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Spelconsole --- 3D-scan --- Multimediaproductie
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L'objectif de ce travail est d'étudier les effets d'un rallongement de 500mm du châssis de voiture. Plus précisément, l'étude de l'impact sur la rigidité du châssis. Pour ce faire, le procédé de rétro-ingénierie est utilisé par le biais d'un scan 3D de la caisse.
Automobile --- rétro-ingénierie --- rigidité châssis --- 3D scan --- Ingénierie, informatique & technologie > Ingénierie mécanique
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Long description: Biographical note: Thomas Kaffka hat als Softwareingenieur sowie Projektleiter in Softwarehäusern und Wirtschaftsprüfungs- und Beratungsgesellschaften gearbeitet. Er ist ein echter Maker und beschäftigt sich mit verschiedenen Themen wie etwa dem Bau von LEGO-Robotern, der Künstlicher Intelligenzforschung sowie dem 3D-Druck.
Blender --- 3D-Modellierung --- buch --- ABS --- SketchUp --- FDM --- FFF --- PLA --- Slicer --- 3D-Scan --- Filament --- Paint 3D --- 3D Builder --- 3D-Drucker --- 3D-Modeling --- Druckbettheizung
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Conservation of painted surfaces, metal leaves, and finishes requires a deep knowledge of both the materials themselves and the supports and the interaction phenomena occurring among them. Superficial treatments, operations, and materials adopted during the conservation intervention can modify the complex system of existing interactions. Therefore, it is fundamental to predict possible induced changes of the chemical-physical properties of the systems. This Special Issue aims at contributing to the definition of the state-of-the-art in the approach to conservation problems of painted surfaces, metal leaves, and finishes. In particular, the topic of interest includes but is not limited to: Methodological approaches for the conservation treatments of the painted surfaces, metal leaves, and finishes; Analytical tools and protocols for the validation of the treatment efficacy and recognizability; Analytical tools for the characterization of surface materials and their decay processes; New materials and treatments.
Technology: general issues --- History of engineering & technology --- Materials science --- Maya blue --- wall paintings --- sixteenth century --- palygorskite --- X-ray fluorescence --- X-ray diffraction --- paintings --- metal soaps --- natural resins --- varnishes --- smalt --- shellac --- copper alloys --- UV-induced fluorescence --- FTIR spectroscopy --- eddy current --- UV imaging --- artificial ageing --- non-invasive characterization --- polychromy --- polychrome stone statue --- adhesion and cohesion products --- conservation of pictorial films on stone --- violin --- XRF --- FTIR --- reflection infrared spectroscopy --- 3D scan --- stratigraphy --- varnish --- musical instrument --- 14th century --- wood-carved --- microscopy --- Raman --- SEM-EDX --- materials --- pigments --- laser cleaning --- Er:YAG laser --- efficacy evaluation --- Manet --- painting --- portrait --- woman --- 19th century --- extenders --- original materials --- later alterations --- cultural heritage --- conservation --- wooden sculpture --- ancient Egyptian --- ancient Egyptian painting materials --- cleaning treatment --- water based systems --- poly(vinyl alcohol) hydrogels --- archaeometry --- n/a
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Conservation of painted surfaces, metal leaves, and finishes requires a deep knowledge of both the materials themselves and the supports and the interaction phenomena occurring among them. Superficial treatments, operations, and materials adopted during the conservation intervention can modify the complex system of existing interactions. Therefore, it is fundamental to predict possible induced changes of the chemical-physical properties of the systems. This Special Issue aims at contributing to the definition of the state-of-the-art in the approach to conservation problems of painted surfaces, metal leaves, and finishes. In particular, the topic of interest includes but is not limited to: Methodological approaches for the conservation treatments of the painted surfaces, metal leaves, and finishes; Analytical tools and protocols for the validation of the treatment efficacy and recognizability; Analytical tools for the characterization of surface materials and their decay processes; New materials and treatments.
Maya blue --- wall paintings --- sixteenth century --- palygorskite --- X-ray fluorescence --- X-ray diffraction --- paintings --- metal soaps --- natural resins --- varnishes --- smalt --- shellac --- copper alloys --- UV-induced fluorescence --- FTIR spectroscopy --- eddy current --- UV imaging --- artificial ageing --- non-invasive characterization --- polychromy --- polychrome stone statue --- adhesion and cohesion products --- conservation of pictorial films on stone --- violin --- XRF --- FTIR --- reflection infrared spectroscopy --- 3D scan --- stratigraphy --- varnish --- musical instrument --- 14th century --- wood-carved --- microscopy --- Raman --- SEM-EDX --- materials --- pigments --- laser cleaning --- Er:YAG laser --- efficacy evaluation --- Manet --- painting --- portrait --- woman --- 19th century --- extenders --- original materials --- later alterations --- cultural heritage --- conservation --- wooden sculpture --- ancient Egyptian --- ancient Egyptian painting materials --- cleaning treatment --- water based systems --- poly(vinyl alcohol) hydrogels --- archaeometry --- n/a
Choose an application
Conservation of painted surfaces, metal leaves, and finishes requires a deep knowledge of both the materials themselves and the supports and the interaction phenomena occurring among them. Superficial treatments, operations, and materials adopted during the conservation intervention can modify the complex system of existing interactions. Therefore, it is fundamental to predict possible induced changes of the chemical-physical properties of the systems. This Special Issue aims at contributing to the definition of the state-of-the-art in the approach to conservation problems of painted surfaces, metal leaves, and finishes. In particular, the topic of interest includes but is not limited to: Methodological approaches for the conservation treatments of the painted surfaces, metal leaves, and finishes; Analytical tools and protocols for the validation of the treatment efficacy and recognizability; Analytical tools for the characterization of surface materials and their decay processes; New materials and treatments.
Technology: general issues --- History of engineering & technology --- Materials science --- Maya blue --- wall paintings --- sixteenth century --- palygorskite --- X-ray fluorescence --- X-ray diffraction --- paintings --- metal soaps --- natural resins --- varnishes --- smalt --- shellac --- copper alloys --- UV-induced fluorescence --- FTIR spectroscopy --- eddy current --- UV imaging --- artificial ageing --- non-invasive characterization --- polychromy --- polychrome stone statue --- adhesion and cohesion products --- conservation of pictorial films on stone --- violin --- XRF --- FTIR --- reflection infrared spectroscopy --- 3D scan --- stratigraphy --- varnish --- musical instrument --- 14th century --- wood-carved --- microscopy --- Raman --- SEM-EDX --- materials --- pigments --- laser cleaning --- Er:YAG laser --- efficacy evaluation --- Manet --- painting --- portrait --- woman --- 19th century --- extenders --- original materials --- later alterations --- cultural heritage --- conservation --- wooden sculpture --- ancient Egyptian --- ancient Egyptian painting materials --- cleaning treatment --- water based systems --- poly(vinyl alcohol) hydrogels --- archaeometry
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