: TENAADO Metall 3D Crack supports the creation of assemblies, allowing users to combine multiple parts into a single file. This feature is crucial for engineers and designers who need to work on complex projects that involve numerous components.
| Feature | Benefit | |---------|----------| | | Uniform grain structure → superior tensile strength (up to 1.5 × conventional alloys). | | Crack‑Control Additives | Real‑time stress‑relief particles that arrest micro‑crack propagation during solidification. | | Ultra‑Fine Particle Size (≤ 15 µm) | Enables layer heights as low as 10 µm for extraordinary surface finish (Ra < 0.4 µm). | | High Thermal Conductivity (≈ 45 W·m⁻¹·K⁻¹) | Faster heat dissipation → reduced residual stresses and warping. | | Wide Material Compatibility | Available in Al‑Si, Ti‑Al‑V, Inconel 625, and custom alloy blends. | | Eco‑Smart Packaging | 100 % recyclable, nitrogen‑flushed containers to preserve powder integrity. | | Full‑Traceability | Batch‑level QR code linking to material certification, micro‑structure data, and ISO 9001 compliance. | tenado metall 3d crack
“Switching to Tenado Metall 3D Crack cut our part‑failure rate from 7 % to virtually zero. The material’s strength allowed us to downsize a critical aerospace bracket by 15 % while meeting all FAA fatigue requirements.” — : TENAADO Metall 3D Crack supports the creation
| Parameter | Value | |-----------|-------| | | 5 µm – 25 µm | | Bulk Density | 3.8 g·cm⁻³ | | Flowability (Hall Flow) | 12 s/50 g | | Yield Strength | 380 MPa | | Ultimate Tensile Strength | 560 MPa | | Elongation at Break | 12 % | | Hardness (HV) | 120 | | Maximum Build Temperature | 900 °C | | Laser Power Range | 200 W – 800 W (for SLM) | | Recommended Layer Thickness | 10 µm – 50 µm | | | Wide Material Compatibility | Available in
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