Rigid Denture Base Resin
Rigid denture-base resin described by the TDS
The RF-JT-05 TDS describes a rigid denture-base material with high flexural strength and modulus, good hardness, fracture resistance, precision, polishability, and adhesion to crown-and-bridge materials. Treat all parameters as starting points for laboratory validation.
Technical Data
| Properties | Unit | Test method | Result |
|---|---|---|---|
| Density | g/cm³ | ASTM D792 | 1.05–1.15 |
| Viscosity | mPa·s | ASTM D445 | 1400 |
| Hardness | Shore D | ASTM D2240 | 88D |
| Tensile Strength | MPa | ASTM D638 | 90 |
| Elongation at Break | % | ASTM D638 | 10 |
| Flexural Strength | MPa | ASTM D790 | 110 |
| Flexural Modulus | MPa | ASTM D790 | 2000 |
TDS Printing Parameters
LCD/DLP starting parameters listed in the current TDS. Calibrate for the actual printer, resin batch, temperature, geometry, supports, and post-processing.
| Printer | Exposure (s) | Base Exp. (s) | Base Layers | Lift Height (mm) | Lift Speed (mm/min) | Retract Speed (mm/min) |
|---|---|---|---|---|---|---|
| Phrozen Sonic Mini 8K S | 5 | 20 | 3 | 4+4 | 40+120 | 180+60 |
| Elegoo Saturn 4 Ultra | 4 | 25 | 3 | Device default standard parameters | ||
| Elegoo Saturn 3 Ultra | 4.5 | 25 | 3 | 4+4 | 90+180 | 180+60 |
| Creality HALOT-MAGE Pro | 2 | 20 | 3 | 10 | 120 | 180 |
| Anycubic Photon Mono 4 Ultra | 4 | 25 | 3 | 4+4 | 120+180 | 240+120 |
| Anycubic Photon Mono M7 Pro | 3 | 20 | 3 | 5+3 | 90+120 | 180+120 |
TDS Post-Processing & Storage
- 1
Wash — Clean with isopropyl alcohol in an ultrasonic cleaner. Handle gently; avoid high-frequency or forceful brushing that could damage the surface.
- 2
Dry — Blow the printed part completely dry with a hair dryer or similar tool.
- 3
Remove supports — Remove supports before post-curing; removal after curing can damage support-contact areas.
- 4
Conditional post-cure — When additional toughness is required, UV cure for 5 minutes.
Storage
Store in a cool, dry place below 25°C, away from direct sunlight and visible light to prevent polymerization or gelation.
Safety and use status
The current TDS states that the resin is not approved for food, drink, or medical application on the human body. Review the SDS and verify current intended use and regulatory status before any clinical use.
Printers Listed in the TDS
Processing technology: LCD/DLP. The following representative devices are the only printer models named in the current TDS.
Use the table above as a calibration starting point, not as universal compatibility approval.
Denture-Base Workflow Described in the TDS
The TDS describes RF-JT-05 for full, partial, and implant-supported denture workflows and notes adhesion to crown-and-bridge materials. Because the same TDS states that the resin is not approved for medical application on the human body, verify the current intended use and regulatory status before any clinical use.


RF-JT-05 Technical FAQ
- QWhat does the current TDS describe RF-JT-05 for?
Rigid denture-base workflows, including full, partial, and implant-supported denture workflows. This description is not a regulatory approval. - QWhat are the key TDS values?
Shore D 88, tensile strength 90 MPa, elongation at break 10%, flexural strength 110 MPa, and flexural modulus 2000 MPa. - QWhich printing technologies are listed?
LCD and DLP, with starting profiles for the six representative printer models shown above. - QHow should printed parts be cleaned?
Use isopropyl alcohol with ultrasonic cleaning, then blow dry completely and remove supports before post-curing. - QDoes this page claim approved clinical use?
No. Confirm the current intended use, regulatory status, and valid local protocol before any clinical use.
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Request a sample or contact our application engineers for validated parameters and printing workflow support.
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