3DMaterials B0B5DTQRXZ SuperPCS 3D Printer Resin User Guide
- June 1, 2024
- 3DMaterials
Table of Contents
- 3DMaterials B0B5DTQRXZ SuperPCS 3D Printer Resin
- Product Information
- Product Usage Instructions
- Properties Diagram
- Material Properties
- Printer Settings Chart
- Mixing Ratio for Enhanced Print Strength
- Practical Tips and Tricks
- Safety and Precautions
- References
- Read User Manual Online (PDF format)
- Download This Manual (PDF format)
3DMaterials B0B5DTQRXZ SuperPCS 3D Printer Resin
Product Information
Specifications
- Product Name: 3DMaterials Resin
- Compatibility: Most LCD and DLP 3D printers
- Printing Speed: 0.6 sec
- Tensile Strength: 65 MPa
- Tensile Modulus: 6.0 GPa
- Color: Grey
Product Usage Instructions
Overview
3DMaterials Resin is a high-quality product designed for precise and
detailed 3D printing. Follow the instructions below to maximize your printing
capabilities.
Printer Settings
Ensure your printer is compatible with resin-based printing and adjust the
settings according to the manufacturer’s guidelines.
Mixing Ratio for Enhanced Print
Follow the recommended mixing ratio provided by the manufacturer for
optimal print results.
Practical Tips and Tricks
- Ensure proper ventilation when working with resin
- Use safety equipment such as gloves and goggles
- Store resin in a cool, dry place away from direct sunlight
- Clean the printing platform before each print for better adhesion
Safety and Precautions
- Avoid direct skin contact with resin
- In case of skin contact, wash with soap and water immediately
- Do not ingest resin
- Keep resin away from children and pets
FAQ – Frequently Asked Questions
-
Q: Can this resin be used with all 3D printers?
A: The resin is specifically engineered to be compatible with most LCD and DLP 3D printers. -
Q: How should I store the resin when not in use?
A: Store the resin in a cool, dry place away from direct sunlight to maintain its quality. -
Q: What should I do if the resin comes into contact with my skin?
A: Wash the affected area with soap and water immediately if resin comes into contact with your skin.
Overview
3DMaterials Resin is a cutting-edge product designed for 3D printing. It’s
formulated to deliver high-precision and detailed prints across a range of
applications. Renowned for its superior quality and reliability, it is an
optimal choice for both professional and hobbyist 3D printing enthusiasts.
This resin is specifically engineered to be compatible with most LCD and DLP
3D printers, providing users with the freedom to work on their preferred
printing platforms.
Guide Purpose
The purpose of this guide is to ensure that users can effectively and safely
use 3DMaterials Resin. It aims to provide a comprehensive understanding of the
product, its properties, recommended printer settings, and best practices for
use. The guide also includes troubleshooting tips and safety precautions to
ensure optimal user experience. Whether you are a beginner or a seasoned
professional, this guide is designed to provide you with all the necessary
information to unlock the full potential of 3DMaterials Resin.
Properties Diagram
Standard Resin
Engineering Resin
Material Properties
SuperPCS Materials Properties
| METRIC1)| IMPERIAL1)| METHOD
---|---|---|---
| Post-Cured2)| Post-Cured2)|
Mechanical Properties| | |
Tensile Strength at Break| 48 MPa| 6,962 psi| ASTM D 638
Secant Modulus| 1,702 MPa| 247 ksi| ASTM D 638
Elongation at Break| < 15.0 %| < 15.0 %| ASTM D 638
Flexural Properties| | |
Flexural Modulus| 1,315 MPa| 191 ksi| ASTM D 790
Flexural Strength at 5% Strain| 66 MPa| 9,572 psi| ASTM D 790
Impact Properties| | |
Notched IZOD| 140 J/m| 2.62 ft×lb/in| ASTM D256
Thermal Properties| | |
Heat Deflection Temp. @ 264 psi| – °C| – °F| ASTM D 648
Heat Deflection Temp. @ 65 psi| 50.6 °C| 123 °F| ASTM D 648
- Material properties can vary with part geometry, printing orientation, print settings.
