iDEN160(D) Dental Metal 3D Printer – Ultra-High Accuracy SLM 3D Printer for Medical

Process Type: Selective Laser Melting (SLM)

Specifications

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Product Description

CategorySpecifications
Laser System• Type: Fiber Laser
• Configuration: Single Laser (iDEN160) / Dual Laser (iDEN160D)
• Wavelength: 1064 nm
• Laser Power: 500W (per laser)
Recoating System• Method: Bidirectional Blade Recoating
• Standard Layer Thickness: 0.03 mm
• Rapid Prototyping Range: 0.03 ~ 0.10 mm
High Precision Range: 0.02 ~ 0.03 mm
Optical & Scanning• Spot Size (@1/e²): 0.05 ~ 0.15 mm
• Galvanometer: SCANLAB High-speed Scanning Galvanometer
• Scanning Speed: 2.0 m/s (Recommended)
• Jump Speed: 10.0 m/s (Recommended)
• Reference Build Rate: 1,200 Crowns / 24h OR 75 Dental Bridges / 24h
Shielding System• Protective Gas: Nitrogen (N₂) or Argon (Ar)*
*Argon is mandatory for reactive metal materials (e.g., Titanium).
• Flow Control: Intelligent adjustment 0 ~ 3 L/min
• Filtration: High-efficiency protective gas circulation and dust removal system (4-level purification)
Build Vat• Chamber Volume: Approx. 3 Liters
• Build Volume: 160mm (X) × 160mm (Y) × 100mm (Z)
(Dimensions exclude fillets)
• Max Part Weight: 10 kg
• Substrate Handling: Quick-change substrate without screw holes & Quick-swap transition chamber
• Drive Motor: Precision Servo Motor
• Heating Type: Precision resistance wire heating
• Compatible Materials: Pure Titanium, Titanium Alloy (TC4), Cobalt-Chrome (MP1), etc.
Software• Network: Ethernet, TCP/IP, IEEE802.3
• Control Software: Forgecise iSLM 4.0 (Dental Specialized Edition)
• Data Processing: 3dLayer (3D Support & Slicing Software)
• File Interfaces: CLI, SLC, STL
Installation Conditions• Power Supply: 220V (±10%) AC 50/60Hz, Single-Phase, 16A
• Ambient Temperature: 20 – 26°C
• Relative Humidity: < 40%, non-condensing
• Machine Dimensions: 1.10m (W) × 1.28m (D) × 1.85m (H)
• Machine Weight: Approx. 1,000 kg
Warranty• Laser Source: 5,000 hours or 12 months (whichever comes first)
• Whole Machine: 12 months from installation date

Note: Specifications are subject to updates. Please consult a Forgecise representative for the latest data.

Revolutionize your digital dentistry production with the iDEN160(D), a Selective Laser Melting (SLM) solution engineered specifically for the dental and medical industries. This compact yet powerful system offers a flexible configuration, available as a single-laser (iDEN160) or high-throughput dual-laser (iDEN160D) unit, allowing labs to scale their production capacity effortlessly.

At the core of the iDEN160(D) is a high-energy 500W fiber laser (per unit) with a fine spot size (0.05–0.15 mm), capable of processing biocompatible materials such as Pure Titanium (Ti), Titanium Alloys (TC4), Cobalt-Chrome (MP1), and Stainless Steel. The system boasts impressive efficiency, with reference production rates of up to 1,200 dental crowns or 75 dental bridges in a single 24-hour cycle. Its advanced bidirectional blade recoating system ensures consistent layer thicknesses from 0.02 mm for high-precision margins to 0.10 mm for rapid prototyping.

The Forgecise iDEN160(D) is equipped with a sealed build chamber protected by intelligent Nitrogen or Argon gas circulation (0–3 L/min), ensuring oxidation-free processing even for reactive titanium alloys. The resulting parts exhibit a dense metallurgical structure (>99% density) and superior mechanical properties, often eliminating the need for HIP (Hot Isostatic Pressing). Integrated with Forgecise iSLM 4.0 Dental Edition control software and 3dLayer slicing tools, the system streamlines the entire workflow from STL file to sintered part. With a compact footprint (1.10m × 1.28m × 1.85m) and a user-friendly quick-change substrate system, the iDEN160(D) is the ideal partner for dental laboratories, milling centers, and medical device manufacturers seeking speed, precision, and reliability.

Key Features

High Speed, High Precision, High Quality

Laboratory setting showing gloved hands holding innovative 3D printed metal structures.
Forgecise Metal 3D Printers – SLM Series
Excellent as-built surface finish – Parts achieve good surface quality without post-polishing.
High dimensional accuracy – Ideal for producing precision prototypes.
Direct fabrication of metal end-use parts – Eliminates intermediate steps.
Fully dense metallurgical structure (>99% density) – Eliminating the need for post-processing.
Rapid build times – Parts can be completed depending on size and complexity.
Complex geometries made possible – Functional features such as snap-fits and living hinges can be printed directly.
Broad material compatibility – Supports a wide range of metal powders.
Perfect for custom, low-volume production – small-batch manufacturing.

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