Abstract:
This paper examines the automated zinc stripping machine independently developed by BGRIMM Machinery & Automation Technology Co., Ltd. as its subject of study, providing a comprehensive exposition of the overall system and the structural composition and operational procedures of its core component—the percussion zinc stripping device. Building upon this foundation, theoretical modelling and parameter analysis are conducted focusing on the mechanical properties of the zinc removal aluminium composite interface and the key technologies involved in the vibration zincing process. This aims to provide theoretical underpinnings and technical pathways for automated operation, intelligent control, and modular design of the entire de-zincing process. Field operation practice demonstrates that the fully automatic zinc stripping machine exhibits outstanding operational stability and safety in industrial environments. The overall automation level and production efficiency are both at a high standard, with a stable processing capacity exceeding 700 blocks per hour in actual operation, achieving advanced levels comparable to similar equipment domestically and internationally. The successful deployment of this equipment not only substantially enhances operational efficiency and equipment intelligence within the smelter’s zinc production processes but also demonstrates strong potential for industrialization and significant engineering practical value.