Supplementary Crystal Shape Models to: Growth of broken crystals tracked in 4D using X-Ray computed tomography and its influence on impurity incorporation
CHE Chemie; CIT Chemie-Ingenieurwesen, Technische Chemie, Biotechnologie; LEB Lebensmitteltechnologie; WER Werkstoffwissenschaften
Quellen der Daten:
Abbildungen von Objekten / image of objects
Datentyp:
mehrdimensionale Visualisierungen oder Modelle / models
Anderer Datentyp:
STL mesh files
Methode der Datenerhebung:
Two potassium aluminum sulfate crystal fragments were grown at constant supersaturation (0.0174) and temperature (20dC) and imaged using micro-computed tomography at a voxel spacing (resolution) of 2 um/voxel intermediate times. Voxel-based 3D images of the crystals are segmented from the raw CT images using binarization. Details are described in the article. To generate the mesh files provided here, blur is removed, and the meshes are generated using Matlab (Version 2021b) functions isosurface and trimesh. The files are saved as binary stl files using stlwrite. The files provide STL mesh data of the crystals at corresponding times
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Two potassium aluminum sulfate crystal fragments were grown at constant supersaturation (0.0174) and temperature (20dC) and imaged using micro-computed tomography at a voxel spacing (resolution) of 2 um/voxel intermediate times. Voxel-based 3D images of the crystals are segmented from the raw CT images using binarization. Details are described in the article. To generate the mesh files provided here, blur is removed, and the meshes are generated using Matlab (Version 2021b) functions isosurface...
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Beschreibung:
Two potassium aluminum sulfate crystal fragments were grown at constant supersaturation (0.0174) and temperature (20dC) and imaged using micro-computed tomography at a voxel spacing (resolution) of 2 um/voxel at intermediate times. The files provide STL mesh data of the crystals at corresponding times.