Fused Filament Fabrication – FFF
It is one of the most widespread 3D printing technology that delivers 3D products using thermoplastic materials. The heated thermoplastic material is extruded through a nozzle layer by layer on the print bed and the entire model is delivered.
Continuous Filament Fabrication
The continuous filament fabrication technology involves using a second nozzle to deliver continuous strands of composite fibers within the FFF-extruded thermoplastics while printing. Continuous fibers strengthen the printed part and give it a stiffer body.
ADAM (Atomic Diffusion Additive Manufacturing) Technology – Safety and Quality!
The Metal X printers are designed to use the ADAM (Atomic diffusion additive manufacturing) technology, an offshoot of the FFF technology. In this technological process, the metal powder is placed in a plastic binder and then extruded layer by layer. The printed model requires washing and sintering to remove the binder and encourage the fusion of metal powders. The ADAM technology is a safe and accessible process with a slightly relaxed work atmosphere
Stereolithography printing
SLA is based on the process of photopolymerization. SLA resin 3D printers employ laser rays to convert or cure the liquid resin into hard plastic. Parts manufactured through SLA printing are sharp-edged, and have a smooth surface finish with minimally visible layer lines. The SLA technology has widespread applications, including product design, medicine, jewelry, model making, education, engineering, and more
Selective laser sintering SLS 3D printing uses a high-powered laser to fuse small particles of polymer powder. This printing technology is ideal for products with interior features, undercuts, thin walls but with complex geometries. The unfused powder gives added support to the part during the printing process. SLS is preferred for functional prototyping and suitable for economical delivery for bridge manufacturing or short-run injection molding.
SLS for Composite 3D Printing
SLS, an advanced additive technology uses a laser to fuse powdered materials such as
polymers, and metals, layer upon layer to create 3D objects. The powder can be a combination of TPEs, TPUs, or nylon depending upon the characteristics required in the final product. EOS SLS technology is an all powerful solution that allows for the production of critical and complex functional parts using varied composite materials.
DMLS for 3D Metal Printing
DMLS is preferred for serial manufacturing of 3d metal parts for many industries. The major applications of DMLS 3D printing are medical, automotive, tools, turbomachinery and commercial aerospace. EOS is a major global provider of DMLS.
Phillips Hybrid Additive Fuses CNC Machine with Metal 3D Printing (DED) on a Single Platform.
Benefit from both additive and subtractive technologies with Phillips Additive Hybrid, powered by Haas. By combining the innovative laser metal Directed Energy Deposition (DED) technology of Meltio and world-renowned Haas CNC vertical machining centers, you get the best value additive hybrid machines on the market!
Meltio M450 is capable of creating intricate metallic components out of wire.
The capacity to create components out of wire ensures 100% material efficiency and exceptionally clean operation and material handling. M450 offers an affordable way to start using additive manufacturing for metal. Its cost of equipment and spare parts is far lower than that of competing technologies, and it can employ any commercially available metal wires on the market.
2onelab Metal 3D Printing Systems are Designed for High Precision, Small Scale Components Using Powder Bed Fusion Technology.
Engineered for lab and production environments, their compact systems deliver excellent material flexibility and part quality with minimal footprint. Offering compatibility with a wide range of metal powders including titanium and stainless steel 2oneLab machines bring reliable, research-grade metal AM to industries like medical, dental, and R&D. With easy setup, user-friendly interfaces, and scalable output, 2oneLab provides a cost-effective entry point into metal additive manufacturing without compromising performance.
INSSTEK MX Series Enables High-Performance Metal Additive Manufacturing Using
DED (Directed Energy Deposition) Technology.
With the ability to print complex metal parts using both powder and wire feedstock, INSSTEK systems offer unmatched flexibility in material use and repair applications. The MX-Series delivers precise multi material builds, real time coaxial monitoring and scalable options for R&D to industrial scale manufacturing. Designed for durability and process control, INSSTEK offers a powerful and versatile entry into advanced DED based metal 3D Printing.