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Mastrex MX-400 Metal 3D Printer
MX-400
Large-Format Quad-Laser Metal 3D Printing
The Mastrex MX-400 is a large-format Laser Powder Bed Fusion (LPBF) metal 3D printer for industrial-scale manufacturing, advanced training, and applied research. Its 15.75 × 13.78 × 15.75-inch build volume, four 500 W lasers, and integrated powder-circulation workflow support large parts, high-density builds, and production-oriented projects.
Learners can study workflows that include large-format build preparation, quad-laser operation, powder circulation, depowdering, material recovery, post-processing, inspection, and production documentation. Tech-Labs provides the MX-400 as a training solution manufactured by Mastrex.
Large-Format LPBF Platform
Support large parts, high-density builds, and industrial-scale project planning within an expansive build volume.
Quad-Laser Throughput
Introduce learners to coordinated processing with four lasers providing full coverage across the build platform.
Integrated Powder Workflow
Connect printing, sieving, depowdering, and material recovery within a more automated, contained production workflow.
Prepare teams for industrial-scale metal additive manufacturing with large-format capacity and quad-laser speed.
Hands-On Metal Additive Manufacturing Skills
When supported by the program's curriculum and operating procedures, the MX-400 can help learners develop skills in:
- Explaining LPBF technology and the role of quad-laser processing
- Preparing and reviewing large-format, production-oriented metal additive builds
- Planning large parts and high-density batch layouts
- Configuring, operating, and monitoring a quad-laser LPBF system
- Explaining laser coordination, calibration, and full-platform coverage
- Relating layer height, beam diameter, build rate, and scan speed to production goals
- Understanding integrated powder circulation, sieving, depowdering, and recovery
- Planning heat treatment, part removal, inspection, and quality documentation
- Evaluating surface finish, dimensional results, and build consistency
- Production-scale metal additive manufacturing
- Advanced and industrial manufacturing
- Manufacturing and mechanical engineering technology
- Materials science and metallurgy
- CAD and design for additive manufacturing
- Aerospace, automotive, energy, and industrial applications
- Medical-device manufacturing concepts
- Applied research and process development
- Large-part and batch-production instruction
- Industrial automation and powder-workflow training
- Workforce upskilling and incumbent-worker training
Large Build Volume
A 15.75 × 13.78 × 15.75-inch build volume supports large components, high part counts, and industrial-scale build layouts.
Four 500 W Lasers
Four synchronized lasers provide full-platform coverage for higher-throughput large-part and batch production.
Integrated Powder Loop
Mastrex says its internal workflow handles sieving, depowdering, and material recycling to reduce manual intervention.
0.0008–0.0047 in. Layer Range
Instructors can explore how layer thickness affects surface finish, detail, build time, and productivity.
Material Flexibility
Mastrex lists titanium alloy, stainless steel, aluminum, cobalt-chromium alloy, copper alloy, and additional compatible materials.
Integrated Touchscreen Computer
A centralized interface supports machine control, workflow monitoring, instructor demonstrations, and supervised operation.
- Built-in computer with touchscreen
- Three build plates
- Tool set
- Professional on-site installation and training
- Two-year warranty
- Lifetime support
Confirm transport, rigging, the final configuration, installed dimensions, site requirements, electrical service, service scope, and included items with Tech-Labs before installation.
Mastrex lists the following accessories as optional. Because the MX-400 also includes an integrated powder-circulation workflow, confirm which external powder-handling accessories are required for the final configuration.
- Heat-treatment oven: Supports post-build stress relief and application-specific heat-treatment workflows.
- S400 sieving machine: Supports recovery and reuse of metal powder within an approved material-handling workflow.
- DPS400 automatic depowdering machine: Uses controlled rotation, vibration, and airflow to remove loose powder from printed parts while reducing manual handling.
- Powder-collection system: Supports routine printer cleaning with filtration and a stainless-steel collection container.
- Closed-loop powder-handling system: Connects the printer with sieving and depowdering equipment to support contained powder transfer.
Mastrex identifies professional on-site installation and training. Its product page does not identify a packaged academic curriculum, student workbooks, assessments, eLearning library, LMS integration, or credential alignment.
Programs should plan to integrate the MX-400 into their own additive-manufacturing curriculum or confirm additional instructional resources with Tech-Labs during project planning.
The MX-400 combines large-format build capacity, four 500 W lasers, and an integrated powder workflow for industrial-scale training and production development.
Print Technology
Laser Powder Bed Fusion (LPBF)
Build Volume
15.75 × 13.78 × 15.75 in.
Laser Power
4 × 500 W
Layer Height
0.0008–0.0047 in.
Supported Materials
Titanium alloy, stainless steel, aluminum, cobalt-chromium alloy, copper alloy, and more
Maximum Scan Speed
4 × 23 ft/s
Maximum Build Rate
8.54 in³/h
Laser Beam Diameter
0.0028–0.0047 in.
Machine Dimensions
135.43 × 50.00 × 98.43 in.*
Weight
9,260 lb
Voltage
208–480 V
*Dimensions are based on the dedicated Mastrex MX-400 product page. Confirm the installed footprint and access requirements with Tech-Labs during site planning.
More Information
Product specifications and configuration details should be confirmed with Tech-Labs. Learners should follow institution-approved procedures for metal powder handling, equipment operation, personal protective equipment, housekeeping, and emergency response.
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