3DCR-LCD-180 Ceramic 3D Printer, Max Build Volume: 165*72*170 (mm) (CAT#: STEM-TDP-0063-LC)

Highlights

High Printing Precision
Achieving optical resolution up to 14K, this technology is particularly adept at producing parts or products with intricate details.

Cat Number: STEM-TDP-0063-LC

Application: For 3D printing

Model: 3DCR-LCD-180




Description

The 3DCR-LCD-180 is a ceramic 3D printer that utilizes LCD technology.

With an optical resolution reaching up to 14K, it offers exceptionally high detail resolution for producing parts or products that require intricate details.

This printer can be applied in various sectors, including the aerospace industry, automotive industry, the production of chemical reaction containers, electronic ceramics manufacturing, medical fields, arts, and high-end customized ceramic products, among others.

Specification

Max build volume: 165*72*170 (mm)
Printing speed: 80mm/h

Features

High Printing Precision
Achieving optical resolution up to 14K, this technology is particularly adept at producing parts or products with intricate details.

Specialized in Small High Parts
Capable of printing larger components, particularly effective for taller designs while minimizing material usage.

Self-developed Material
Featuring a unique alumina ceramic slurry developed in-house, this material boasts low viscosity and a high solid content (80%wt) to enhance fluidity. Once cured, the strength and bonding between layers are robust enough to withstand repeated lifting and pulling by LCD equipment without causing interlayer cracks.

Wide Application
This technology has extensive potential applications across dentistry, crafts, and industrial sectors.

Less Material Required
Optimized for 405nm ceramic slurry, this specially formulated alumina ceramic slurry maintains low viscosity and a high solid content (80%wt) to support its fluidity.

High Temperature Resistance
The green products exhibit a temperature resistance of approximately 300℃ prior to sintering, demonstrating excellent hardness, making them suitable for use as high-temperature resistant prototypes or products.
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