Direct metal laser sintering dmls is an industrial 3d printing process that builds fully functional rapid metal prototypes and production parts in 7 days or less.
Metal laser sintering 3d printer.
A range of metals produce final parts that can be used for end use applications.
Dmls uses a laser to selectively fuse a fine metal powder in either stainless steel or aluminum materials.
Direct metal laser sintering is the most widely used metal 3d printing technology.
Sls 3d printing involves plastic polymer powders which are sintered using a laser inside the sls 3d printer.
Direct metal laser sintering dmls is one of the few 3d printing technologies that directly create a metal part from its 3d computer model.
As rapiwith fused deposition modeling the part is traced layer by layer to gradually create the finished part.
Streamlined metal parts with dmls utilize the design freedom of dmls and produce accurate metal components in less time than other manufacturing methods.
A range of metals produce final parts that can be used for end use applications.
Selective laser sintering is one of the main 3d printing technologies involved in 3d printing plastics.
Many major valuable 3d printing companies including 3d systems slm solutions concept laser and eos sell dmls metal 3d printers that are able to create incredibly intricate metal parts and 3d printed jewelry from precious metals.
Selective laser sintering sls is an additive manufacturing am technique that uses a laser as the power source to sinter powdered material typically nylon or polyamide aiming the laser automatically at points in space defined by a 3d model binding the material together to create a solid structure.
Direct metal laser sintering dmls is an additive 3d metal printing technology that builds prototype and production metal parts from a cad file producing complex geometries without the need for tooling.
Metal 3d printing is an ideal process for complex oil and gas components custom medical guides part consolidated aerospace parts and tough functional prototypes.