Wear- Resistant Blu Nylon Mecha TDS
This TDS is forΒ BluΒ Nylon Mecha only.
Check out BluΒ Nylon Mecha here.


1. Product Introduction
Blu Nylon Mecha is a remarkably tough engineering resin featuring outstanding mechanical properties.Β
Its exceptional hardness and robustness make it ideal for crafting durable parts and tools. Certified bio-compatible under ISO 10993-10, it delivers higher impact and wear resistance than standard Blu, and it produces far less friction powder overall.
Application:
- Gear and joint parts
- Engineering Prototypes
- Mechanical Aids
- Fixtures and Jigs
- Medical Devices
- Load-bearing parts
2. Property Data
|
Mechanical Properties |
Measure |
Method |
|
Tensile Stress at Yield |
63 |
ASTM D638 |
|
Tensile Stress at Break (MPa) |
58 |
ASTM D638 |
|
Youngβs Modulus (MPa) |
1900 |
ASTM D638 |
|
Elongation at Break (%) |
45 |
ASTM D638 |
|
Flexural Modulus |
1830 |
ASTM D790 |
|
Other Properties |
Measure |
Method |
|
HDT at 0.455 MPa |
65 |
ASTM D648 |
|
IZOD Impact (Notched) J |
50 |
ASTM D256 |
|
Shore Hardness (D) |
73 |
ASTM D2240 |
|
Solid Density |
1.25 |
ASTM 792 |
|
Water Absorption (24hr) |
0.75% |
ASTM D570 |
|
Biocompatibility |
β |
10993-10 Link to certification |
|
Liquid Properties |
Measure |
Method |
|
Viscosity at 25Β°C (77Β°F) |
1000 |
ASTM D7867 |
|
Liquid Density |
1.15 |
ASTM D1475 |
Β
3. Work Flow
Printing
|
Material Name |
Blu Tough Resin (Nylon Mecha) |
|
Primary Printer Compatibility |
MSLA / LCD/ DLP 3D Printers |
|
Secondary Printer Compatibility |
385nm - 405nm 3D Printers |
|
Hardware Requirement |
Access to exposure control is required |
|
Supported Slicer Software |
Chitubox, Lychee Slicer, Anycubic Photon Workshop, Blueprint Studio, Elegoo Satellite |
|
Slicer Profiles Download |
|
|
Temperature required |
25β or above |
Β
Cleaning
|
Cleaning Step / Category |
Instructions & Recommendations |
|
Cleaning Solvents |
β’Β Preferred: 95% concentrated Ethanol or IPA. β’ Alternative: Methanol (must not contain acetone). |
|
Cleaning Time |
Submerge parts in the solvents for 4-5 minutes, using the ultrasonic cleaner. |
|
Submersion Limit |
DoΒ notΒ submerge parts in alcohol for more thanΒ 5 minutes. |
|
Extra Step |
For a complex model, use a painter brush (or any brush made with hair) to gently remove excess resin from the printed part. |
Β
Drying
|
Drying |
Remove alcohol by using an oven for 7-8 minutes (using a hair dryer requires 10 minutes) |
|
Note: For complex parts with cavities, repeat the clean/dry cycle multiple times. |
|
|
Quality Check |
Touch the dried surface. If it is still sticky, wash and dry the part again until smooth. |
Β
Post Curing
|
Step / Factor |
Instructions & Recommendations |
|
Pre-curing Checklist |
Ensure the part is completely clean of excess resin andΒ fully dryΒ (no alcohol left) before starting. |
|
UV Specifications |
Use a UV light source with a wavelength ofΒ 395-405nm. |
|
Curing Time |
Cure for approximatelyΒ 15 minutesΒ to achieve optimal strength. |
|
Efficiency Tip |
Submerge the printed object in water during the UV curing process to significantly increase curing efficiency. |
Β
4. Biocompatibility Certification
For Biocompatibility related applications, please follow the post-processing guideline here.
5. Additional Information
Download BluΒ Nylon MechaΒ TDS in PDF Version.
Click and ViewΒ Blu Nylon Mecha User GuideΒ here.
