What is directional energy deposition method? What is DED? Let me explain it simply!
"What is Directed Energy Deposition (DED)?" We provide an explanatory diagram of Directed Energy Deposition (DED) for those responsible for gathering information on metal 3D printers! Directed Energy Deposition involves spraying metal powder into a melt pool created by a laser heat source, moving the melt pool along with the laser head, and repeatedly melting and solidifying to create a layered structure. Unlike typical metal 3D printers that have a powder bed, it fixes the base plate or pipes on a table with tilt (90°) and rotation (360°) functions for manufacturing. 1. Free-form manufacturing 2. Free-form manufacturing of complex shapes 3. "Additive" manufacturing to conventional machined parts 4. "Build-up" repairs (+ regrinding*) for worn-out parts (*The diagram is based on equipment from RPM Innovations and may not necessarily apply to all metal 3D printers using Directed Energy Deposition currently sold by various manufacturers. Please note.)
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basic information
【Device Lineup】 ■RPMI 557XR ■RPMI 222XR 【Device Specifications】 ◆ Maximum Build Size RPMI222XR: W 600 × D 600 x H 600 mm RPMI557XR: W 1500 x D 1500 x H 2100 mm ◆ 5-axis CNC Control (X / Y / Z / Tilt / Rotation Table) ◆ 2 / 3 / 4 kW IPG Fiber Laser ◆ Tool Path Code Generator ◆ Process Parameters: Open Access 【Compatible Materials】 ◆ Ti-6Al-4V ◆ SUS316L ◆ Inconel 718 ◆ Inconel 625 ◆ Cobalt Alloy-Chromium ◆ WC-Ni ◆ WC-Co ◆ Cu Alloy ◆ Al-Si10-Mg
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Aerospace, military, power generation, mining, gas and oil, automotive, others
Detailed information
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RPMI 557 XR The largest modeling size device in the RPMI XR series. ■ Maximum modeling size: 1500 x 1500 x 2100mm
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RPMI 222 XR The smallest device in the RPMI XR series. ■ Maximum build size: 600 x 600 x 600 mm
Line up(2)
Model number | overview |
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RPMI 557 XR | ■Maximum modeling size: 1500 x 1500 x 2100mm |
RPMI 222 XR | ■Maximum modeling size: 600 x 600 x 600 mm |
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Company information
As a technology trading company, we leverage our years of experience in the sales of various 3D printer devices with different molding methods and semiconductor manufacturing equipment, as well as in after-sales maintenance services, to provide our customers with total solutions, including application support. In the field of 3D printer devices, we handle the three main methods of metal additive manufacturing: electron beam powder bed, laser powder bed, and laser deposition, allowing us to make proposals suitable for our customers' applications. We also sell metal powders with high hardness and high wear resistance characteristics for metal 3D printers. Furthermore, in the field of semiconductor manufacturing equipment, we also handle atomic layer deposition (ALD) devices.