Search Results - METAL PRODUCTION TECHNOLOGY THEORY

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    Research status and prospect of thickening technology for metal tailings by Hong-jiang WANG, Qing-song PENG, Ying YANG, Jia-bin GUO

    Published in 工程科学学报 (2022-06-01)
    “…Thickening technology of tailings is the primary procedure of paste backfill technology in metal mines, which can significantly improve the efficiency of tailings dewatering and utilization rate of tailings. …”
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    Current status and prospects of mining technology in metal mines by Liancheng WANG, Anlin SHAO, Fuming QU, Xingtong YUE, Huaiyuan WANG, Xingfan ZHANG, Xiaobo LIU

    Published in 工程科学学报 (2025-05-01)
    “…This research offers a comprehensive analysis from three key perspectives: mining scale, process equipment, and software technology. The findings can be summarized as follows: (1) Owing to limitations in resource endowments and technological capabilities, Chinese metallic mines show considerable discrepancies in both production scale and mining depth compared with the world’s leading mines. …”
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    GRAVITATIONAL TECHNOLOGY FOR THE ASSESSMENTAND COMPLEX DEVELOPMENT OF TECHNOGENIC FORMATIONS OF PRECIOUS METALS by K P Kurganov

    Published in RUDN Journal of Engineering Research (2016-12-01)
    “…Unlike the existing devices and technological schemes, the declared technology has the distinctive features:allows to extract gold and the accompanying mineral complexes from all products of classification including slurry (a class -0,1 mm);there is no enrichment on lock devices (are established only on control operations);the continuous controlled exit of a concentrate is carried out.The offered technology will find broad application at an assessment and operation of technogenic complexes, off-balance and unpromising objects of precious metals.…”
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    Research progress of solid-phase welding technology between magnesium and dissimilar metals by Huan Liu, Wenxiu Fan, Ziyue Xu, Chao Sun, Yuna Wu, Jia Ju, Jiang Ma

    “…Future research directions are proposed to advance this field: 1) Integration of machine learning approaches for precise control of welding process parameters; 2) Development of dynamic and in-situ observation techniques to refine transient solid-phase welding theories; 3) Technological innovation in solid-phase welding based on theoretical breakthroughs; 4) Establishment of systematic tracking and evaluation methodologies for service behavior of welded components and joints; 5) Integrating solid-state welding into high-volume manufacturing processes through the lenses of production efficiency, quality assurance, intelligent manufacturing, and sustainability. …”
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