Optimal Design and Interference Suppression of Multi-Stream Conical Array Nozzles for High-Efficiency Ultra-Precision Polishing
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更新:2026-09-13 21:47:26 浏览:2次
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摘要
In ultra-precision polishing of large-aperture optical components, multi-jet technology’s poor material removal uniformity due to jet interference restricts its high-end equipment application. This paper proposes a conical array nozzle to suppress interference and improve uniformity via configuration optimization. A computational fluid dynamics model compares flow field characteristics and pressure distribution of conical and traditional cylindrical nozzles. Results show the conical structure converges and stabilizes the jet core; at an optimized outlet spacing of 8 mm, interference is reduced, the peak material removal rate increases by 15.2%, and distribution uniformity improves. Fixed-point and regional polishing experiments verify the model. With the same surface quality, the optimized three-jet’s efficiency is over 300% higher than the traditional single jet, providing new support for high-performance intelligent polishing equipment development.
关键词
Multi-jet polishing,Conical array nozzle,Jet interference,Computational fluid dynamics,Uniformity
稿件作者
Fan Yang
Southwest University of Science and Technology
Liang Dai
Southwest University of Science and Technology
Jiaxin Yu
Southwest University of Science and Technology
Yafeng Zhang
Southwest University of Science and Technology
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