- Data was obtained from parts printed using printer with monochrome LCD, 50μm, post-cured with 20mW/cm² of 395 nm LED light for 10 minutes.
SuperPCS Chemical Resistance
Solvent | 1) Gain % | Solvent | 1) Gain % |
---|---|---|---|
Acetic Acid, 5 % | < 0.1 | Hydrogen Peroxide 3% | 1.0 |
Acetone | 10.0 | Isopropyl Alcohol | < 0.1 |
Bleach, ~ 5% NaOCl | < 0.1 | NaOH 0.025% | < 0.1 |
Butyl Acetate | < 0.1 | Salt Water 3.5% | < 0.1 |
Diethyl Ether | < 0.1 | Water | < 0.1 |
Isooctane | 1.0 | Xylene | < 0.1 |
- Parts exposed to this solvent should not experience a decrease in mechanical properties. (weight or width gain over 24 hours for a 1 x 1 x 1 cm cube)
Printer Settings Chart
Recommended Layer Exposure Setting for 3D Printers
**3D Printer Brands & Makers** | **1** | 50 ㎛ Slicing 2 |
---|---|---|
Exposure for Bottom | Exposure for 3 Layers | |
ANYCUBIC Photon Mono | 2.67 | 10.0s |
ANYCUBIC Photon Mono 4K | 2.39 | 10.0s |
ANYCUBIC Photon Mono X (50% LED) | 1.78 | 20.0s |
ANYCUBIC Photon Mono X2 | 1.94 | 20.0s |
ANYCUBIC Photon Mono X 6K (50% LED) | 2.85 | 10.0s |
ANYCUBIC Photon M3 Premium | 2.34 | 10.0s |
Creality LD-002R | 0.84 | 40.0s |
Creality LD-002H Mono | 2.99 | 10.0s |
Creality Halot one | 1.42 | 15.0s |
Creality Halot Sky | 1.67 | 10.0s |
ELEGOO Mars | 0.49 | 40.0s |
ELEGOO Mars Pro | 0.70 | 40.0s |
ELEGOO Mars 2 | 1.93 | 15.0s |
ELEGOO Mars 2 Pro Mono | 1.99 | 15.0s |
ELEGOO Saturn | 2.07 | 20.0s |
ELEGOO Saturn 2 | 2.07 | 10.0s |
Phrozen Sonic Mini | 1.77 | 15.0s |
Phrozen Sonic Mini 4K | 1.42 | 15.0s |
Phrozen Sonic Mini 8K | 1.60 | 10.0s |
Phrozen Sonic Mighty 4K | 2.15 | 20.0s |
Phrozen Sonic Mighty 8K | 1.75 | 20.0s |
NOVAD3D Bene4 | 1.08 | 15.0s |
NOVAD3D Bene4 Mono | 1.78 | 15.0s |
NOVAD3D Elfin 2 Mono SE | 1.77 | 15.0s |
Voxelab Proxima 6.0 | 1.26 | 20.0s |
Voxelab Proxima 8.9 | 2.19 | 20.0s |
LONGER Orange 30 | 0.64 | 40.0s |
Zortrax Inkspire | 0.48 | 40.0s |
Prusa SL1 | 0.42 | 40.0s |
- Intensity of Light at Surface of LCD
- Sliced Layer Thickness
- Adjust the Exposure Time by ±15% Dependent on Printers
These are maximum times, Shorten the Exposure Time If Thin Film Formeid on Vat Film
SuperCast Materials Properties
| METRIC1)| IMPERIAL1)| METHOD
---|---|---|---
| Green2)| Green2)|
Mechanical Properties| | |
Tensile Strength at Break| 15.2 MPa| 6,179 psi| ASTM D 638
Secant Modulus| 780 MPa| 175 ksi| ASTM D 638
Elongation at Break| < 12.2 %| < 12.2 %| ASTM D 638
- Material properties can vary with part geometry, printing orientation, print settings.
