LMS Technologies Vietnam

DIGITAL IMAGE CORRELATION (DIC)

World-Class Non-Contact Material Deformation Measurement
Digital Image Correlation (DIC) is a cutting-edge, non-contact optical measurement technology that enables precise analysis of material displacement and strain—down to the micrometer level.

As a global pioneer in DIC technology, Correlated Solutions delivers industry-leading systems for measuring full-field deformation with exceptional accuracy and ultra-fast acquisition speeds reaching the nanosecond scale. Our solutions are ideal for material testing, vibration analysis, crash simulation, biomedical research, and a wide range of advanced engineering applications.
Key Applications
  • Mechanical and material testing
  • Aerospace and composite structures
  • Automotive and crash testing
  • Sheet metal forming
  • Structural deformation analysis
  • Biomechanics and biomedical research
  • High-speed dynamic testing
  • FEA validation
Product Solutions
  • VIC-2D – 2D full-field displacement and strain measurement
  • VIC-3D – 3D full-field shape, displacement and strain measurement
  • VIC-EDU – DIC solution for education and research
  • VIC-Volume – Digital Volume Correlation (DVC) for internal deformation analysis
We proudly provide official distribution and technical support across Vietnam, Singapore, Malaysia, Thailand, and Indonesia.
Manufacturer’s website: http://correlatedsolutions.com/
DIGITAL IMAGING CORRELATION​ PRODUCTS
VIC-3D System
VIC-3D provides non-contact 3D measurement of displacement, strain and deformation across an entire specimen surface for mechanical and dynamic testing.
VIC-2D System
VIC-2D is a non-contact DIC system for full-field 2D displacement and strain measurement on planar specimens, from static to high-speed testing.
VIC-EDU System
VIC-EDU is an affordable, ready-to-use DIC system for teaching and research in mechanical testing, structural analysis, automotive and aerospace engineering.
VIC-Volume
The VIC-2D system is a turnkey solution that utilizes our optimized correlation algorithms to provide full-field two-dimensional displacement and strain data for mechanical testing on planar specimens. In-plane displacement are measured at every pixel subset within the area of interest, and full-field strain is computed with many tensor options.
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