重金属冶炼自动化复合吊具结构设计及应用OA
为实现重金属冶炼的自动化和信息化,避免人为操作失误,降低人工操作劳动强度及技能需求,提高生产效率及流程透明化、智能化.文中针对某重金属添加剂项目冶炼过程中坩埚、托盘等物料智能化吊运的需求,并结合坩埚、托盘等物料自身结构特点,设计了一种四点平移+抱夹式自动化复合吊具.采用传统力学计算与有限元分析相结合的方法对复合吊具的受力进行研究,并对吊具进行强度校核.实践结果表明,复合吊具设计合理、安全有效,使用此复合吊具可顺利地完成冶炼过程中坩埚、托盘等物料的转运,对工程实际有极大地借鉴意义.
To automate and digitize heavy-metal smelting,eliminate human error,lower the physical demands and skill level required of operators,and raise both productivity as well as process transparency and intelligence,an additive-feeding site must provide autonomous lifting of crucibles,trays and similar loads.A four-point translating-and-clamping automatic composite spreader was therefore developed to match the structural features of these utensils.Traditional mechanical calculations coupled with finite-element analysis were used to investigate stresses and verify spreader strength.Field tests confirm that the spreader is rational,safe and effective,reliably transferring crucibles and trays and offering a valuable reference for future engineering practice.
莫国林;黄双云;周霖志;柯敏;廖芳
株洲天桥起重机股份有限公司 株洲 412001株洲天桥起重机股份有限公司 株洲 412001株洲天桥起重机股份有限公司 株洲 412001湖北旌冶科技有限公司 黄石 435001株洲天桥起重机股份有限公司 株洲 412001
机械制造
坩埚托盘智能化吊运四点平移+抱夹式复合吊具
crucibletrayintelligent liftingfour-point translating-and-clamping typecomposite spreader
《起重运输机械》 2026 (2)
43-48,6
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