- Data was obtained from parts printed using printer with monochrome LCD without post-curing
SuperCast doesn’t need post-curing. The post-curing will result
uncomplete burning
SuperCast Burnout Schedule
Gold
| Phase| Time| Temp (°C)| Temp (°F)
---|---|---|---|---
A| Insert Flasks Hold| 30 Mins.| 150 °C| 302 °F
B| Ramping| 64 Mins.| 7.0 °C / Min| 12.7 °F / Min
Hold| 30 Mins.| 600 °C| 1112 °F
Recommended Layer Exposure Setting for 3D Printers
**3D Printer Brands & Makers** | **1** | 50 ㎛ Slicing 2 |
---|---|---|
Exposure for Bottom | Exposure for 3 Layers | |
ANYCUBIC Photon Mono | 2.61 | 30.0s |
ANYCUBIC Photon Mono 4K | 2.39 | 30.0s |
ANYCUBIC Photon Mono X (50% LED) | 1.78 | 30.0s |
ANYCUBIC Photon Mono X 6K (50% LED) | 1.94 | 30.0s |
ANYCUBIC Photon Mono X2 | 2.85 | 30.0s |
ANYCUBIC Photon M3 | 2.16 | 30.0s |
ANYCUBIC Photon M3 Premium | 2.34 | 30.0s |
Creality LD-002R | 0.84 | 30.0s |
Creality LD-002H | 2.99 | 30.0s |
Creality Halot one | 1.42 | 55.0s |
Creality Halot Sky | 1.67 | 30.0s |
Creality Halot Mage | 2.88 | 30.0s |
ELEGOO Mars | 0.49 | 30.0s |
ELEGOO Mars 2 | 1.93 | 30.0s |
ELEGOO Mars 2 Pro Mono | 1.99 | 30.0s |
ELEGOO Mars 3 Pro | 2.13 | 30.0s |
ELEGOO Saturn 8K | 2.18 | 30.0s |
ELEGOO Saturn 2 | 2.07 | 30.0s |
Phrozen Sonic Mini 4K | 1.42 | 30.0s |
Phrozen Sonic Mini 8K | 1.60 | 30.0s |
Phrozen Sonic Mighty 4K | 2.15 | 30.0s |
Phrozen Sonic Mighty 8K | 1.75 | 30.0s |
- Intensity of Light at Surface of LCD
- Sliced Layer Thickness
- Adjust the Exposure Time by ±15% Dependent en Printers
These are maximum times, Shorten the Exposure Time If Thin Film Formed on Vat Film
Mixing Ratio for Enhanced Print Strength
UTM Data of Prints with ANYCUBIC Photon Mono
Resin Ra�on| ****
Viscosity (cPs)
| ****
HDT (°C)
| Secant Modulus (MPa)| ****
Elonga�on at
Break(%)
| Tensile Strength (MPa)| Layer Curing
Exposure Time
(50 ㎛)
---|---|---|---|---|---|---
SuperHDT| SuperPP
100| –| 450| 240 °C| 3011| < 2.0| 40|
3.8s
65| 35| 270| 120 °C| 2460| 4.0| 70|
2.2s
50| 50| 201| 95 °C| 2394| 4.4| 69|
1.5s
35| 65| 171| 70 °C| 2020| 6.4| 63|
1.5s
–| 100| 84| 52 °C| 1410| < 25.0| 42|
1.1s
Exposure Time is for ANYCUBIC Mono
UTM Data of Prints with ANYCUBIC Photon Mono
Resin Ration| **Viscosity (cPs)| Secant Modulus
(MPa)| ****Elongation at Break(%)| Tensile Strength (MPa)|
Layer Curing Exposure Time (50 ㎛)
---|---|---|---|---|---
SuperPP| Super Fast 018L
100| –| 84| 1413| 22.9| 41| 1.5s
90| 10| 106| 1698| 14.8| 49| 1.4s
70| 30| 96| 1862| 8.5| 57| 1.2s
50| 50| 109| 2259| 5.4| 65| 1.1s
–| 100| 119| 2365| 2.5| 58| 0.6s**
Exposure Time is for ANYCUBIC Mono
UTM Data of Prints with ANYCUBIC Photon Mono
Resin Ration| **Viscosity (cPs)| Secant Modulus
(MPa)| ****Elongation at Break(%)| Tensile Strength (MPa)|
Layer Curing Exposure Time (50 ㎛)
---|---|---|---|---|---
Super Fast 018L| Super Flex
100| –| 119| 2398| 1.3| 29| 0.6s
90| 10| 124| 2598| 3.1| 58| 0.7s
