The synchrotron X-ray radiation is a great tool in materials characterization with several advantageous features. The high intensity allows clear interaction signals and high energy of X-ray yields higher sampling volume. The samples do not need extra preparation and the microstructure is therefore not affected. With the tunability of the X-ray energy, a large range of elements and features in the samples can be investigated by different techniques, which is a significant difference between a stand-alone X-ray tube and synchrotron X-ray. Moreover, any experimental equipment can be installed through which the synchrotron beam travels. This facilitates the so-called in situ characterization such as during heat treatment, hot deformation, chem...
International audienceThe ability to non-destructively measure the structural properties of devices,...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
Recent efforts to characterize the nanoscale structural and chemical modifications induced by energe...
The synchrotron X-ray radiation is a great tool in materials characterization with several advantage...
Advanced engineering materials are frequently based on multiphase microstructures, where the decisiv...
High intensity synchrotron radiation produces photons with wavelengths that extend from the infrared...
X-ray tomography is a non-destructive imaging technique enabling a three-dimensional representation ...
© 2018, Springer Nature Switzerland AG. Since the 1990s, tens of 3rd generation synchrotron X-ray fa...
An understanding of the chemical composition of such slags under boiler operating conditions and as ...
International audienceThe ability to non-destructively measure the structural properties of devices,...
The ability to non-destructively measure the structural properties of devices, either in situ or ope...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
International audienceThe ability to non-destructively measure the structural properties of devices,...
International audienceThe ability to non-destructively measure the structural properties of devices,...
International audienceThe ability to non-destructively measure the structural properties of devices,...
International audienceThe ability to non-destructively measure the structural properties of devices,...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
Recent efforts to characterize the nanoscale structural and chemical modifications induced by energe...
The synchrotron X-ray radiation is a great tool in materials characterization with several advantage...
Advanced engineering materials are frequently based on multiphase microstructures, where the decisiv...
High intensity synchrotron radiation produces photons with wavelengths that extend from the infrared...
X-ray tomography is a non-destructive imaging technique enabling a three-dimensional representation ...
© 2018, Springer Nature Switzerland AG. Since the 1990s, tens of 3rd generation synchrotron X-ray fa...
An understanding of the chemical composition of such slags under boiler operating conditions and as ...
International audienceThe ability to non-destructively measure the structural properties of devices,...
The ability to non-destructively measure the structural properties of devices, either in situ or ope...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
International audienceThe ability to non-destructively measure the structural properties of devices,...
International audienceThe ability to non-destructively measure the structural properties of devices,...
International audienceThe ability to non-destructively measure the structural properties of devices,...
International audienceThe ability to non-destructively measure the structural properties of devices,...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
Recent efforts to characterize the nanoscale structural and chemical modifications induced by energe...