Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D
Componenti di stampa FJM di stampa 3D

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Componenti di stampa FJM di stampa 3D

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place of origin : China
3yrs

Ningbo, Zhejiang, China

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Descrizione del prodotto

3D printing FJM printing components


Prouduct Description:

Our 3D printing service consists of six 3D printing technologies to produce plastic, metal, and elastomeric parts. With more than 30 3D printers, we have unmatched capacity that reliably delivers parts within days.In addition to a broad material selection, we offer several post-processing options to improve cosmetics or enhance mechanical properties.

Info Veloci:

Printing technology

Materials

Max Part Size

Min Feature Size

Tolerances

Metal 3D Printing

Aluminum
Stainless Steel (17-4, 316L)
Titanium
Inconel
Cobalt Chrome
Copper

245mm x 245mm x 330mm

Inconel: 400mm x 800mm x  500mm

0.1524mm

±0.076mm

Stereolithography

ABS
PMMA

800mm x 800mm x 40mm

0.0634mm

±0.0508mm

Selective Laser Sintering

Nylons
Polypropylene
TPU

482mm x 482mm x 431mm

0.762mm

± 0.254mm

Multi Jet Fusion

Nylons

281mm x 378mm x 378mm

0.508mm

±0.305mm

PolyJet

Elastomer (30A to 95A)

490mm x 391mm x 200mm

0.305mm

±0.127mm

Carbon DLS

ABS
Polypropylene

89mm x 118mm x 326mm

0.508mm

±0.254mm

Available 3D Printing Materials

Metals Plastics Elastomers

Alluminio addominali TPU

Rame P A (Nylon)

Inconel Polycarbonate

Titanio Polypropylene

Tipo di servizio:

1. Metal and Plastic Rapid Prototype
2. CNC Machining Parts: Turning, Milling, Stamping, Bending, Tapping, Riveting, Gear cutting, Wire-cutting, etc.
3. . SLA & SLS&SLM&FDM&MJF 3D Printing
4. Industrial design, 2D & 3D drawings design
5. Silicone mold, Vacuum casting Service

Place of Origin:Zhejiang, China

Material:ABS, plastic, resin, nylon,carbon fiber nylon

Surface treatment:Sanding, Polishing, Stress relieving, Sealing, Painting

Application:Electrical,Automotive,Industrial Equipment

Equipment:stratasys 3d printer service

Package:Polybag+Carton

Tolerance:100mm+-0.2mm,100mm+-0.2%mm

File Format:Stl .igs .stp .obj

Lead time:1-5 Days

Standard:ISO9001

Size:Customized Size

Laser Melting, SLM : SLM fully melts the powder, and therefore it needs to reach a higher temperature than this other metal 3D printing technique. The printing process then fuses metal powder particles in a full melting process. Then the process stays the same, a laser comes to sinter the powder and creates a solid object layer by layer

Laser Sintering or SLS : This 3D printing technique creates objects by sintering the powder inside the printer, using a laser. During this layer by layer process, the powder bed is preheated and a laser sinters the powder according to the 3D model to create the solid object.

Stereolithography, or SLA : Stereolithography the first 3D printing technique ever created. This resin additive manufacturing process us using photochemical processes. It uses liquid photopolymers that can be cured. The build plate moves down in small increments and the liquid polymer is exposed to light where the UV laser draws a cross-section layer by layer. The process repeats until the object is printed.

Fused Deposition Modeling or FDM : This 3D printing method is well-known by hobbyists, but also in education. FDM 3D printers are using one or two print heads for the deposition of melted 3D printing material. The material is melted and extruded through a nozzle, to create the desired object each layer at a time. FDM is mostly known for being a plastic 3D printing technique, but it is now possible to use it to print metal materials for example.

Multi Jet Fusion or MJF is an industrial 3D printing process that produces functional nylon prototypes and end-use production parts in as fast as 1 day. Final parts exhibit quality surface finishes, fine feature resolution, and more consistent mechanical properties when compared to processes like selective laser sintering.



RAPID PROTOTYPE PICTURE










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