{"id":7507,"date":"2026-08-21T07:28:58","date_gmt":"2026-08-21T07:28:58","guid":{"rendered":"https:\/\/www.leadintelligent.com\/en\/?p=7507"},"modified":"2026-09-09T07:42:48","modified_gmt":"2026-09-09T07:42:48","slug":"lead-intelligent-lamination-decaling-machine-breaks-through-the-challenges-of-mass-production-quality-efficiency-and-compatibility-of-solid-electrolyte-membrane","status":"publish","type":"post","link":"https:\/\/www.leadintelligent.com\/en\/lead-intelligent-lamination-decaling-machine-breaks-through-the-challenges-of-mass-production-quality-efficiency-and-compatibility-of-solid-electrolyte-membrane\/","title":{"rendered":"Lead Intelligent lamination decaling machine breaks through the challenges of mass production quality, efficiency, and compatibility of solid electrolyte membrane"},"content":{"rendered":"
Lamination<\/span> decaling technology can achieve high-precision and high-yield integration lamination of ultra-thin fragile solid electrolyte membrane with electrode, while also possessing extremely strong process independence and adaptability. Lead Intelligent’s mass production-level solid electrolyte <\/span>lamination<\/span> decaling machine has a maximum mechanical running speed of 100m\/min, capable of achieving high-speed, continuous\/intermittent, stable roll-to-roll automated production, with intermittent lamination alignment accuracy of \u00b10.3mm, core roller vibration accuracy of \u00b11\u03bcm, and can stably construct a sealed micro-environment with ultra-low dew point below -60\u2103, precisely breaking through the three major industry pain points of solid-state battery decaling process mass production performance, precise control, and environmental adaptation.<\/span><\/p>\n
Currently, the solid-state battery industry is accelerating towards commercialization, among which, the three core difficulties of electrode preparation, electrolyte membrane preparation, and internal solid-solid interface contact are the key bottlenecks hindering industry-scale mass production.<\/span><\/p>\n
The structure of solid-state batteries requires the electrolyte to be tightly combined with the electrode in an ultra-thin film form, constructing a continuous ion conduction pathway. However, after the formation of the solid-state electrolyte membrane, it is brittle and prone to damage, and mainstream sulfide materials have strong chemical activity, easily oxidizing, making them difficult to adapt to traditional coating processes.<\/span><\/p>\n
In this context, <\/span>lamination<\/span> decaling technology, with its process advantages of achieving high-precision and high-yield integration lamination of ultra-thin fragile electrolyte membranes and electrodes, is gradually becoming the core path for the industry to break through the bottleneck of electrolyte membrane preparation, rising as a key mass production process for solid electrolyte membrane preparation and lithium-based electrode forming.<\/span><\/p>\n