A titanium alloy sample (#6246) containing a linear friction weld has been imaged nondestructively using tomographic energy-dispersive diffraction imaging (TEDDI). The diffraction patterns measured at each point of the TEDDI image permitted identification of the material and phases present (5%). The image also showed the preferred orientation and size-strain distribution present within the sample without the need for any further sample preparation. The preferred orientation was observed in clusters with average dimensions very similar to the experimental spatial resolution (400 m). The length scales and preferred orientation distributions were consistent with orientation imaging microscopy measurements made by Szczepanski, Jha, Larsen and J...
X-ray diffraction contrast tomography is a non-destructive technique for the 3D characterisation of ...
Residual elastic strain in a thin slice parted off from a laser shock peened plate of titanium alloy...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass...
<p>A Titanium alloy sample (# 6246) containing a linear friction weld (LFW) has been imaged non-dest...
International audienceThe mechanical properties of polycrystalline metals are governed by the intera...
The primary aim of this research was to develop and improve the experimental method and data interpr...
A study of the stress gradient developed in a Ti-7AL sample is examined using the technique of High-...
This paper presents the results of a study of elastoplastic deformation of titanium alloy Ti-6Al-4V ...
cited By 8International audienceA specimen of Ti-4Al deformed in-situ to about 0.7% compressive stra...
X-ray diffraction contrast tomography is a recently developed, non-destructive synchrotron imaging t...
Selective laser melting allows the fabrication of NiTi implants with pre-defined, complex shapes. Th...
The combination of X-ray imaging and diffraction techniques provides a unique tool for structural an...
X-ray diffraction is commonly used for non-destructive and precise quantitative determination of int...
In this study, the tensile deformation behavior of an electron beam melted Ti−6Al−4V alloy was exami...
Ultra-fine grained materials with sub-micrometer grain size exhibit superior mechanical properties w...
X-ray diffraction contrast tomography is a non-destructive technique for the 3D characterisation of ...
Residual elastic strain in a thin slice parted off from a laser shock peened plate of titanium alloy...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass...
<p>A Titanium alloy sample (# 6246) containing a linear friction weld (LFW) has been imaged non-dest...
International audienceThe mechanical properties of polycrystalline metals are governed by the intera...
The primary aim of this research was to develop and improve the experimental method and data interpr...
A study of the stress gradient developed in a Ti-7AL sample is examined using the technique of High-...
This paper presents the results of a study of elastoplastic deformation of titanium alloy Ti-6Al-4V ...
cited By 8International audienceA specimen of Ti-4Al deformed in-situ to about 0.7% compressive stra...
X-ray diffraction contrast tomography is a recently developed, non-destructive synchrotron imaging t...
Selective laser melting allows the fabrication of NiTi implants with pre-defined, complex shapes. Th...
The combination of X-ray imaging and diffraction techniques provides a unique tool for structural an...
X-ray diffraction is commonly used for non-destructive and precise quantitative determination of int...
In this study, the tensile deformation behavior of an electron beam melted Ti−6Al−4V alloy was exami...
Ultra-fine grained materials with sub-micrometer grain size exhibit superior mechanical properties w...
X-ray diffraction contrast tomography is a non-destructive technique for the 3D characterisation of ...
Residual elastic strain in a thin slice parted off from a laser shock peened plate of titanium alloy...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass...