{"id":703,"date":"2025-04-24T02:13:21","date_gmt":"2025-04-24T02:13:21","guid":{"rendered":"https:\/\/bjshuotai.com\/en\/?p=703"},"modified":"2025-04-24T02:13:30","modified_gmt":"2025-04-24T02:13:30","slug":"build-a-solid-safety-line-for-power-batteries-laser-welding-zero-defect-process-and-newoct-real-time-monitoring-system-for-penetration-depth","status":"publish","type":"post","link":"https:\/\/bjshuotai.com\/en\/blog\/2025\/04\/24\/build-a-solid-safety-line-for-power-batteries-laser-welding-zero-defect-process-and-newoct-real-time-monitoring-system-for-penetration-depth\/","title":{"rendered":"Build a solid safety line for power batteries: laser welding zero-defect process and NewOCT real-time monitoring system for penetration depth"},"content":{"rendered":"\n

Against the background of the “dual carbon” goal and global energy transformation, the new energy vehicle industry has ushered in explosive growth. As the core component of electric vehicles, the energy density, safety and manufacturing cost of power batteries directly determine the market competitiveness of the vehicle. As a key link in battery module packaging, pole connection and shell sealing, the welding process has increasingly stringent requirements for accuracy and reliability. With the advantages of high energy density, non-contact processing and automation, laser welding technology has become an inevitable choice for power battery manufacturing upgrades. However, industry pain points such as high reflectivity of aluminum alloys and frequent pore defects still pose severe challenges to the stability of welding processes. Achieving the “zero defect” manufacturing goal through material adaptation, process optimization and full-process quality control has become a core topic of collaborative innovation in the industrial chain.<\/p>\n\n\n\n

1. Material property adaptation: Solving the dual challenges of aluminum alloy welding<\/p>\n\n\n\n

Power battery shells and components generally use aluminum alloys (such as Al3003). Although its lightweight and high conductivity characteristics meet battery requirements, it also brings two major technical challenges:<\/p>\n\n\n\n