Direct Writing 3D Printer - Standard Version

  • 1

    Classic Printing Technology

    Utilizes internationally recognized moldless Direct Ink Writing (DIW) technology.

  • 2

    Intelligent 3D/4D Print Path Planning

    Self-developed “ADT-Slicer” and “CAD-Slicer” software for easy 3D and 4D printing.

  • 3

    Higher Precision

    Improved repeatability and motion resolution.

  • 4

    Large Print Size

    Maximum dimensions of 150 x 150 x 150 mm, enabling large sample printing.

  • 5

    Wide Material Compatibility

    Compatible with ceramics, biomaterials, silicone, etc.
    making it a powerful tool for material research.

Why Choose Our Ceramic 3D Printing Solutions

Precision Printing

Precision Printing

Achieve unparalleled accuracy in ceramic 3D printing for complex geometries and intricate designs.

Dental Printing

Dental Printing

Create precise dental restorations, implants, and prosthetics with advanced ceramic 3D printing.

Medical Ceramics

Medical Ceramics

Produce biocompatible ceramic components for medical implants and surgical tools.

High-Quality Materials

High-Quality Materials

Utilize advanced ceramic materials for durable and high-performance components.

Eco-Friendly

Eco-Friendly

Sustainable printing methods reduce waste and environmental impact.

Versatile Applications

Versatile Applications

From aerospace to medical, our technology supports diverse industry needs.

Product Introduction

Product Introduction

Self-Developed Control Software

Self-Developed Control Software

Equipped with our proprietary ADT-Slicer software for precise control, allowing for "one-stroke forming" to achieve efficient and stable printing results. Paired with the CAD-4D printing engine for easy implementation of 4D printing.

Higher Precision

Higher Precision

Compared to the entry-level version, the standard version offers higher repeatability, ensuring exceptional precision for each print. It is suitable for high-end research and applications that require strict accuracy.

Multi-Material Printing

Multi-Material Printing

Supports complex multi-material printing tasks, allowing the use of various materials to print multiple models in a single job. This capability meets laboratory needs for research ranging from biological sciences to ceramic materials.

Printing Case

For more case and model information, please contact us
Direct Writing 3D Printer - Standard Version
Direct Writing 3D Printer-Standard Version
Equipment nameDirect Writing 3D Printer-Standard Version
Equipment typeADT-3D-LB-Printer-0015ADT-3D-LB-Printer-0005
Equipment size590×470×750mm590×470×750mm
Forming space120×120×120mm150×150×150mm
Motor typeDc servo-silent
Transmission structureC-level mute moduleP-level mute module
Guide rail modelEmbedded integrated guide
Repeatability±15μm±5μm
XY linewidth motion resolution≤2μm≤0.5μm
Layer thickness resolution≤2μm
Number of extruder heads2
Base heatingUp to 60°CUp to 80°C
Extrusion head heatingUp to 60°CUp to 80°C
UV curing-
UV light source power PWM modulation-
UV light source power-Standard configuration 0.6W (optional 1.5W)
UV light selectable-Standard configuration 405nm (optional 365/385nm)

Equipment Printing Process

Equipment Printing Process

Constructing Magnetic Field Controlled 4D Photonic Crystals

Magnetic Field-Controlled 4D Photonic Crystals via Adventure-3D-LB-Printer Fine Direct Write 4D Printing
Constructing Magnetic Field Controlled 4D Photonic Crystals

Constructing μm-Scale THz Photonic Crystals

μm-Scale Photonic Crystals Fabricated by Adventure-3D-LB-Printer Fine Direct Write 3D Printing
Constructing μm-Scale THz Photonic Crystals

FAQ: 3D Ceramic Printer

This desktop ceramic 3D printing machine measures 605×510×850mm, making it highly suitable for compact laboratory environments, research institutes, and space-constrained production facilities.

The printer offers a build size of 96×54×90mm, which is ideal for producing high-resolution ceramic components, UV-curable microstructures, and functional ceramic prototypes with tight tolerances.

The system features a 1920×1080 DLP projection engine with an optical resolution of 50μm, allowing precise fabrication in advanced ceramic 3D printing workflows such as microfluidics, biomedical scaffolds, and dielectric components.

This DLP-based ceramic 3D printer operates at a UV light wavelength of 405nm, compatible with a wide range of light-sensitive ceramic slurries and photopolymer resins commonly used in high-performance ceramic fabrication.

Under full-exposure conditions, this lab-scale ceramic 3D printer can reach speeds up to 700 layers per hour, making it one of the most efficient compact systems for rapid ceramic prototyping and small-batch fabrication.

To print a 1mm-thick sample, an initial ceramic slurry volume of 250mL is needed. This supports cost-effective material use in experimental ceramic printing setups.

The ADT-3D-ZM-Ceramic-96-50 supports various UV-curable ceramic 3D printing materials, including alumina (Al₂O₃), zirconia (ZrO₂), silicon carbide (SiC), and custom ceramic-polymer composites, making it adaptable for a broad range of technical ceramics applications.

This model is ideal for academic research, biomedical device prototyping, electronic ceramics, and custom component production. It is a trusted choice among users seeking a high-resolution ceramic 3D printer for laboratory and R&D purposes.

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