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数字化驱动钒钛产业供应链韧性提升机制与路径研究
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Abstract:
研究基于数字化理论构建了钒钛产业供应链韧性提升模型,强调数字化技术与钒钛产业供应链的深度融合,以确保产业供应链的持续性与安全性。研究以钒钛产业供应链为对象,综合梳理与分析了各地区的钒钛产业发展水平,发现当前钒钛产业发展面临三大现状:各地区钒钛产业发展不平衡;钒钛产业相关专业人才资源匮乏且高校相关专业招收分数过高;企业与社会对钒钛资源综合利用及健康管理的认识存在滞后。针对钒钛产业供应链受阻的现状,研究引入数字化技术,从传统钒钛产业供应链出发,通过数字化手段实现供应链的优化与协同,进而提高供应链的流动效率,同时降低钒钛类生产成本。此外,研究还结合数字化环境,对钒钛产业供应链所存在的问题进行了深层次研究,最终得出有效的提升路径,为钒钛产业供应链的韧性提升提供了理论支持与实践指导。
Based on the digital theory, this study constructs a resilience improvement model for the vanadium-titanium industry supply chain, emphasizing the deep integration of digital technology and the vanadium-titanium industry supply chain to ensure the sustainability and security of the industry supply chain. The study takes the vanadium-titanium industry supply chain as the object, comprehensively sorts out and analyzes the development level of the vanadium-titanium industry in various regions, and finds that the current vanadium-titanium industry faces three major statuses: the vanadium-titanium industry is unbalanced in various regions; there is a shortage of professional talent resources related to the vanadium-titanium industry and the admission scores of relevant majors in colleges and universities are too high; enterprises and society lag behind in their understanding of the comprehensive utilization and health management of vanadium-titanium resources. In view of the current situation of obstruction in the vanadium-titanium industry supply chain, the study introduces digital technology, starting from the traditional vanadium-titanium industry supply chain, and realizes the optimization and coordination of the supply chain through digital means, thereby improving the flow efficiency of the supply chain and reducing the production cost of vanadium-titanium products. In addition, the study also combines the digital environment to conduct an in-depth study of the problems existing in the vanadium-titanium industry supply chain, and finally obtains an effective improvement path, which provides theoretical support and practical guidance for improving the resilience of the vanadium-titanium industry supply chain.
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