DIC Analysis in High-Speed Tensile Test of CFRP
Applications | 2026 | ShimadzuInstrumentation
Carbon fiber reinforced plastics (CFRP) combine high specific strength and low weight, making them essential in aerospace, automotive and other industries. Their brittle fracture behavior demands high-speed imaging and accurate strain measurement to understand crack initiation and propagation.
This study demonstrates the application of digital image correlation (DIC) in high-speed tensile testing of CFRP, leveraging a newly developed high-resolution camera (Hyper Vision HPV-X3) and a high-speed tensile testing machine (HITS-TX). A comparative assessment against a conventional system (HPV-X2) evaluates improvements in DIC performance.
Specimen preparation involved adhering aluminum foil to the specimen back for electrical triggering upon fracture. A random speckle pattern on the front surface enabled DIC measurement. Key equipment included:
Test conditions featured a 10 m/s loading speed on a quasi-isotropic CFRP laminate.
DIC analysis of high-speed images revealed early strain localization in a 45° orientation, with the HPV-X3 capturing finer details of strain concentration immediately before crack initiation. Enhanced resolution (3× higher) and increased frame rate (2× faster) of the HPV-X3 yielded sharper strain maps and more precise temporal tracking of fracture events compared to the HPV-X2.
Advancements may include further increases in camera speed and resolution, integration with real-time data processing and AI-based pattern recognition, expansion to three-dimensional DIC using multi-camera setups, and in-line monitoring in manufacturing processes for composites and other brittle materials.
The combination of the Hyper Vision HPV-X3 camera and HITS-TX tensile testing machine significantly improves the capability to observe and quantify dynamic fracture processes in CFRP via DIC. This system provides a robust tool for research and industrial evaluation of composite materials.
Laboratory instruments
IndustriesMaterials Testing
ManufacturerShimadzu
Summary
Importance of the Topic
Carbon fiber reinforced plastics (CFRP) combine high specific strength and low weight, making them essential in aerospace, automotive and other industries. Their brittle fracture behavior demands high-speed imaging and accurate strain measurement to understand crack initiation and propagation.
Study Objectives and Overview
This study demonstrates the application of digital image correlation (DIC) in high-speed tensile testing of CFRP, leveraging a newly developed high-resolution camera (Hyper Vision HPV-X3) and a high-speed tensile testing machine (HITS-TX). A comparative assessment against a conventional system (HPV-X2) evaluates improvements in DIC performance.
Methodology and Instrumentation Used
Specimen preparation involved adhering aluminum foil to the specimen back for electrical triggering upon fracture. A random speckle pattern on the front surface enabled DIC measurement. Key equipment included:
- Hyper Vision HPV-X3 high-speed camera (20 Mfps, 300 kpx resolution)
- Hyper Vision HPV-X2 camera (10 Mfps, 100 kpx resolution)
- HITS-TX tensile testing machine (up to 20 m/s crosshead speed)
- 10 kN load cell, 105 mm macro lens, strobe lighting, high-speed grips
- VIC-2D DIC analysis software
Test conditions featured a 10 m/s loading speed on a quasi-isotropic CFRP laminate.
Main Results and Discussion
DIC analysis of high-speed images revealed early strain localization in a 45° orientation, with the HPV-X3 capturing finer details of strain concentration immediately before crack initiation. Enhanced resolution (3× higher) and increased frame rate (2× faster) of the HPV-X3 yielded sharper strain maps and more precise temporal tracking of fracture events compared to the HPV-X2.
Benefits and Practical Applications of the Method
- Improved visualization of initiation and propagation of brittle fractures
- Higher spatial and temporal resolution enhances DIC accuracy
- Applicable to the development and quality assurance of composite materials
- Enables detailed failure analysis under dynamic loading conditions
Future Trends and Potential Applications
Advancements may include further increases in camera speed and resolution, integration with real-time data processing and AI-based pattern recognition, expansion to three-dimensional DIC using multi-camera setups, and in-line monitoring in manufacturing processes for composites and other brittle materials.
Conclusion
The combination of the Hyper Vision HPV-X3 camera and HITS-TX tensile testing machine significantly improves the capability to observe and quantify dynamic fracture processes in CFRP via DIC. This system provides a robust tool for research and industrial evaluation of composite materials.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Test Speed Dependence Evaluation of Shear Strength of Adhesive and Fracture Observation
2024|Shimadzu|Applications
High-Speed Impact Testing Machine HITS -TX Hyper Vision HPV -X2 High-Speed Video Camera Application News Test Speed Dependence Evaluation of Shear Strength of Adhesive and Fracture Observation Yuki Nishikawa, Fumiaki Yano, Tsubasa Yamamoto User Benefits Test speed dependence evaluation…
Key words
shear, shearspeed, speeddisplacement, displacementstrength, strengthtest, testmpa, mpaadhesive, adhesiveinquiry, inquirydependence, dependencefracture, fracturechuck, chuckcamera, cameravideo, videoadhesives, adhesivesspecimen
3D-DIC Analysis in Compression Test of Glass Tube
2026|Shimadzu|Applications
HyperVision HPV -X3 High-Speed Video Camera Autograph AGX -V2 Series Precision Universal Testing Machine Application News 3D-DIC Analysis in Compression Test of Glass Tube Fumiaki Yano, Yuki Nishikawa User Benefits The HPV-X3 high-speed video camera has resolution three times…
Key words
strain, strainrecording, recordinginquiry, inquirycrack, crackspecimen, specimencamera, cameracompression, compressionvideo, videospeed, speednews, newsfracture, fractureillumination, illuminationmfps, mfpsunfractured, unfracturedobservation
High-Speed Video Camera HyperVision HPV-X3
2025|Shimadzu|Brochures and specifications
C220-E020 High-Speed Video Camera HyperVision HPV-X3 Visualization Technology that Drives Science and Technology Visualization technology has been responsible for dramatic advances in medical care and the industrial sector. For example, the invention of the microscope allowed humans to observe microscopic…
Key words
image, imagecamera, cameraillumination, illuminationsensor, sensorcapture, captureframe, frameoutput, outputmemory, memoryimages, imagesinput, inputexternal, externalrecording, recordingtiming, timingsynchronized, synchronizedblast
CFRP Analysis, Testing and Inspection Evaluation Instruments
2015|Shimadzu|Brochures and specifications
CFRP Analysis, Testing and Inspection Evaluation Instruments C10G-E037 Contributing to Improved CFRP Performance and Reliability CFRP Analysis, Testing and Inspection Evaluation Instruments global w430×h280 M Analysis, Testing, and Inspection Evaluation Instruments That Contribute to Improved Performance and Reliability in Carbon…
Key words
cfrp, cfrpobservations, observationsfiber, fibercfrps, cfrpsray, raytensile, tensiletester, testertests, testsautograph, autographcharacteristics, characteristicsshear, sheartesting, testingsample, samplestrength, strengthfracture