labratdesigns

We Design Solutions
That Drive Industries, like

Automotive Aerospace Agriculture Biomedical Marine

AUTOMOTIVE

In the automotive industry, GOM systems are used during the entire new product development process. In product development, measuring data provide information from crash and fatigue tests, climate chambers, wind tunnels, and tire test rigs about material characteristics and part behavior. The results influence the simulation and construction. In quality control, which is becoming increasingly automated, the full-field geometry acquisition by 3D scanning provides the data basis to inspect forms and tools, castings, plastic and sheet metal parts as well as assemblies and complete car bodies.

Automotive Design

Materials Testing & Simulation

Press and Body Shop

Power Train

Plastic Components

Test Stands & Component Testing

Assembly

AEROSPACE

GOM systems support the aerospace industry and its suppliers by providing precise part geometries and material characteristics. This data is used as input parameters for finite element simulations and flow analyses, for verification of simulations against real measurements in wind tunnels and climate chambers, as well as for reverse engineering. Furthermore, optical 3D scanners are suited for quality control of complex freeform surfaces. Therefore, they are used to inspect airfoils of aircraft engines, terrestrial gas & steam turbines, and turbocharging systems.

Aerostructure

Fuselage & Cabin

Propulsion

AGRICULTURE

Agricultural mechanization is part of this technological evolution of agricultural automation.It can be summarized as a progressive move from manual tools to animal traction, to motorized mechanization, to digital equipment, and finally, to robotics with artificial intelligence (AI). These advances can raise productivity and allow for more careful crop, livestock, aquaculture, and forestry management; provide better working conditions; improve incomes; reduce the workload of farming; and generate new rural entrepreneurial opportunities.

BIOMECHANICAL / MEDICAL

Optical 3D metrology has been established in biomechanics for dynamic analyses of implants and prostheses, but also of bones, tendons, and ligaments. During strain, load, and fatigue tests, the mechanical properties of biomaterials and their behavior under load are analyzed. Sporting goods manufacturers also use GOM systems to analyze new materials and to develop innovative products from the new materials. Furthermore, GOM’s 3D scanner provides full-field geometric data to inspect medical devices made of plastics and for further processing in CAD/CAM processes in dentistry.

Foremsics

GOM's ATOS 3D digitizer captures precise 3D images and high-resolution textures of objects or persons, detecting deformations and visualizing results. This technology aids investigations by analyzing weapons, injuries, footprints, and accident damage with exceptional accuracy.

Orthodontics

GOM's ATOS 3D digitizer delivers precise scan data for planning orthodontic treatments, ensuring perfectly fitted braces and measurable progress. The data seamlessly integrates with CAD software and supports rapid prototyping for accurate results.

Orthodontics

GOM's ATOS 3D digitizer provides precise scans for dental CAD/CAM processes, enabling accurate alignments, measurements, and comparisons for implants. High-quality data ensures precision in designing and machining dental implants.

Marine

Mechanical engineers design the main propulsion plant, the powering and mechanization aspects of the ship functions such as steering, anchoring, cargo handling, heating, ventilation, air conditioning, interior and exterior communication, and other related requirements.
Scroll to Top