Gade pi devan nan tan kap vini an, teknoloji ingot Titàn ap sibi evolisyon pwofon nan direksyon entèlijans, vèt, ak kapasite ekstrèm. Entèlijans yo reflete nan konstriksyon yon pwosesis konplè dijital jimo ak sistèm entèlijan pou pran desizyon-.
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 tòn), pi wo pèfòmans (tankou ultra-segondè severite, ultra-tanperati wo), ak fòm ki pi konplèks (tou pre fòm nèt). Sa a se pa sèlman yon konpetisyon nan kapasite ekipman, men tou, yon gwo defi nan disiplin fondamantal tankou syans materyèl, metaliji, fizik, ak chimi. Lavni nan endistri Titàn Lachin nan manti nan si wi ou non li ka reyalize inovasyon sistematik ak orijinal sou twa chemen sa yo, kidonk reyalize yon kwasans istorik soti nan "lidèchip echèl" nan "lidèchip teknoloji".

