International audienceThe deformation behaviour of 150. nm thick W/Cu nanocomposite deposited on polyimide substrates has been analysed under equi-biaxial tensile testing coupled to X-ray diffraction technique. The experiments were carried out using a biaxial device that has been developed for the DiffAbs beamline of SOLEIL synchrotron source. Finite element analysis has been performed to study the strain distribution into the cruciform shape substrate and define the homogeneous deformed volume. X-ray measured elastic strains in tungsten sub-layers could be carried out for both principal directions. The strain field was determined to be almost equi-biaxial as expected and compared to finite element calculations
International audienceBiaxial stress state of thin films deposited on flexible substrate can be mast...
International audienceWe have developed on the DIFFABS-SOLEIL beamline a biaxial tensile machine wor...
International audienceAn experimental method for a single layer is extended to determine the elastic...
International audienceThe deformation behaviour of 150. nm thick W/Cu nanocomposite deposited on pol...
Abstract In-situ biaxial tensile tests within the elastic domain were conducted with W/Cu nanocompos...
This paper reports on the mechanical behaviour of nanostructured W/Cu thin films deposited on Kapton...
International audienceThis paper reports on the mechanical behaviour of nanostructured W/Cu thin fil...
Abstract. The mechanical behaviour of multilayered W/Cu thin films on polyimide substrate has been i...
The mechanical behaviour of multilayered W/Cu thin films on polyimide substrate ...
International audienceA biaxial device developed at DiffAbs beamline of the SOLEIL synchrotron facil...
International audienceAbstract In-situ biaxial tensile tests within the elastic domain were conducte...
Ce travail de thèse porte sur la déformation bi-axiale contrôlée de nano-composites W/Cu en couches ...
International audienceWe have developed on the DIFFABS-SOLEIL beamline a biaxial tensile machine wit...
International audienceComparative studies of the mechanical behavior between copper, tungsten, and W...
International audienceX-ray diffraction is used in combination with tensile testing for measuring el...
International audienceBiaxial stress state of thin films deposited on flexible substrate can be mast...
International audienceWe have developed on the DIFFABS-SOLEIL beamline a biaxial tensile machine wor...
International audienceAn experimental method for a single layer is extended to determine the elastic...
International audienceThe deformation behaviour of 150. nm thick W/Cu nanocomposite deposited on pol...
Abstract In-situ biaxial tensile tests within the elastic domain were conducted with W/Cu nanocompos...
This paper reports on the mechanical behaviour of nanostructured W/Cu thin films deposited on Kapton...
International audienceThis paper reports on the mechanical behaviour of nanostructured W/Cu thin fil...
Abstract. The mechanical behaviour of multilayered W/Cu thin films on polyimide substrate has been i...
The mechanical behaviour of multilayered W/Cu thin films on polyimide substrate ...
International audienceA biaxial device developed at DiffAbs beamline of the SOLEIL synchrotron facil...
International audienceAbstract In-situ biaxial tensile tests within the elastic domain were conducte...
Ce travail de thèse porte sur la déformation bi-axiale contrôlée de nano-composites W/Cu en couches ...
International audienceWe have developed on the DIFFABS-SOLEIL beamline a biaxial tensile machine wit...
International audienceComparative studies of the mechanical behavior between copper, tungsten, and W...
International audienceX-ray diffraction is used in combination with tensile testing for measuring el...
International audienceBiaxial stress state of thin films deposited on flexible substrate can be mast...
International audienceWe have developed on the DIFFABS-SOLEIL beamline a biaxial tensile machine wor...
International audienceAn experimental method for a single layer is extended to determine the elastic...