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Selective Laser Sintering

(Total 5 Products)

  • High productivity metal Nylon printing

    USD 1 ~ 100

    Brand:FCE

    Min. Order:1 Piece/Pieces

    Transportation:Ocean,Land,Air,Express

    Packaging:Plastic molds packing methods: 1-Surface coated with anticorrosive paint 2-Wrapped with PE film 3-Fixed and sealed by wooden boxes

    Supply Ability:50 Set/Sets per Month

    Place of Origin:JiangSu

    Productivity:1000pcs/week

    The basic concept of SLS is similar to that of SLA. It uses a moving laser beam to trace and selectively sinter powdered polymer and/or metal composite materials into successive cross-sections of a three-dimensional part. As in all rapid prototyping...

  • Custom Nylon12 Nylon11 Rapid prototype SLS printed

    USD 1 ~ 100

    Brand:FCE

    Min. Order:1 Piece/Pieces

    Transportation:Ocean,Land,Air,Express

    Packaging:Plastic molds packing methods: 1-Surface coated with anticorrosive paint 2-Wrapped with PE film 3-Fixed and sealed by wooden boxes

    Supply Ability:50 Set/Sets per Month

    Place of Origin:JiangSu

    Productivity:1000pcs/week

    In this process, lasers are used to plastic powders and create solid 3D structures. The best feature of this process is that different kinds of objects having different characteristics can be produced. It is slightly affordable and feasible for...

  • Complex SLS 3D printed PA11 PA12 plastic

    USD 1 ~ 100

    Brand:FCE

    Min. Order:1 Piece/Pieces

    Transportation:Ocean,Land,Air,Express

    Packaging:Plastic molds packing methods: 1-Surface coated with anticorrosive paint 2-Wrapped with PE film 3-Fixed and sealed by wooden boxes

    Supply Ability:50 Set/Sets per Month

    Place of Origin:JiangSu

    Productivity:1000pcs/week

    In this process, lasers are used to plastic powders and create solid 3D structures. The best feature of this process is that different kinds of objects having different characteristics can be produced. It is slightly affordable and feasible for...

  • Fine Smooth metal Nylon SLS 3D printing

    USD 1 ~ 100

    Brand:FCE

    Min. Order:1 Piece/Pieces

    Transportation:Ocean,Land,Air,Express

    Packaging:Plastic molds packing methods: 1-Surface coated with anticorrosive paint 2-Wrapped with PE film 3-Fixed and sealed by wooden boxes

    Supply Ability:50 Set/Sets per Month

    Place of Origin:JiangSu

    Productivity:1000pcs/week

    In this process, lasers are used to plastic powders and create solid 3D structures. The best feature of this process is that different kinds of objects having different characteristics can be produced. It is slightly affordable and feasible for...

  • Widely used SLS rapid prototype printing

    USD 1 ~ 100

    Brand:FCE

    Min. Order:1 Piece/Pieces

    Transportation:Ocean,Land,Air,Express

    Packaging:Plastic molds packing methods: 1-Surface coated with anticorrosive paint 2-Wrapped with PE film 3-Fixed and sealed by wooden boxes

    Supply Ability:50 Set/Sets per Month

    Place of Origin:JiangSu

    Productivity:1000pcs/week

    In this process, lasers are used to plastic powders and create solid 3D structures. The best feature of this process is that different kinds of objects having different characteristics can be produced. It is slightly affordable and feasible for...

Selective Laser Sintering (SLS) was developed at the University of Texas in Austin, by Carl Deckard and colleagues. The technology was patented in 1989 and was originally sold by DTM Corporation. DTM was acquired by 3D Systems in 2001. The basic concept of SLS is similar to that of SLA. It uses a moving laser beam to trace and selectively sinter powdered polymer and/or metal composite materials into successive cross-sections of a three-dimensional part. As in all rapid prototyping processes, the parts are built upon a platform that adjusts in height equal to the thickness of the layer being built. Additional powder is deposited on top of each solidified layer and sintered. This powder is rolled onto the platform from a bin before building the layer. The powder is maintained at an elevated temperature so that it fuses easily upon exposure to the laser. Unlike SLA, special support structures are not required because the excess powder in each layer acts as a support to the part being built. With the metal composite material, the SLS process solidifies a polymer binder material around steel powder (100 micron diameter) one slice at a time, forming the part. The part is then placed in a furnace, at temperatures in excess of 900 °C, where the polymer binder is burned off and the part is infiltrated with bronze to improve its density. The burn-off and infiltration procedures typically take about one day, after which secondary machining and finishing is performed. Recent improvements in accuracy and resolution, and reduction in stair-stepping, have minimized the need for secondary machining and finishing. 

The main material for the SLS are the metal part or Nylon material which are commonly used in the industry or consumer fields. contact us to do the business, we are your best partner from beginning to end to give you the best service.

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