基于界面力学阴极剥锌机振打脱锌技术研究与应用

    Research and application of vibration zinc removal technology for cathodic zinc stripping machines based on interfacial mechanics

    • 摘要: 本文选取北矿机电科技有限公司自主研发的全自动剥锌机作为研究对象,对其整机系统及核心部件振打脱锌装置的结构组成与作业流程进行了全面阐述。在此基础上,围绕锌铝复合界面的力学特性,以及振打脱锌环节的关键技术进行了理论建模与参数分析,为脱锌全流程的自动化运行、智能化控制与模块化设计提供理论支撑与技术路径。现场运行实践表明,全自动剥锌机在工业环境中表现出优异的运行稳定性与作业安全性,整机自动化程度及生产效率均处于较高水平,实际作业中稳定处理能力可达700块/h以上,达到国内外同类型装备的先进水平。该设备的成功投用,不仅大幅提升了冶炼厂锌生产工序的作业效能与装备智能化程度,也展现出良好的产业化推广潜力与显著的工程实践价值。

       

      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.

       

    /

    返回文章
    返回