70| 30| 136| 1840| 5.1| 59| 1.0s
50| 50| 137| 1566| 7.0| 51| 1.2s
30| 70| 140| 892| 19.2| 27| 1.3s
–| 100| 153| 18| 74.3| 4| 1.7s**
Exposure Time is for ANYCUBIC Mono
UTM Data of Prints with ANYCUBIC Photon Mono
Resin Ration| **Viscosity (cPs)| Secant Modulus
(MPa)| ****Elongation at Break(%)| Tensile Strength (MPa)|
Layer Curing Exposure Time (50 ㎛)
---|---|---|---|---|---
SuperPP| SuperFlex
100| –| 84| 1413| 22.9| 41| 1.5s
90| 10| 134| 1118| 20.9| 31| 1.3s
70| 30| 114| 895| 20.0| 28| 1.5s
50| 50| 139| 677| 30.0| 22| 1.5s
30| 70| 154| 214| 48.0| 13| 1.6s
10| 90| 100| 23| 50.8| 4| 1.6s
–| 100| 153| 18| 74.3| 4| 1.7s**
Exposure Time is for ANYCUBIC Mono
Practical Tips and Tricks
SuperFast 4K: Cleaning and Light Leakage Precautions
When using SuperFast 4K, regular cleaning is easy thanks to water-washable
oligomer technology. Products, platforms, and resin tanks can be cleaned with
warm tap water and soap. However, be aware of possible light leakage from
LCDs. This could lead to the formation of burrs and thin films, which could
affect print quality.
SuperFast 8K: Cleaning, Storage, and Personal Protection
SuperFast 8K, while water-washable, requires careful cleaning to maintain
equipment longevity. Warm tap water and soap should be used after each print
job to remove residual resin. For storage, the resin should be placed in a
cool, dry area, away from direct sunlight. While handling the SuperFast 8K,
always wear gloves and masks for safety and to avoid direct skin contact and
inhalation of fumes.
SuperFlex: Handling, Waste Disposal, and Printing Guidelines
SuperFlex resin must be shaken well before use, and operates best at
temperatures between 25 and 35℃. If the resin is too viscous, preheat the
bottle before shaking. For waste disposal, the liquid should be poured into a
transparent container and exposed to sunlight until it cures fully. The resin
should be stored in a cool, shaded area, away from children. For the best
results, follow the recommended printer settings and resin usage guidelines.
SuperElastic: Handling, UV Exposure, and Storage
The high viscosity of SuperElastic resin requires vigorous shaking before each
use. Wear gloves and ensure a well-ventilated operating environment. Keep the
resin away from strong ultraviolet exposure, such as near windows or
balconies. Store the resin in a cool, shaded area. If unused, pour the resin
into a clean, light-shield-ed container and seal it tightly.
SuperHDT: Print Preparation, Recrystallization, Safety, and Storage
For high-temperature resistance when using SuperHDT, add extra layer exposure
time during printing. If the resin becomes cloudy, heat it to restore
performance. If recrystallization occurs during storage, warm the resin bottle
to regain clarity. Handle the hot resin with care during post-curing and store
in a cool, dark place. Make sure your 3D printer is compatible with SuperHDT
resin.
