biocompatibility & Technical Standards

Standard / RegulationVerified Diagnostic Parameters & Evaluation Metrics
ISO 10993-5:2009In Vitro Cytotoxicity Test Passed. Evaluated using 100% extract concentration on L-929 cell lines.
Recorded a quantitative cell viability rate of 77.7%, confirming zero potential cytotoxicity.
ISO 10993-1:2009Biological Evaluation Framework. Systematic risk management assessment executed to classify material compatibility boundaries for transient intraoral applications.
RoHS DirectiveDirective 2011/65/EU & 2015/863/EU Compliant. Complete material restriction tracking verifying the absolute absence or compliant thresholds of Lead (Pb), Mercury (Hg), Cadmium (Cd), Cr(VI), PBBs, PBDEs, and target phthalates.

Vertical Medical-Grade Applications

The documented chemical profile and cytocompatibility metrics safely clear these materials for specialized dental laboratory and clinical production environments:

  • Temporary Intraoral Restorations: Clinically viable foundation for 3D-printed temporary crowns, bridges, partial frameworks, and structural veneers.
  • Structural Casting Components: High-precision casting applications requiring precise burnout workflows combined with clean handling safety baselines.
  • Global Laboratory Integration: Seamless technical data alignment matching the compliance audits of modern international dental laboratories and medical-device distributors.
Dental 3D Printing Consultation

Let's Build the Right Dental 3D Printing Solution Together

Whether you're evaluating dental 3D printing, selecting resin materials, planning a new digital workflow, or expanding production capacity, our application engineers are ready to help.

Tell us about your project and we'll recommend the most suitable printers, materials, workflows, and production solutions based on your specific needs.

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