• No.1828 Xiangbin Road, Wenyan Street, Xiaoshan District, Hangzhou, Zhejiang, China
  • Hangzhou, Zhejiang, 310000
  • China
  • Tel:+86-571-83819589
  • Fax:+86-571-83819589
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Eplus3D Resin 3D Printing

Mga Printer, thermal transfer / thermal waks transfer

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Machines and Materials For Your Needs

Eplus3D sla 3d printing machines are available from entry-level models to big size machines for industrial grade rapid prototyping. With the advanced processes for industrial SLA 3D printing with the most various resin materials optional, including ABS like, casting, high-temperature resistance for variety of industries.

Types of Industrial SLA Printer

EP-A800 Resin 3D Printer

Large size parts & mass production solution resin 3D printer

Highlights:

Build volume 800 x 800 x 450 mm

Large Size, High efficiency, Great productivity

Patented Technology, Stable and Reliable, High Precision

Variety materials open system and meet diversified application requirements

User-friendly Software, Easy to operate

Software:

EP-Resin

EP-A650 Resin 3D Printer

3D printer stereo lithography

Highlights:

Build volume 650 x 600 x 400 mm

Stable & Reliable

High Efficiency &High Accuracy

Provide different processing parameter package

Remote control available

Software:

EP-Resin

EP-A450 Resin 3D Printer

3D printer stereo lithography

Highlights:

Build volume 450 x 450 x 350 mm

Patented VarioBeam technology

High-speed scan

Brand-new software brings one-click print and outstanding performance High accuracy & User-friendly

Software:

EP-Resin

Differences Between the Support Structures of SLA 3D Printer and Industrial Resin 3D Printer

In the realm of SLA, a crucial consideration arises during the design phase of parts. Objects must either be conceived in a manner that ensures they can support themselves throughout the printing process, or supplementary support structures have to be incorporated to sustain the integrity of the part during its fabrication.

The SLS approach introduces a novel dimension to the support aspect. In this method, the powdered material utilized for printing inherently bolsters the part as it is being constructed. This distinctive feature empowers the creation of intricate and multifaceted geometries and passageways that might otherwise be unfeasible to produce using the SLA technique.