Durable Material 3D Printer – SLS

Specifications

Print mode:

HD - High Definition UHD - Ultra High Definition XHD - Xtreme High Definition

Table size:

HD Mode: 11.75 x 7.3 x 8 in (298 x 185 x 203 mm) UHD & XHD: 8 x 7.3 x 8 in (203 x 185 x 203 mm) All printing Modes: 11.2 x 7.3 x 8 in (284 x 185 x 203 mm)

Resolution (xyz):

375 x 450 x 790 DPI; 32 μ layers 750 x 750 x 1300 DPI; 20 μ layers 750 x 750 x 1600 DPI; 16 μ layers

Accuracy level (typical):

±0.001-0.002 inch per inch (0.025-0.05 mm per 25.4 mm) of part dimension.

Materials:

VisiJet M3 CAST and M3 Hi-Cast

Support:

VisiJet S400

Operating system:

Windows® 7, Windows 8 or Windows 8.1 (Service Pack)

Output file format:

STL, CTL, OBJ, PLY, ZPR, ZBD, AMF, WRL, 3DS, FBX, IGES, IGS, STEP, STP, MJPDDD

Product Description

3D PRINTING TECHNOLOGY OF DURABLE MATERIALS SLS (SELECTIVE LASER SINTENING)

SLS 3D printer lines: ProX SLS 500; ProX SLS 6100; sPro 60 HD-HS; sPro 140; sPro 230 is researched and developed by 3D Systems (USA).

Officially Imported and distributed in the Vietnamese market by Scantech Vietnam Joint Stock Company since 2008. This is the perfect 3D printing technology for functional sample parts, complex replacement products with limited creation time Fast samples, durable mechanical materials. Low operating and production costs.

3D printing technology – Durable materials (SLS) is the only plastic powder printing technology among all 3D printing technologies that allows the creation of realistic prototype products with chemical and physical properties equivalent to the original material. High heat resistant applications and non-reactive to chemicals. Samples printed with this SLS technology are usually samples for functional testing, material testing or for immediate use in cases where replacement or repair is needed.

Functional models printed using 3D Printing Technology – Durable Materials (SLS)

PERFECT FOR FUNCTIONAL TESTING – QUICK PROTOTYPEING – NO SUPPORT REQUIRED

With Selective Laser Sintering (SLS) 3D printers from 3D Systems, you can perform rapid prototyping and create nylon parts with seven times the resolution of competing SLS 3D printers.
You can also rely on our line of SLS printers to reduce production costs, streamline testing and cut material waste.
SLS technology uses lasers to harden and bond small particles of nylon and elastomer materials into layers in a 3D structure.
SLS technology does not require a support structure like many other 3D printing technologies, but uses the powder layer itself to support the entire printing process, saving material costs and allowing faster printing.

LARGE PRINTING TABLE – HIGH RESOLUTION – FAST PRINTING SPEED

Printing speed is 5-10 times faster. Printing costs are 7 times lower than all other technologies.
Print multiple products in the same print run thanks to the ability to stack along the Z axis.
High capacity for continuous performance and long life. There are no limitations on the geometric size or profile of the object.

LOW OPERATING COSTS – REUSED MATERIALS

SLS material has the best mechanical properties of all materials, resistant to temperature, environment, physical impact, chemical impact… Besides, SLS material is very good for plaster casting. , titanium, aluminum and more, and is compatible with most standard casting processes. SLS has a wide range of materials to suit all your projects. The automated material handling system adopts a material quality control (MQC) system, which provides automatic filtering and continuous screening while ensuring material delivery to the printer. A new type of air-cooled laser eliminates the need for a chiller, delivering greater efficiency and reducing overall operating costs. Finished prints have a smooth surface and the highest resolution and resolution of any SLS system. Excess material after printing is sucked back and reused for subsequent prints.

WHICH APPLICATION IS IDEAL FOR THE PROCESS USING 3D PRINTING TECHNOLOGY – SLS DURABLE MATERIAL

SLS is ideal when you need durable 3D plastic parts.
While parts created by other additive manufacturing methods can become brittle over time, SLS 3D printers are capable of producing highly durable parts that serve as a supplier 3. And because SLS components are so powerful, they will compete with products made using traditional manufacturing methods and are already used in many end-use applications, such as:
Highly durable production parts for real-world testing and complex geometries
Parts are durable and can withstand high-energy and high-heat applications
Parts are subject to the effects of rigorous use
The part has a hinge/living hinge
Car design
Space components and ducts
Medical application
Tools, fixtures and tools
Fireproof parts
Molded model
Gaskets, seals and tubes
Low volume manufacturing solutions and large construction platforms

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