Paper
28 October 2016 Fluid field characteristics analysis of rectangular-nozzle aspect change
Shaogui Mi, Liming Yang, Rongzhu Zhang
Author Affiliations +
Proceedings Volume 9683, 8th International Symposium on Advanced Optical Manufacturing and Testing Technologies: Advanced Optical Manufacturing Technologies; 968305 (2016) https://doi.org/10.1117/12.2242254
Event: Eighth International Symposium on Advanced Optical Manufacturing and Testing Technology (AOMATT2016), 2016, Suzhou, China
Abstract
Fluent jet polishing is a new precision optical surface machining method. To improve the removal efficiency of jet machining, a rectangular-nozzle has been designed to take the place of the traditional round nozzle. According to the principles of fluid dynamics, the flow field characteristic of rectangular-nozzle structure was analyzed theoretically. The flow field distribution of different models is calculated. The shape of the rectangular nozzle has an important influence on the jet flow field distribution. So an analysis model is established to discuss the fluid field characteristics of different rectangular-nozzle structure. The impact process of several typical rectangular-nozzle is simulated by FLUENT, and the flow jet pressure and velocity distribution on the workpiece have been obtained. Then the influence on the dynamic characteristics of different impact angle is analyzed, and the corresponding rectangular-nozzle flow field distribution features are calculated by changing the impact angle.
© (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Shaogui Mi, Liming Yang, and Rongzhu Zhang "Fluid field characteristics analysis of rectangular-nozzle aspect change", Proc. SPIE 9683, 8th International Symposium on Advanced Optical Manufacturing and Testing Technologies: Advanced Optical Manufacturing Technologies, 968305 (28 October 2016); https://doi.org/10.1117/12.2242254
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KEYWORDS
Polishing

Fluid dynamics

Surface finishing

Abrasives

Computer simulations

Numerical simulations

Particles

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