Применение 3D-сканеров: бесконтактные измерения

Non-contact measurements

Save time on tasks of comparing the actual object with the original CAD file, checking tolerances and wear. Non-contact measurements allow you to maintain the accuracy of the product geometry throughout the entire production process.

Non-contact measurement

Non-contact measurements using 3D scanning: advantages and possibilities

Precision and speed play a key role in manufacturing processes, which is why contactless measurements using 3D scanning are becoming increasingly popular. This technology allows you to obtain highly accurate data on the geometry of objects without the need for physical contact, which opens up new horizons for various industries.

What is contactless measurement?

Non-contact measurements are the process of obtaining data on the shape, size, and other characteristics of an object using 3D scanners. They capture the geometric parameters of an object, creating a digital model of it that can be used for analysis and quality control.

Advantages of non-contact measurements

High accuracy: 3D scanners provide incredible detail, which allows you to detect even the smallest deviations from the set parameters. This is especially important in industries such as aircraft and automotive, where accuracy is critical.

Speed and efficiency: The scanning process takes significantly less time compared to traditional measurement methods. This allows you to speed up production cycles and reduce the time for quality control.

No damage: since measurements are carried out without contact with an object, the risk of damage to the products is minimal. This is especially true for fragile and expensive components, as well as in archaeology and museum business.

Process automation: Modern 3D scanning systems can be integrated into automated production lines, which reduces the influence of the human factor and increases the reliability of measurements.

Data analysis and visualization: The 3D models obtained can be used for further analysis, which allows not only to identify defects, but also to optimize production processes.

Application of non-contact measurements in various industries

Non-contact measurements using 3D scanning are widely used in various fields, including:

  • Automotive industry: control of the geometry of bodies and parts to ensure the safety and reliability of vehicles.
  • Aircraft industry: checking the accuracy of components, which is critical for flight safety.
  • Medical equipment: Measurement and quality control of medical devices where accuracy is crucial.
  • Industrial design: prototyping and quality control of products at the development stage.
  • Museum business and archeology: careful digitization and form analysis.

Use the non-contact measurement method

Non-contact measurements using 3D scanning are not just an innovation, but a necessity for modern industries striving to improve quality and efficiency. The introduction of this technology allows not only to improve quality control, but also to optimize production processes, which ultimately leads to increased profits and stronger market positions. By investing in contactless measurements, companies are taking a step into a future where accuracy and speed are becoming the main competitive advantages.

RangeVision offers 3D scanners with metrological accuracy, officially registered in the state register of measuring instruments. These are the PRO II and PRIME models.

Application

  • 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
  • Medicine
    Medicine
    Digitization of organs and body parts for research, control, monitoring of dynamics and development of therapeutic and preventive devices.
  • Museum work
    Museum work
    Scanning of museum exhibits for restoration, research and digital archiving

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