Nauta+ Software

DWS srl · source

Nauta+ Software: Core Features and Optional Add-Ons

NAUTA+ is a 3D editor developed by DWS to support high-quality and reliable 3D printing. It automatically detects errors in your 3D files and generates optimized support structures.

You can arrange multiple objects in the same print area to increase productivity and material efficiency.

The software also includes essential tools like object duplication, rotation, translation, and quick access to object details.

Flexible Support Generation Options

NAUTA+ lets users create support structures either manually or semi-automatically, making it suitable for both experts and beginners.

It includes a patented Lattice System for support generation.This structure reduces material consumption and print time.

The Easy Break System automatically generates supports that are fast and easy to remove after printing.

3D File Checking and Optimization for Printing

Detection of errors in your 3D files and generation of support structures.

Patented Lattice System

Optimization of material usage and printing time.

Grid Support

Enables creation of support grids for particularly complex shapes.

Easy Break

Ensures quick and precise removal of the supports after printing.

Parametric Tools with Real-Time Feedback

NAUTA+ is a parametric tool that lets you adjust settings at any time.
The software instantly recalculates the result, giving you real-time visual feedback.

You can link parameter sets to specific materials or 3D printers.

This flexibility makes NAUTA+ essential for getting the most from your DWS 3D printers.

Nauta+ Add-ons Available On Demand

The advanced modules for Nauta+, available under a specific license, are designed to automate the traditional production workflow, optimize part fabrication through 3D printing, and assist the user in designing the build plate layout.

The advanced modules include:
Xcluster, which enables the creation of patented "casting trees" along with their castable materials, for use in the investment casting process.
Xcluster Chain, which allows the generation of chains starting from the geometry of the links and their respective casting trees, enabling fast and precise production.

XCluster

This module enables high efficiency in the metal part production process by creating casting trees in castable materials through 3D printing, using a patented structure designed to hold a large number of objects while ensuring a shape that supports high casting quality.

Thanks to the parametric nature of Nauta+, dimensions, number of objects, shape, sprue channel diameter, and much more can be modified in real time, allowing for countless configuration options in just a few moments. It is also possible to create a casting tree composed of geometries that are all different from one another.

XCluster Chain

The dimensional accuracy of DWS 3D printers allows for the creation of interlinked objects, eliminating the need for post-production welding.

Similar to the XCluster plugin, this module generates a patented structure designed to accommodate a high number of links.
It also enables the generation of lightweight casting trees with hollow interiors, allowing for optimization of the precious metal used during casting by managing the weight of the final object.
XCluster Chain opens up new possibilities for metal chain production, making it ideal for jewelry and other applications.

Informations produit

FabricantDWS srl
Type3D Editor Software
Grid SupportCreation of support grids for complex shapes
Core FeaturesError detection, support structure generation, object arrangement, duplication, rotation, translation, object details
Add On ModulesXCluster, XCluster Chain (available under specific license)
Lattice SystemPatented system that reduces material consumption and print time
Parametric ToolsReal-time feedback, adjustable settings, parameter sets linked to specific materials or 3D printers
Easy Break SystemAutomatically generates supports that are fast and easy to remove after printing
Support GenerationManual or semi-automatic creation of support structures