




[Heat Deflection Temperature 464 °F] Highest heat deflection temperature of 464 °F in the world.
[Increase HDT by adding SuperHDT] Adding SuperHDT to standard resins increase the HDT of print substantially.
[User Guide #1 Remelting Resin] Please check the color before use, warm the bottle at 140°F for an hour or 120°F for couple of hours.
[User Guide #2 Post-curing] Post-curing by 20mW/cm2 395nm ~ 405nm LED light for 10 minutes, and heating up the print in 176°F oven for one hour.
[ISO 10993-5] Properly cleaned and fully post cured SuperHDT prints pass ISO 10993-5 test.
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[Heat Deflection Temperature 464 °F] Highest heat deflection temperature of 464 °F in the world
[Increase HDT by adding SuperHDT] Adding SuperHDT to standard resins increase the HDT of print substantially
[User Guide #1 Remelting Resin] Please check the color before use, warm the bottle at 140°F for an hour or 120°F for couple of hours
[ISO 10993-5] Properly cleaned and fully post cured SuperHDT prints pass ISO 10993-5 test
[Non-Flammability] Pass UL94 V-0 non-flammability requirements and FST (AITM2-0002, AITM2-0007, AITM3-0005)
[Heat Deflection Temperature 464 °F] Highest heat deflection temperature of 464 °F in the world
[User Guide #1 Remelting Resin] Please check the color before use, warm the bottle at 140°F for an hour or 120°F for couple of hours
[User Guide #2 Post-curing] Post-curing by 20mW/cm2 395nm ~ 405nm LED light for 10 minutes, and heating up the print in 176°F oven for one hour
[40% of Nano-Micro Ceramic Powder Filled] 40% of nano-micron ceramic powder filled for strong industrial grade ceramic like prototype
[High Modulus Ceramic-Like] 6.0GPa tensile and 8.0GPa flexural modules simulating stiffness of ceramic
[Ceramic Like Texture] High density and surface texture simulating ceramic, stone, cement
[ISO 10993-5] Properly cleaned and fully post cured SuperRigid prints pass ISO 10993-5 test
Choosing softness & post-processing, non-flammable testing, and coloring
SuperHDTprovides a high heat deflection temperature of 464°F (240°C), perfect for heat-resistant 3D-printed parts. Durable and stable, it's ideal for prototypes and industrial components needing thermal resistance.
Halogen-free, flame-retardant oligomer synthesized by 3DMaterials allows SuperPP V-0 to pass UL94 V-0 flammability requirements and FST. SuperHDT V-0 has the highest heat deflection temperature of 464°F (240°C), making it well-suited for electrical and lighting fixture parts with non-flammability.
From preparation to post-processing, SuperHDTensures optimal heat deflection. Begin by remelting the resin if crystallized, wash and sand prints thoroughly, and remove supports. For maximum durability, apply over-coating and post-cure under LED light for 10 minutes.
SuperRigidresin offers outstanding mechanical strength with an 8.0 GPaflexural modulus, capable of withstanding up to 1,300 lbs of compression weight. Ideal for industrial prototypes and load-bearing parts, it delivers exceptional durability, ensuring structural integrity under high stress.
The ONE INCH 3D PRINTED LATTICE SUPPORT for the MERCEDES S-CLASS utilizes SuperRigid's 8.0 GPa flexural modulus to support over 2,500 kg, enhancing structural integrity and performance in automotive applications.
The settings chart is available at the end of this page, or you can download it from the Amazon document list using QR code on the label of bottle.
Use alcohol to remove excess resin from the surface and dry the prints completely. Post-cure them using any brand’s curing machine for 20 minutes in air. One tip is the underwater (without oxygen) curing for another 10 minutes gives better result.
These settings were measured and tested for a 50μm layer thickness. Adjust the exposure time by ±15% based on your printer's conditions. Colored prints were tested using the recommended number of pigment drops per 100mL of clear resin.
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