Test Optimization

Identification of anisotropic plasticity of DC04 in a deep-notched tensile test

Discover how we reduce the number of tests to identificate anisotropic plasticity.

 

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The VFM for anisotropic plasticity: a Material Testing 2.0 perspective

Keynote lecture given by Prof. Fabrice Pierron, our R&D director, at IDDRG Lorient 2022.

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Material Testing 2.0: IDICS2022

Presentation given at IDICS 2022, Boston, USA

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Material Testing 2.0: Webinar @Jonkoping University

Webinar presentation given at Jonkoping University.

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Real-time signal feedback for communication with a test bench

Real-time signal feedback for communication with a test bench

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Strain controlled tensile test using real-time DIC feedback

Using real-time DIC feedback to perform a strain-controlled uniaxial tensile test on a high density polyethylene test sample.  

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ESAFORM - Material Testing 2.0

Presentation "Material Testing 2.0 for anisotropic plasticity", ESAFORM Webinar Series 2024.

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Multi-Camera DIC: Deformation of a 6m wind turbine blade

Six cameras record the strain field of a windturbine blade over its entire perimeter.

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Optimized and Synchronized Image Grabbing

Discover how our professional grabber optimizes your DIC setup synchronizing an unlimited amount of cameras.

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Vibration measurements with basic DIC hardware

Combine high spatial and temporal resolution with basic DIC hardware involving an unlimited amount of cameras.

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Vibration test on an F16 aircraft

An optimized vibration test on an F16 aircraft involving 6 cameras of different resolutions generating over 30k data channels.

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Compression of a rigid PU foam

Compression up to 60% of strain imposed on a PU foam.

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Tensile test of a LLDPE film

Stress and Poisson ratio determination of a LLDPE film involving strains up to 160%.

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Characterisation of PVC Foam Using DIC and VFM

Applying the VFM on an optimized test configuration reduces the number of tests by a factor of three.

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Turbomachinery: Usage of basic DIC hardware for imaging and analyzing rotating structures

A method to track fast rotating structures using basic DIC hardware involving moderate imaging speeds and temporal sampling.

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Vibration Analysis: High-speed stereo DIC on car door slamming

Two procedures were adopted to introduce vibrations on a car door: via a shaker and through a manual human slam.

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Vibration Analysis: High-speed stereo DIC on a drying machine

Vibrations measurements were performed on a drying machine via a shaker and within operational conditions.

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Uncertainty Quantification in DIC

Presentation "Beyond the noise floor: an approach to the underestimated unseen", Virtual BSSM/iDICs seminar on standardisation and good practices in DIC.

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