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Gli uffici e il magazzino di Crea3D rimarranno chiusi dal 10 al 25 Agosto 2024. Gli ordini effettuati in queste date verranno elaborati a partire dal 26 Agosto 2024.
Raise3D RMF500
Flexible Manufacturing Productivity for Composite End-Use-Part Based on FFF Process
The RMF500 is a reliable, precise, and flexible 3D printer that produces high-performance end-use parts with repeatability, making it an excellent option for small batch manufacturing, as well as for other applications.
The RMF500 is specialized in printing complex workpieces with a high strength-to-weight ratio in a single job, using fiber-reinforced thermoplastics. Raise3D ensures performance from each filament spool, in addition to continuously expanding material choices.
Expanding Filament Spool& Certification
Raise3D’s Open Filament Program (OFP) continuously collaborates with third-party filament manufacturers to identify and select top-performing filaments for Raise3D printers. OFP has now entered phase 2.0, with certified industrial-grade filaments with specific mechanical properties and guaranteed enhanced performance.
Filament Cartridge
The RMF500 has four large, multipurpose filament cartridges, with each cartridge having a maximum load of 2.5kg, enabling automatic switching and positive pressure humidity control below 5% RH.
High-Grade Nozzle Hardness
The RMF500 uses silicon carbide nozzles with a hardness of over 60 HRC to resist abrasion from carbon fiber and glass fiber materials.
Specialized Support Material
Each Raise3D fiber-reinforced filament is developed with a paired support material. For example, the breakaway support filament for PA12 CF can easily break away, resulting in a clean overhang surface.
Thanks to the RMF500’s FFF technology, this 3D printer features repeatable positioning accuracy, consistent extrusion flow, a high print speed, and a huge build volume. These features enable the RMF500 to deliver large batches or workpieces in a highly efficient manner.
Linear Motor for Speed and Precision
The RMF500 uses a linear motor-driven system, with a 1μm synchronized closed-loop system, which overwhelms traditional system with belts, pulleys, and leadscrews. This linear motor-driven system gives the RMF500 an acceleration of 2G and a speed over 1000mm/s2.
Huge and Reliable Build Size
The RMF500’s build volume is of 500x500x500mm, for both single and dual extruder printing. Its vacuum manifold platform is installed with a PEI building plate with pressure detection to deliver worry-free startup and easy removal of prints.
High Performance IDEX
The RMF500’s independent extrusion systems (IDEX) are manufactured using high-temperature alloys and industrial ceramic composite materials. Each extruder has a heating capacity of up to 300 W, ensuring a stable and high extrusion rate of up to 500 g/hr.
Heavy Duty Structure
An all-steel structure frame grants the RMF500 high capacity and performance. The RMF500 has high-grade hardness steel for low clearance linear guides, a Z-axis with a maximum load limit of over 100kg, and a 50% lower error deflection.
The RMF500 is designed to achieve the maximum cost-efficiency in terms of material performance vs the process cost. The effective application of material science resulted in the optimization of the system’s design with a much lower energy consumption.
Science of Fiber-Reinforced Thermoplastic
The Raise3D material science team can produce composite filaments with significantly improved thermal and mechanical properties, by reinforcing thermoplastic with fibers. Fiber-reinforced filaments have high printability and require an environment that does not have to be as hot as with other printing materials.
Non-Heated Chamber
Without a heated chamber, peak power consumption is less than 3kW. The average power consumption per unit printing area is 60% lower than competitors.
Filament Cost
Raise3D fiber-reinforced filaments are competitively priced, making additive manufacturing with fiber-reinforced thermoplastics more accessible.
Printer Hardware |
Print Technology | Fused Filament Fabrication (FFF), Powered by Hyper FFFTM |
Build Volume (W × D × H) | 500 × 500 × 500 mm in normal printing mode Maximum Length on the Diagonal=707 mm (27.8 inch) |
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Extrusion System | IDEX (Independent Dual Extruders), Auto Nozzle Wiping, Filament Run-out Detection |
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Max Nozzle Temperature | 330 ºC | |
XYZ Positioning Resolution (XYZ Step Size) |
1, 1, 0.09765 micron | |
Print Head Speed/Acceleration | Up to 500 mm/s Speed and Up to 15000 mm/s2 Acceleration | |
Build Plate | Spring Steel Plate, Soft Magnetic Adsorption, Auto Bed Leveling | |
Build Platform Temperature | Up to 110ºC | |
Nozzle Diameter | 0.4 mm (Default), 0.6 mm (Coming Soon) | |
Filament Feeding | Auto Filament Switching, Build-in Drying System | |
Materials | Filament | 1.75 mm diameter. Load four 1 kg or 2.5 kg filaments (2 filaments for 1 nozzle) |
Raise3D Hyper Core Filaments (For high-speed Printing) |
Hyper Core ABS CF15, Hyper Core PPA CF25 Coming Soon: Hyper Core PPA GF25 |
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Raise3D Hyper Speed Filaments (For high-speed Printing) |
Hyper Speed ABS, Hyper Speed PLA | |
Raise3D Industrial Filaments | Industrial PET CF, Industrial PET Support Coming Soon: Industrial PPA CF, Industrial PPA Support, Industrial PPA GF, Industrial PET GF, Industrial PETG ESD |
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3rd Party Filaments | Supported by Open Filament Program through Validation | |
Software and Network |
Connectivity | Wi-Fi, LAN, USB port, Live camera |
Network | Ethernet, Wireless 802.11 b/g/n, 2 × 2 MU-MIMO WLAN | |
Display | 33.8cm (13.3 inch) Color Touchscreen (1920 × 1080) | |
Slicing Software | ideaMaker | |
Supported File Types | STL/ OBJ/ 3MF/ OLTP | |
Supported OS | WINDOWS/ macOS/ LINUX | |
Operation and Shipping |
Power Supply Input | 3-Phase 380 V AC 25 A |
Operating Ambient Temperature | 15 - 30 °C, 30 - 70 % RH Non-Condensing (HOLD) | |
Storage Temperature | -40 to 54 °C, 10 - 85 % RH Non-Condensing (HOLD) | |
Machine Size (W × D × H) | 1340 × 990 × 2370 mm | |
Weight | Net Weight: 790 kg Gross Weight: 1048.1kg |
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Shipping Dimensions | 1800 × 1160 × 2260 mm |
No customer reviews for the moment.