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Forschungsstelle
INNOSUISSE
Projektnummer
14313.1;9 PFNM-NM
Projekttitel
Machbarkeitsstudie zur Verbesserung der Transmissions- und Entwicklung der Backscattering-Messung von DWS RheoLab mittels Scatter3D
Projekttitel Englisch
Feasibility study to improve the transmission- and develop the backscattering-measurement of DWS RheoLab using Scatter3D

Texte zu diesem Projekt

 DeutschFranzösischItalienischEnglisch
Kurzbeschreibung
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Abstract
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Erfasste Texte


KategorieText
Kurzbeschreibung
(Deutsch)
Machbarkeitsstudie zur Verbesserung der Transmissions- und Entwicklung der Backscattering-Messung von DWS RheoLab mittels Scatter3D
Kurzbeschreibung
(Englisch)
Feasibility study to improve the transmission- and develop the backscattering-measurement of DWS RheoLab using Scatter3D
Abstract
(Deutsch)
The unique key product 'DWS RheoLab' of LSI, is based on measurements in transmission geometry and the well-known diffusion approximation. Induced by current market requirements, the next generation of RheoLab needs improving in several aspects. Empa developed the sophisticated light scattering simulator 'Scatter3D' which is able to reproduce arbitrary measurements. Based on Scatter3D-simulations, this feasibility study considers RheoLab's potential for improving its precision, increasing its application range and reducing its production cost.
Abstract
(Englisch)
The unique key product 'DWS RheoLab' of LSI, is based on measurements in transmission geometry and the well-known diffusion approximation. Induced by current market requirements, the next generation of RheoLab needs improving in several aspects. Empa developed the sophisticated light scattering simulator 'Scatter3D' which is able to reproduce arbitrary measurements. Based on Scatter3D-simulations, this feasibility study considers RheoLab's potential for improving its precision, increasing its application range and reducing its production cost.