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HBD 200Pro

The HBD 200Pro is a metal AM system designed for high-precision production, focusing on enhanced surface finish and finer printing detail. By upgrading the optical path and adopting a dual-laser configuration, it achieves a refined spot size and ultra-thin layer thickness. This significantly improves part density and surface quality, reducing the need for post-processing. Typical applications include consumer electronics, medical devices, and precision tooling/mold making.

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Structure & Features

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1Integrated Data Processing System
HBD data processing software enables the seamless creation of customizable print layouts with automated support structure integration, intelligent slicing, path scanning planning, and error rectification.
2Intelligent Powder Spreading Module
HBD 200Pro employs a high-strength structure to guarantee even and reliable powder distribution. This module optimizes layer consistency, crucial for achieving complex geometries and fine surface finishes.
3External Purification System Meeting H13 Standards
Equipped with an external purification system that connects in real-time to the host machine, ensuring high filtration efficiency meeting H13 standards, and featuring a filter lifespan of over 600 hours for uninterrupted printing operations.
4Dual Lasers Configuration
Configured with two fiber lasers, each delivering up to 500W, operating stably within a build volume of 265mm × 170mm × 120mm, maximizing production efficiency for small batches.
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HBD 200Pro

Want to dive deeper into the capabilities of the HBD 200Pro?

Download our product brochure to explore its full specifications, applications, and more.
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Print Case Studies

Micro Heat Exchanger

This 3D-printed micro heat exchanger integrates multiple components into a single, high-strength unit. Manufactured with a 20 μm layer thickness and 0.08 mm thin-wall structure thickness, it delivers efficient thermal performance while significantly reducing cost and lead time.

Anti-Scatter Tungsten Grid

The conventional manufacturing of tungsten anti-scattering grids by manual assembly is labor-intensive and inefficient. 3D printed tungsten anti-scattering grids can remarkably improve efficiency and ensure the accuracy. In addition, by adopting 3D printing technology, the weight of tungsten anti-scattering grids can be considerably reduced while the strength is maintained.

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Enhance Your Workflow with
Our Auxiliary Equipment
HBD 200Pro

Powder Sieving Machine

Achieve consistent powder quality with automated sieving and recycling, maximizing material reuse rate for critical metal AM processes.

Sawing Machine

Cut directly from build plates with precision, minimizing material loss for large-format metal AM parts.

Vacuum Cleaner

Ensure worksafety with the containment for reactive metal powders, featuring explosion-proof design and zero-residue recovery.

Vacuum Drying Oven

Remove moisture contaminants, preserving powder flowability and preventing hydrogen embrittlement.

Vacuum Heat Treatment Furnace

Eliminate oxidation while enhancing part density with precise thermal profiling for industrial-grade stress relief.

Technical Specifcations

Build Volume:
265mm x 170mm x 120mm (height incl. build plate)
Laser Power:
2 Lasers, 300W/500W
Layer Thickness:
10μm-40μm
Scanning Track Width:
≤ 35μm
Scanning Speed:
≤ 10m/s
Oxygen Content:
≤100PPM
Protective Atmosphere:
Integral sealed, automatic monitoring of oxygen content, recycling cleaning and collection coefficient ≥ 99%
Relative Density:
99.9%+
Typical Accuracy:
0.035-0.2mm
Metal Powder:
Titanium alloy, aluminium alloy, high temperature alloy, stainless steel, mold steel, pure tungsten, etc.
Process Parameter Configuration:
Tailored parameter set for the specific application, user-modifiable
Weight:
Est. 1250kg
External Dimensions:
2000mm × 1430mm × 2000 mm
Power Supply:
300W: AC220V, 50Hz, peak power ≤5kW, average power ≤3.5kW 500W: AC380V, 50Hz, peak power ≤6kW, average power ≤4kW

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