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- Material certification included
- Mutual NDA before any file or spec review
EOS M400 HIPed Ti64 Build Plate | M400 HIPed Ti64 Build Platform
What your process engineer actually checks
Flat, stable, and ready for production
Every build plate is manufactured from certified material, precision-machined, and inspected before shipment. Critical dimensions, flatness, thickness, and mounting features are verified to ensure reliable installation and repeatable print results.
Machine-ready compatibility
Build plates are available for EOS, Renishaw, SLM Solutions, Nikon, Trumpf, Additive Industries, and other metal AM platforms. Need a custom mounting pattern or proprietary format? We can manufacture to your drawing.
The M400 HIPed Ti64 Build Platform is produced via powder metallurgy and hot isostatic pressing (HIP), ensuring 100% density and compliance with AMS 4994A. Designed specifically for titanium LPBF production on EOS M400 systems, this HIPed titanium build plate minimizes internal porosity, eliminates micro-voids, and provides a fine-grain microstructure for superior mechanical integrity.
With its large 360×400mm surface and full 76.2mm thermal mass, this titanium HIPed build platform delivers exceptional heat distribution during extended build cycles. The result is reduced warping, lower residual stress, and consistent first-layer adhesion across the entire build area.
For aerospace and medical manufacturers, the M400 HIPed Ti64 Build Platform is critical to maintaining material traceability and preventing iron contamination that can occur when printing titanium on steel plates.
Manufactured in California, USA, this platform is built for demanding, certified production environments.
Key Features & Benefits
- Large Format 360×400mm Build Area: Utilize the full capacity of your M400 system for larger titanium components or multiple parts in a single build, maximizing productivity and reducing cost per part.
- Hot Isostatically Pressed Ti-6Al-4V: HIP processing eliminates internal porosity and micro-voids, significantly enhancing fatigue resistance and extending service life under demanding production conditions.
- Full 76.2mm Thermal Mass: Provides exceptional thermal stability throughout extended build cycles, minimizing distortion and residual stress in large-scale titanium components.
- Critical for Material Certification: Essential for aerospace and medical applications where iron contamination must be avoided and full material traceability is required.
- Precision-Ground Surface: Machined to exacting flatness standards to ensure perfect first-layer adhesion and consistent performance across the entire large build area.
Country of Origin: USA, CA
APPLICATIONS
Ideal For:
- Aerospace: Large structural components, engine parts, and airframe structures
- Medical: Multiple implants per build or large surgical guides and instruments
- Industrial: Large-scale prototypes, automotive racing components, and marine applications
- Service Bureaus: Maximizing throughput and ROI on M400 systems
Hot isostatic pressing (HIP)
Hot isostatic pressing (HIP) is a materials fabrication process in which a starting powder or a remolded shape is simultaneously subjected to both high temperatures and high isostatic pressures, using a gas transfer medium.
This technique has developed from an invention conceived before the 1960s, used initially for the primary purpose of fabricating clad nuclear fuel elements and referred to as “gas pressure bonding”.
Today, it is employed for a broad range of metallic and nonmetallic materials. The three most common industrial applications are post densification of cemented carbides, sintering of specialty steels and the healing of super alloy and titanium castings.

| Brand | Additive Plus |
| Country of origin | USA |
| Platform | M400 |
| Material | Ti-6Al-4V Grade 5 (TC4) |
| Package | 1 plate, 10 plates, 5 plates |
| Dimensions | 14.173×15.748×2.9 in, 360×400×73.66 mm |
We manufacture custom build plates.
Custom dimensions, mounting holes, threaded features, alignment pins, edge chamfers, engraved identification, or special surface requirements. Production-ready custom plates delivered in as little as 2–3 weeks.
Complete the workflow
Request a custom quote — we manufacture precision build plates for most metal AM systems.
Request a custom quote — we manufacture precision build plates for most metal AM systems.
- ✓ 316L — stronger pitting and chemical resistance than 304 stainless
- ✓ Precision-ground flatness for consistent first-layer adhesion
- ✓ Made to order — choose your speed below: Express 2–3 wks, or Standard 6–8 wks (save ~45%)
Need a titanium build platform for a different printer model or custom dimensions? Request a custom quote — we manufacture precision titanium build plates and additive manufacturing platforms for most metal AM systems.
The SLM 280 SS304 Build Platform is a precision-ground stainless steel build plate engineered for reliable LPBF production. Manufactured from high-grade 304 stainless steel and designed as a direct OEM-compatible solution, this SLM 280 metal build plate delivers excellent flatness, thermal stability, and repeatable first-layer performance for industrial additive manufacturing.
Need a custom steel build platform for another printer or alternative thickness? Request a custom quote — we manufacture precision stainless steel and specialty alloy build plates for most industrial LPBF systems.
Need a custom stainless steel build platform or alternative alloy for your LPBF system? Request a custom quote — we manufacture precision steel and specialty alloy build plates for most industrial metal 3D printers.
Need a HIPed titanium build platform for a different printer model or custom dimensions? Request a custom quote — we manufacture precision HIPed titanium build plates and additive manufacturing platforms for most metal AM systems.
The SLM 280 HIPed Ti64 Build Platform is manufactured via powder metallurgy and hot isostatic pressing (HIP) to deliver a fully dense, fine-grain titanium structure compliant with AMS 4994A. Designed for critical LPBF production, this HIPed titanium build plate for SLM 280 ensures superior thermal stability, minimal warping, and exceptional precision for aerospace, medical, and industrial applications.
Other products teams run alongside EOS M400 HIPed Ti64 Build Plate | M400 HIPed Ti64 Build Platform
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In stock
From process engineers running EOS M400 HIPed Ti64 Build Plate | M400 HIPed Ti64 Build Platform
Unedited feedback from customers who reorder EOS M400 HIPed Ti64 Build Plate | M400 HIPed Ti64 Build Platform.
Reliable quality, responsive engineering support, and fast turnaround. That's why we've continued ordering from them.
We needed a non-standard hole pattern and a tight delivery window. The team delivered both without compromising quality.
The plate arrived ready to install. Dimensions, flatness, and surface finish were exactly what our process required.
Common questions
Don't see yours? Email [email protected] — NDA standard, typical reply within 4 hours.
How does the M400 HIPed Ti64 Build Platform improve fatigue resistance compared to a standard titanium build plate?
Why is a HIPed titanium build platform critical for certified aerospace manufacturing?
How does the 76.2mm thickness of the M400 HIPed Ti64 Build Platform affect thermal stability?
Can the M400 HIPed Ti64 Build Platform be manufactured from customer-supplied powders?
Is the M400 HIPed Ti64 Build Platform compatible with all EOS M400 titanium processes?
How does HIP processing improve the microstructure of the titanium build platform?
Can custom sizes and thicknesses be produced for the M400 HIPed Ti64 Build Platform?
What industries benefit most from the M400 HIPed Ti64 Build Platform?
Place your order, or talk to an engineer first
Order EOS M400 HIPed Ti64 Build Plate | M400 HIPed Ti64 Build Platform direct, or talk to materials engineer
Get a quote — response in under 24h
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- Free DfAM & material recommendation ($150 value)
- Free U.S. shipping (no minimum on first order)
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