
- Stock: Inquire availability
- Product code: 00-08800008
- Weight: 400.00kg
- SKU: F-SR-0002, S-DF-A3700
Available Options
Markforged Sinter-2
Buy the Markforged Sinter-2, a furnace for the Markforged Metal X and Markforged FX10 3D printer.
The high-performance, high-quality Sinter-2 oven effortlessly transforms brown (washed) parts into a nearly fully dense metal mold by heating to a specific material sintering temperature. Based on 30-year-old injection molding (MIM) technology, it is ideal for sintering larger parts and batch production. Several components can be sintered at the same time!
With its huge active hot zone (18,356 cm3), the Sinter-2 bed furnace matches the full volume of the Metal X printer. It is the ideal solution for large components or mass production. This furnace sinter the entire range of industrial metals from their brown (washed) state to fully dense metal parts.
The sintering furnace can be controlled via USB, network connection. The sintering data is also defined by Eiger software.
- Machine size: 1200*700*1500 mm
- Capacity: cylindrical diameter 305mm*305L
- Sintering volume: 18,356 cm3.
3D Printers
- Metal X
- FX10
- FX20
- X7 (Gen 2)
- X7 (Gen 2) Field Edition
- X7 (Gen 2) Field Edition Brochure
- Mark Two (Gen 2)
- Onyx Pro (Gen 2)
Additional Equipment
Materials
Metal
Markforged Metal Filaments combine the simplicity and safety of FFF printing with the superior properties of advanced metals, bringing metal 3D printing to your benchtop.
- 17-4PH Stainless Steel
- 316L Stainless Steel
- Copper
- H13 Tool Steel
- Inconel 625
- A2 Tool Steel
- D2 Tool Steel
Plastics
Composite Base filaments are engineering-grade materials that print using a conventional FFF (FDM-style) process. Print with them alone or with Continuous Fibers to yield strong parts. The ULTEM™ and 9085 trademarks are used under license from SABIC, its affiliates or subsidiaries.
Continuous Fiber
Continuous Fibers enable Markforged composite printers to print metal-strength parts. They cannot be used alone — however, when printed with a Composite Base, they form the backbone of a strong printed part.