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  4. Partikelexposition bei metallbearbeitenden Prozessen - Beurteilung des Arbeitsschutzes durch Sensornetzwerk und Modellierung
 
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2025
Journal Article
Title

Partikelexposition bei metallbearbeitenden Prozessen - Beurteilung des Arbeitsschutzes durch Sensornetzwerk und Modellierung

Other Title
Particle exposure in metalworking processes - Assessment of occupational safety through sensor network and simulation
Abstract
The measurements provide a deeper understanding of particle release during the fettling processes of aluminum and ferrous castings. A combination of continuous measurement technology and a decentralized Bluetooth mesh sensor network is employed to precisely capture particle dynamics. In addition, a zonal flow approach is used to model particle dispersion. Within the scope of this experimental series, various ventilation scenarios are simulated to derive technical recommendations for improving air quality. Particular attention is given to compliance with the general dust exposure limits in accordance with the German Technical Rules for Hazardous Substances (TRGS) 900 to ensure a healthy working environment. The combination of measurement and simulation methods provides a robust basis for evaluating potential technical protective measures and enables resource-efficient scenario analysis in an industrial context.

; 

The measurements provide a deeper understanding of particle release during the fettling processes of aluminum and ferrous castings. A combination of continuous measurement technology and a decentralized Bluetooth mesh sensor network is employed to precisely capture particle dynamics. In addition, a zonal flow approach is used to model particle dispersion. Within the scope of this experimental series, various ventilation scenarios are simulated to derive technical recommendations for improving air quality. Particular attention is given to compliance with the general dust exposure limits in accordance with the German Technical Rules for Hazardous Substances (TRGS) 900 to ensure a healthy working environment. The combination of measurement and simulation methods provides a robust basis for evaluating potential technical protective measures and enables resource-efficient scenario analysis in an industrial context.
Author(s)
Hochreiter, Christian  
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Buschhaus, Michael  
Fraunhofer-Institut für Bauphysik IBP  
Wenninger, Franz  
Fraunhofer-Einrichtung für Mikrosysteme und Festkörper-Technologien EMFT  
Matheis, Christina
Fraunhofer-Institut für Bauphysik IBP  
Li, Rui  
Fraunhofer-Institut für Gießerei-, Composite- und Verarbeitungstechnik IGCV  
Klan, Steffen  
Fraunhofer-Institut für Gießerei-, Composite- und Verarbeitungstechnik IGCV  
Weigel, Robert
Journal
Gefahrstoffe, Reinhaltung der Luft  
DOI
10.37544/0949-8036-2025-09-10-44
Language
German
Fraunhofer-Institut für Elektronische Mikrosysteme und Festkörper-Technologien EMFT  
Fraunhofer-Institut für Bauphysik IBP  
Fraunhofer-Institut für Gießerei-, Composite- und Verarbeitungstechnik IGCV  
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