Système de dépôt métallique par laser grand format Greenstone (dimensions maximales : 800 × 600 × 900 mm)
Présentation des caractéristiques de l'équipement
Le Greenstone Large-Format Laser Metal Deposition (LMD/DED) System is designed to deliver both high efficiency and high precision for metal additive manufacturing, near-net-shape forming, and high-value component repair. With a maximum build size of 800 × 600 × 900 mm, it supports medium-to-large parts and complex geometries while helping users significantly improve mechanical strength and corrosion resistance through high-quality deposited layers.
Built for industrial production, the system integrates a mature motion platform and process package for commonly used metals, making it easier to deploy stable parameters for titanium alloys, aluminum alloys, nickel-based alloys, steel systems, stainless steels, copper alloys, and low-alloy steels. It supports multiple powder feeders, enabling flexible process development—from part forming and precision repair to new-material process validation and high-deposition-rate applications.
For long-duration processing stability, Greenstone’s platform has undergone continuous product iteration and design optimization, addressing key challenges such as thermal management, fume/smoke purification, et powder contamination protection. The software layer also supports data acquisition and fault diagnosis, and can be configured with optional modules such as melt pool monitoring et process simulation, helping users improve consistency, traceability, and production yield.
Les applications typiques sont les suivantes general industrial manufacturing, mold and die production/repair, et aérospatial—such as impellers, blisks, blades, and advanced lattice/honeycomb structures.
Large build capacity (800 × 600 × 900 mm): Suitable for larger components and complex structures.
Balances efficiency and precision: Designed to support both deposition productivity and dimensional control.
Improves part performance: Helps enhance mechanical properties et corrosion resistance via dense, stable deposition.
Process packages for common metals: Built-in process data support for widely used alloy systems for easier commissioning.
Supports multiple powder feeders: Enables part forming, precision repair, and new material/process development; supports high-throughput powder design concepts.
Flexible nozzle configuration: Compatible avec 4-point and annular nozzle solutions for stable focusing, reduced powder sticking, and reliable operation.
Integrated software functions: Data collection + fault diagnostics; optional melt pool monitoring et process simulation for improved control and traceability.
Optimized for industrial robustness: Iterative upgrades improve heat dissipation, fume/dust purification, et anti-contamination protection for long-run stability.
Proven application coverage: Suitable for impellers, engine blisks, blades, and honeycomb/lattice structures.
| Article | Spécification |
|---|---|
| Modèle | GSTLDM-800×600×900mm |
| Max Build Size | 800 × 600 × 900 mm |
| X/Y/Z Axis Positioning Accuracy | 0.08 mm |
| X/Y/Z Axis Repeat Positioning Accuracy | 0.05 mm |
| X/Y/Z Axis Max Traverse Speed | 5 m/min |
| Système de contrôle | 828D SL |
| Teneur en oxygène | ≤ 50 ppm |
| Shielding Gas | Ar |
| Puissance du laser | 2 kW / 4 kW |
| Applicable Materials | Titanium alloys, aluminum alloys, nickel-based alloys, iron-based alloys, mold steels, stainless steels, copper alloys, low-alloy steels, etc. |
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