SuperPCS: Disposal, Environment, and User Comfort
Proper disposal is essential when using SuperPCS. Expose used water to
sunlight before pouring it into the drain. This resin is environmentally
friendly, and proper disposal helps prevent potential environmental pollu-
tion. SuperPCS has a subtle odor, which reduces discomfort during long
printing sessions.
SuperPP: Disposal, Environment, and User Comfort
SuperPP also requires correct disposal procedures. Ensure that any used water
is exposed to sunlight before being poured into the drain. This minimizes
potential environmental pollution. Like SuperPCS, SuperPP has a subtle odor,
making long printing sessions more comfortable.
SuperRigid: Variance in Material Properties
With SuperRigid, material properties can vary based on various factors, such
as part geometry, printing orien-tation, and print settings. Therefore, be
sure to adjust your settings appropriately for the best results.
SuperCast: Troubleshooting Common Issues
Several common issues can occur when using SuperCast. Small bubbles on the
casting can be due to a too viscous investment; resolve this by increasing
water content or using colder water. Metal flashes can be due to a weak
investment; reduce water content and extend bench set time to resolve. Partial
fill or porous surfac-es can be due to metal freezing; increase casting
temperature or attach reservoirs to rectify. Pitted surfaces can occur due to
incomplete burnout; increase peak burnout time and improve airflow to resolve.
Safety and Precautions
SuperFast 4K
Clean printed products, platforms, and resin tanks with warm tap water and
soap after each use. Avoid light leakage from LCDs to prevent the formation of
burrs and thin films. Complies with RoHS and EPA Method 610 safety standards.
SuperFast 8K
Thoroughly clean all equipment after each use with warm tap water and soap.
Store the resin in a cool, dry place, away from direct sunlight. Always wear
personal protective equipment, such as gloves and masks, while handling the
resin.
SuperFlex
Use at temperatures between 25 and 35℃ and shake the bottle thoroughly before
each use. If the resin is too viscous, preheat the bottle in 80℃ warm water
before shaking. Always wear nitrile rubber gloves and maintain good
ventilation during operation. Dispose of waste liquid responsibly by curing it
in sunlight before disposing of it in the sewer. Store the resin in a sealed,
shaded, cool area, out of the reach of children.
SuperElastic
Shake the bottle well before each use, and if the resin is overly viscous,
preheat the bottle with warm water. Always wear nitrile rubber gloves and
ensure good ventilation during operation. Avoid using the resin near areas
with strong ultraviolet exposure. Store unused resin in a clean, light-
shielded container, in a sealed, shaded, cool place.
SuperHDT
Increase layer exposure by 0.3s to 0.8s while printing for optimal high-
temperature resistance. Warm the resin bottle at 140°F (60°C) for an hour or
at 120°F (50°C) for a few hours if the resin recrystallizes. Post-cure under
20mW/cm2 395nm ~ 405nm LED light for 10 minutes to measure the print’s HDT.
Handle with caution, using heat-resistant gloves if possible.
Store the resin in a cool, dark place, keeping the bottle sealed when not in
use.
SuperPCS
Dispose of used water responsibly by exposing it to sunlight before pouring it
into the drain. The formulation of SuperPCS is designed to minimize discomfort
from odors during long printing sessions.
SuperPP
Follow the same disposal practices and environmental considerations as
mentioned for SuperPCS. The formulation of SuperPP is designed to minimize
discomfort from odors during long printing sessions.
SuperRigid
Printing results may vary based on part geometry, printing orientation, and
print settings. Parts should be post-cured under a 395 nm LED light at
20mW/cm2 for 10 minutes.
SuperCast
Pay attention to casting issues such as small bubbles, metal flashes or jagged
blobs, partial fill on thin sections, and pitted surfaces on the casting.
Implement solutions like adjusting water content, bench set time, burnout ramp
rate, casting temperature, and the number of sprues, and ensuring airflow in
the burnout oven to rectify these issues.
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Website: www.3DMaterials.com
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