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3D DIC, digital image correlation, composites testing, 3D optical scanning, full field strain measurement, composite material inspection, reverse engineering composites, XTDIC system, XTOM scanner, material deformation analysis, XTOP3D

XTOP3D Showcases 3D DIC & Optical Inspection Solutions for Composite Materials at International Exhibition

Date:2025-04-16

Composite materials are a type of advanced material characterized by low weight, high strength, ease of processing and molding, excellent elasticity, and corrosion resistance; they are widely used in sectors such as automotive manufacturing, electrical and electronics, and construction. Xintuo 3D’s digital inspection solutions provide an added layer of assurance for composite material applications, ensuring precise and accurate testing of their mechanical properties.


Composite materials are sensitive to temperature, meaning their mechanical properties can vary depending on thermal conditions. Whether dealing with metals or composites, Xintuo 3D offers high-precision, high-efficiency digital inspection solutions to safeguard material quality. The company’s capabilities cover a full range of needs, including mechanical property testing, strain analysis, 3D profile inspection, and reverse engineering.


From November 28 to 30, 2019, XTOP3D will exhibit at Booth 4A05 during the 3rd International Exhibition on Technological Innovations in the Composite Materials Industry. We will showcase our 3D inspection technology products and solutions—including the XTDIC 3D full-field strain measurement and analysis system and the XTOM 3D optical scanning and measurement system—and look forward to discussing new 3D digital inspection solutions for advanced materials with you.


XTDIC应变测量:让复合材料应变分析得心应手

During manufacturing and on-orbit operation, composite materials can develop significant internal stresses and undergo structural deformation due to factors such as temperature fluctuations and mechanical stress. Consequently, the proper assessment and control of internal stress are critical to ensuring the quality, stability, and safety of composite structures.


The XTDIC 3D full-field strain measurement and analysis system employs experimental testing to address issues such as excessive deformation and residual stress-induced failure in composite components during manufacturing. It enables the evaluation of structural designs, material selection, and manufacturing parameters, providing key experimental data to facilitate the rapid assessment of composite material feasibility.


XTOM 3D Measurement: Streamlining Quality Inspection and Reverse Engineering for Composite Materials


The XTOM 3D optical scanning and measurement system utilizes non-contact optical scanning technology to capture high-resolution 3D surface data with exceptional speed; it is particularly well-suited for scanning components featuring complex details and contours. In the field of inspection, the system enables full-dimensional comparison between scanned 3D data and original CAD models, allowing for the rapid and precise detection of geometric and dimensional deviations in complex parts. In the realm of reverse engineering, it allows for the direct digital capture of an object's dimensions to facilitate 3D CAD product design.

For applications involving the 3D optical inspection of composite materials, XTOP3D offers a comprehensive suite of solutions—ranging from strain and deformation measurement, material mechanics testing, and component trials to fracture mechanics analysis, design simulation, quality inspection, and data analysis management. XTOP3D invites you to experience these innovations firsthand at Booth 4A05, Zhuhai International Convention & Exhibition Center, from November 28 to 30.


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