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Aluminum Metal Rapid Prototype 3D Printing
Aluminum Metal Rapid Prototype 3D Printing
Aluminum Metal Rapid Prototype 3D Printing
Aluminum Metal Rapid Prototype 3D Printing
Aluminum Metal Rapid Prototype 3D Printing
Aluminum Metal Rapid Prototype 3D Printing

Aluminum Metal Rapid Prototype 3D Printing

$0.1-80 /Piece/Pieces

Payment Type:L/C,T/T,Paypal
Incoterm:FOB,CFR,CIF,EXW,FAS,FCA,CPT,CIP,DEQ,DDP,DDU,Express Delivery,DAF,DES
Min. Order:1 Piece/Pieces
Transportation:Ocean,Land,Express,Air
Port:Ningbo,Shanghai,Shenzhen
Product Attributes

Types OfRapid Prototyping

Place Of OriginChina

3D Printing ProcessSLA / SLS /FDM /SLM /DLP /MJF

Materials Available- PlasticAbs resin / Nylon /PMMA ect.....

Materials Available-MetalSUS 316L /Aluminum alloy Alsi 10Mg /Titanium alloy Ti64 /Die steel 18Ni300 ect.

Drawing FormatsDrawing Formats

MOQ1 psc

Item3D Printing-Metal

Packaging & Delivery
Selling Units : Piece/Pieces
Package Type : wooden box / carton / tray / Custom way
Product Description

Aluminum Metal rapid prototype 3D Printing

PETG is relatively new and combines many aspects of PLA and ABS.SLM DMLS Stainless Steel 3D Printing Service requires very high temperatures, with nozzle temperatures between 220 and 250 °C. However, unlike ABS, PETG does not require a heated bed.PETG prints best with tape on the bed. Without it, the bed should be heated to 50 to 75 °C to ensure that the extruded filaments stick together. Since the material does not warp like ABS, the cooling fan can be enabled while printing. While PETG is not as easy to work with as PLA,SLM DMLS Stainless Steel 3d printing service has far less requirements than ABS, and it has proven to be one of the most popular filaments today.


SLM DMLS Stainless Steel 3D Printing Service


SLM DMLS Stainless Steel 3D Printing Service is able to process a variety of alloys, allowing prototypes to be functional hardware made out of the same material as production components. Since the components are built layer by layer, it is possible to design complex freeform geometries, internal features and challenging internal passages that could not be produced using conventional manufacturing techniques such as casting or otherwise machined. SLM produces fully dense durable metal parts that work well as both functional prototypes or end-use production parts.
The process starts by slicing the 3D CAD file data into layers, usually from 20 to 100 micrometers thick, creating a 2D cross-section of each layer; this file format is the industry standard .stl file used on most layer-based 3D printing or stereolithography technologies. This file is then loaded into a file preparation software package that assigns parameters, values and physical supports that allow the file to be interpreted and built by different types of additive manufacturing machines.

Aluminum SLM DMLS Printing Rapid Prototype

With selective laser melting, thin layers of atomized metal powder are evenly distributed using a re-coating mechanism onto a substrate plate, usually metal, that is fastened to an indexing platform that moves in the vertical (Z) axis. This takes place inside a chamber containing a tightly controlled atmosphere of inert gas, either argon or nitrogen at oxygen levels below 1000 parts per million. Once each layer has been distributed, each 2D slice of the part geometry is fused by selectively melting the powder. This is accomplished with a high-power laser beam, usually an ytterbium fiber laser with hundreds of watts. The laser beam is directed in the X and Y directions with two high frequency scanning mirrors and remains in focus along the layer utilising an F-Theta lens arrangement. The laser energy is intense and focused enough to permit full melting (fusion) of the particles to form a solid structure. The process is repeated layer after layer until the part is complete.
SLM DMLS Stainless Steel 3D Printing Service predominantly uses a high-powered Yb-fiber optic laser with standard laser powers ranging from 100 - 1000W. Inside the build chamber area, there is a material dispensing platform and a build platform along with a recoater system (blade or roller) used to evenly spread new powder across the build platform. . Parts are built up additively layer by layer, typically using layers 30-60 micrometers thick.

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