<div><p>This work proposes a three-dimensional methodology to characterize porosity in iron ore pellets by X-ray Microtomography (microCT). An image analysis routine was developed to discriminate and quantify open/closed porosity. The results were compared to the traditional techniques of mercury intrusion porosimetry (MIP) and optical microscopy (OM). As expected, the porosity values obtained from microCT were much lower than those from MIP and OM, due to the lower spatial resolution of the proposed technique. However, the resolution can be optimized to detect the main peak of the pore size distribution, close to 10 µm. MicroCT was also able to discriminate between open and closed porosities, and revealed the volumetric spatial distributio...
Abstract A correlative approach employing optical microscopy and scanning electron microscopy is pro...
The spatial porosity and mineral distribution of geological materials strongly affects transport pro...
The pore size distribution (PSD) plays an important role in the hydro-mechanical behaviour of porous...
<div><p>This work proposes a three-dimensional methodology to characterize porosity in iron ore pell...
In this thesis, image processing tools are used for analysing properties of iron ore pellets, with t...
This work has been a part of the development of a method where x-ray microtomography and image analy...
The deployment of additive manufacturing processes relies on part quality, specifically the absence ...
Understanding the porosity of gas shale is of great importance in many applications such as for enha...
AbstractThe deployment of additive manufacturing processes relies on part quality, specifically the ...
Cryogenic scanning electron microscopy (cryo-SEM), image analysis (IA) of SEM micrographs and X-ray ...
The present study aimed to assess the effectiveness of the image segmentation technique utilizing th...
In modern ironmaking, granulation is the first step of the sintering process. It is typically carrie...
This work presents a method, based on X-ray microtomography and three-dimensional (3D) image analysi...
Abstract A correlative approach employing optical microscopy and scanning electron microscopy is pro...
The spatial porosity and mineral distribution of geological materials strongly affects transport pro...
The pore size distribution (PSD) plays an important role in the hydro-mechanical behaviour of porous...
<div><p>This work proposes a three-dimensional methodology to characterize porosity in iron ore pell...
In this thesis, image processing tools are used for analysing properties of iron ore pellets, with t...
This work has been a part of the development of a method where x-ray microtomography and image analy...
The deployment of additive manufacturing processes relies on part quality, specifically the absence ...
Understanding the porosity of gas shale is of great importance in many applications such as for enha...
AbstractThe deployment of additive manufacturing processes relies on part quality, specifically the ...
Cryogenic scanning electron microscopy (cryo-SEM), image analysis (IA) of SEM micrographs and X-ray ...
The present study aimed to assess the effectiveness of the image segmentation technique utilizing th...
In modern ironmaking, granulation is the first step of the sintering process. It is typically carrie...
This work presents a method, based on X-ray microtomography and three-dimensional (3D) image analysi...
Abstract A correlative approach employing optical microscopy and scanning electron microscopy is pro...
The spatial porosity and mineral distribution of geological materials strongly affects transport pro...
The pore size distribution (PSD) plays an important role in the hydro-mechanical behaviour of porous...