Memandang ke hadapan ke masa hadapan, teknologi jongkong titanium sedang mengalami evolusi yang mendalam ke arah kecerdasan, kehijauan dan keupayaan melampau. Kepintaran dicerminkan dalam pembinaan sistem kembar digital proses penuh dan-membuat keputusan yang bijak.
By integrating IoT sensing, multi physics numerical simulation, and big data analysis, virtual production and optimization of the entire process from melting, solidification to heat treatment can be achieved, and predictive control of internal structure and defects of ingots can be carried out, moving from "experience driven" to "data and model driven". The core of greenization is to develop efficient and high-value residual titanium recovery and recycling technologies. Through advanced processes such as EBCHM, high-value titanium shavings and waste generated during the processing are 100% recycled, producing high-end ingots with performance no different from raw materials. This is crucial for reducing costs and achieving sustainable development of the industry chain. Extreme manufacturing responds to major national demands, aiming to manufacture ingots and components with larger dimensions (single weight>50 tan), prestasi yang lebih tinggi (seperti keliatan ultra-tinggi, suhu ultra-tinggi) dan bentuk yang lebih kompleks (berhampiran bentuk jaring). Ini bukan sahaja persaingan keupayaan peralatan, tetapi juga cabaran mendalam kepada disiplin asas seperti sains bahan, metalurgi, fizik dan kimia. Masa depan industri titanium China terletak pada sama ada ia boleh mencapai inovasi yang sistematik dan asli di sepanjang tiga laluan ini, sekali gus mencapai lonjakan bersejarah daripada "kepimpinan skala" kepada "kepimpinan teknologi".

