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- W2182156709 abstract "High-speed rotary bell atomizers are dedicated instruments for high quality application of paints, used mainly in the automotive industry. Atomization is achieved through a well-defined disintegration process of a thin film at the edge of the bell. Based on experimental observations, it is well known, that the bell geometry, i.e. bell diameter and the exact form of the bell edge, corresponds to certain properties of the produced paint film. The approach of the present contribution is to support this empirical knowledge with physical properties, i.e. the disintegration process and the resulting droplet size distribution. Both, Nanolight short exposure and Fraunhofer diffraction are applied to obtain these results. It was found, that the initial idea of the serrations to produce very narrow droplet size distributions, is not achieved. In contrast, the specific geometry of the serrations leads to bimodal droplet size distributions and to an umbrella-shaped outer spray cone consisting of larger droplets. In contrast, unserrated bells produce almost log-normal shaped size distributions. In all cases, the bell speed is the dominant parameter for mean droplet size control. Under the investigated conditions, paint flow rate does not have an important influence." @default.
- W2182156709 created "2016-06-24" @default.
- W2182156709 creator A5063244412 @default.
- W2182156709 date "2010-01-01" @default.
- W2182156709 modified "2023-09-27" @default.
- W2182156709 title "Effect of Bell Geometry in High-Speed Rotary Bell Atomization" @default.
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