Application

3D modelling and 3D printing

With the use of additive technologies, including 3D scanning, the production and reproduction of products has become significantly easier and faster.

3D modeling and 3D printing

3D modeling, 3D scanning and 3D printing: the most effective approach to prototyping

3D modeling and 3D object printing technologies are becoming an integral part of many industries and arts. 3D scanners play a key role in this process. Creating accurate digital models and implementing them in a physical format, then refining the form, scanning, and returning to electronic form is now a real process of developing design and functional elements.

What is 3D modeling?

3D modeling is the process of creating three-dimensional objects using specialized software. These models can be used in various fields, including architecture, design, animation, and production. 3D scanners allow you to quickly and accurately capture the geometry of real objects, which greatly simplifies modeling and increases its accuracy.

3D modeling using a 3D scanner

  • High accuracy: 3D scanners provide a detailed and accurate representation of objects, which avoids errors associated with manual modeling.
  • Model creation speed: The scanning process takes significantly less time than traditional modeling methods, which speeds up the entire development cycle.
  • Simplify editing: Digital models created using 3D scanning are easy to edit and adapt to specific needs, making the process more flexible.
  • Integration with CAD systems: Models obtained using 3D scanners can be easily imported into CAD systems for further work and design.

What is 3D printing?

3D printing is the process of creating physical objects from digital models using additive technologies. This technology makes it possible to produce products of any complexity and shape, which opens up new horizons for design and production. 3D printing can be done not only with plastic, but also with metal, concrete, and even living stem cells. Various types of 3D printing have already been introduced into the most demanding industries for precision and durability, including the aerospace industry. Professions related to 3D printing, prototyping, and additive technologies are in high demand. Engineers and designers with modern tools have a huge advantage in the labor market.

Advantages of 3D printing

  • Product customization: 3D printing allows you to create unique products tailored to specific customer requirements.
  • Cost reduction: Using 3D printing can significantly reduce production costs, especially in small-scale production.
  • Eco-friendly: additive technologies can minimize waste, as the material is used only in the required quantities.
  • Rapid Prototyping: 3D printing allows you to quickly create prototypes, which speeds up the process of developing and testing new products.
  • Application of 3D modeling and 3D printing in various industries

    3D modeling and 3D printing are widely used in various fields, including:

    • Industry: creation of prototypes and parts for machines and mechanisms.
    • Medicine: production of individual implants and medical devices.
    • Architecture: modeling of buildings and structures for visualization of projects.
    • Art and Design: creating unique works of art and designer items.

    An up-to-date approach to prototyping and 3D design

    3D modeling and 3D printing are powerful tools that open up new business and creative opportunities. 3D scanners play an important role in this process by providing technologies that enable accurate digital models to be created and implemented in a physical format. By investing in 3D technologies, companies can significantly increase their competitiveness and adapt to rapidly changing market demands.

Application

  • Repair and maintenance
    Repair and maintenance
    Quick and easy copying or reproduction of parts and objects to replace broken ones through 3D scanning and 3D printing.
  • Production
    Production
    Geometry control and measurement of manufactured products, tooling and tools, reverse engineering of parts and assemblies, development of design documentation, creation of digital catalogs of parts and tools
  • Jewellery
    Jewellery
    Digitization of jewelry for reproduction, repair, design and fitting, quality control of casting, creation of digital catalogs
  • Industrial Design
    Industrial Design
    Development and improvement of the design of parts, assemblies and mechanisms
  • Auto&Moto Custom
    Auto&Moto Custom
    Reverse engineering and repair of parts, development and fitting of new structural elements and body kit, body geometry control
  • Medicine
    Medicine
    Digitization of organs and body parts for research, control, monitoring of dynamics and development of therapeutic and preventive devices.

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