Nylon SLS Printing

Nylon SLS Printing

Nylon SLS Printing can realize parts with high strength and good mechanical properties. Because Nylon has a low relative density, it can achieve lightweight. Secondly, SLS printing does not require support, so it can realize a lightweight structure with complex internal features. What is the SLS...
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Product Details ofNylon SLS Printing

Shenzhen JR Technology Co., Ltd. is one of the leading manufacturers and suppliers of nylon sls printing in China, featured by quality products and good price. If you're going to buy advanced nylon sls printing made in China, welcome to get quotation from our factory. Customized orders are welcome.

 

Nylon SLS Printing can realize parts with high strength and good mechanical properties. Because Nylon has a low relative density, it can achieve lightweight. Secondly, SLS printing does not require support, so it can realize a lightweight structure with complex internal features.


SLS uses a high-powered laser to melt small particles of polymer powder. Since the unfused powder supports the part during printing, no dedicated support structures are required. This makes powder 3D printing ideal for complex models and geometries, including internal features, undercuts, thin walls, and negative features.

SLS PROCESS


The Materials Nylon SLS Printing?

Material

Characteristics

Polyamide 12 (PA 12)

+ Good mechanical properties
+ Good chemical resistance
- Matte, rough surface

Polyamide 11 (PA 11)

+ Fully isotropic behavior
+ High elasticity

Glass-filled nylon (PA-GF)

+ High stiffness
+ High wear & temperature resistance
- Anisotropic behavior

Carbon-fiber-filled nylon (PA-FR)

+ Excellent stiffness
+ High weight-strength ratio
- Highly anisotropic

Aluminum-filled nylon (Alumide)

+ Metallic appearance
+ High stiffness


sls nylon


nylon printing


Nylon SLS 3D printing Highlight

Mechanical behavior

The layers are barely discernible since the laser solidifies the polymer particles into a solid. Similar to (or better than) injection-molded parts in terms of strength and longevity. Parts made from industrial-grade materials, such as nylon with carbon fiber woven into it, are tough enough to survive challenging circumstances.


Complex Geometry Design

Engineers are also using SLS 3D printing because it can create intricate parts that would be impossible to make using conventional production techniques. Complex assemblies, which generally require numerous parts, can be combined by designers into a single element. This speeds up assembly and relieves stressed joints. Internal lattice structures can be used to build parts that are lighter while yet being strong.

Nylon SLS


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