FusFlex™ TPU64D is a semi-rigid 3D printing material that combines moderate flexibility with enhanced structural rigidity. This thermoplastic polyurethane (TPU) formulation demonstrates exceptional impact resistance and wear durability, while maintaining superior heat tolerance. Optimized for FDM processing, FusFlex™ TPU64D exhibits excellent extrudability across most hotend systems, making it an ideal material solution for ABS replacement applications and high-impact component manufacturing requiring balanced mechanical properties.
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FusFlex™ TPU64D is a semi-rigid 3D printing material that combines moderate flexibility with enhanced structural rigidity. This thermoplastic polyurethane (TPU) formulation demonstrates exceptional impact resistance and wear durability, while maintaining superior heat tolerance. Optimized for FDM processing, FusFlex™ TPU64D exhibits excellent extrudability across most hotend systems, making it an ideal material solution for ABS replacement applications and high-impact component manufacturing requiring balanced mechanical properties.
| Parameter | Value / range |
|---|---|
| Color | White, Black |
| Filament Ø | 1.75 mm |
| Net weight | 1 kg |
| Property | Test method | Typical value |
|---|---|---|
| Density | ISO 1183 | 1.23 g/cm³ |
| Water absorption | ISO 62: Method 1 | 1.61 % |
| Melt index | - | 220 g/10min |
| Property | Test method | Unit | Typical value |
|---|---|---|---|
| - | |||
| Property | Test method | Unit | Typical value |
|---|---|---|---|
| Tensile Modulus XY | ISO527 | MPa | 378.80 ± 15.11 |
| Tensile Break Strength XY | ISO527 | MPa | 37.23 ± 0.90 |
| Elongation at Break XY | ISO527 | % | 349.03.15 ± 16.59 |
| Notched Impact XY | ISO179 | kJ/m² | 179 |
Printed specimen parameters:Specimens printed under the following conditions: Nozzle size 0.4mm,Nozzle temp 250°C, Bed temp 60°C, Print speed 90mm/s, Infill 100%, Infill angle ±45°
Fusrock® 3D printing filaments are suitable for general printing applications and have been tested under standard conditions. However, the performance and safety of printed products are influenced by multiple factors, including printing parameters, model design, operating environment, and intended use. By using Fusrock® materials, users acknowledge and agree to independently evaluate the suitability of printed items for their specific applications and assume all associated risks. Fusrock® shall not be held liable for any damages, injuries, or losses resulting from the practical use of products printed with its materials, including but not limited to structural failures, malfunctions, or safety hazards in operational environments. Thorough testing must be conducted before applying printed components to critical, functional, or commercial scenarios. Fusrock® products are not certified for medical, aerospace, or life-support systems, except for certifications explicitly stated by Fusrock® for specific materials.